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Bibliografia przy rozdziale. Indeks.
Key Concepts of Process Safety to Process Safety Purpose and Scope Application What Is Process Safety? Process Safety Is Not "Personal Safety" Why Is Process Safety Important? Business Impact Code of Ethics Conservation of Life Case Studies Large Companies Small Companies Universities Key Questions Process Safety Culture, Leadership, and Performance Key Concepts What Is Safety Culture? Characteristics of Safety Cultures Employee Participation Evaluating and Improving Safety Cultures Process Safety Leadership Process Safety Performance Process Safety Systems Key Concepts 57 3.2.1 Process Risk Managing Process Risk Protection Layer Model Process Safety Systems 66 3.4 Barrier Protection Layer Models Swiss Cheese Model Bow Tie Diagrams Case Study Operational Discipline Key Concepts Benefits of Strong OD Program Characteristics Organizational Personal Evaluating General Approaches Evaluating Personal Leadership Processes Section II Practical Approaches for Designing Safe Processes Design Safe Processes Using Codes and Standards Documenting the Technology Sustaining the Information The Process and Equipment Design Basis Applying Inherently Safer Process Design Understanding the Hazards Understanding the Process Risks Selecting the Equipment Selecting Safe Operating Limits for Process Equipment Establishing Safe Equipment Layout Establishing Equipment Integrity Documenting the Process and Equipment Design Specifications Measures of Success Identify and Assess Process Hazards Physical Property Data Completing the Intrinsic Hazards Assessment Toxicity Hazards Assessing Toxicity Hazards Flammability Hazards Assessing Flammability Hazards Assessing Explosion Hazards Combustible Dust Hazards Assessing Combustible Dust Hazards Chemical Reactivity Hazards Assessing Chemical Reactivity Hazards Developing a Chemical Compatibility Matrix Other Process Hazards Measures of Success Evaluate and Manage Process Risks What Is Process Hazards and Risk Analysis (PHRA)? When Is a PHRA Done? Who Does a PHRA? How Is a PHRA Done? Process Hazards Consequence Analysis 182 7.5 Hazardous Event Evaluation HAZOP What-If/Checklist Other Methodologies Human Factors Facility Siting Inherently Safer Processes Protection Layers Risk Analysis 205 Qualitative Risk Analysis Layer of Protection Analysis Quantitative Risk Analysis PHRA Revalidation Measures of Success Practical Approaches for Implementing Process Safety 8. Operate Safe Processes Providing Competency Training Sustaining Safe Developing Procedures: Process Safety Systems Developing Procedures: Safe Operations Developing Capability: Process Safety Systems Developing Capability: Safe Operations Measures of Success 9. Maintain Process Integrity and Reliability Inspection, Testing, and Preventative Maintenance Programs The Difference between Integrity and Reliability Ensuring Equipment Fitness for Service Maintenance Capability and Competency Identifying Critical Equipment Identifying Causes of Equipment Failure Developing an Effective Maintenance System Posed When Developing the Maintenance System Equipment Risk Based Inspection Equipment Reliability Equipment Quality Assurance Equipment Integrity Programs Combining Programs Ensuring Equipment Fitness for Service Addressing Equipment Deficiencies Monitoring the Equipment Maintenance System Measures of Success Change Processes Safely Defining Changes Managing Changes Communicating Changes Case Study Understanding Organizational Changes Understanding Technology Changes How Change is Managed Measures of Success Manage Incident Response and Investigation The Six Phases for Managing Incidents Effective Investigations Classifying the Types of Responses and Incidents Defining Emergencies Defining Incidents Planning and Responding to Emergencies Planning for Incidents Responding during the Incident Recovering From and Investigating Incidents Recovering from the Incident Investigating after the Incident Combining Resources When Recovering and Investigating Changing and Sustaining after the Incident Implementing the Changes Sustaining the Changes Incident Investigation Methods Why-Trees 312 X Contents Fishbone Diagrams Root Cause Analyses Fault Tree Analyses Applying Bow Tie Diagrams to Investigations Searching for the Event-Related Causes Visualizing Barrier Weaknesses on the Bow Tie Diagram Searching for the Systemic Causes Visualizing Systemic Weaknesses on the Bow Tie Diagram Searching for the Foundational Causes Case Measures of Success Monitor Process Safety Program Effectiveness Key Concepts Sensitivity to Operations Learning Organizations Process Safety Metrics (Key Performance Indicators) Development of Metrics Use of Metrics Process Safety Audits Preparing for an Audit Conducting an Audit Documenting an Audit Measures of Success Section IV Practical Approaches for Achieving Process Safety Excellence Develop Personal Capability in Process Safety Process Safety Roles and Responsibilities How to Be Effective in Process Safety Roles Developing Technical Process Safety Knowledge Influencing the Organization Thinking and Communicating Independently Developing a Learning Plan Commit to a Safe Future Maintaining an Effective Process Safety Program Looking to the Future of Process Safety
Sygnatura czytelni BMW: XIII 9 (nowy)
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"A Chapman & Hall book".
Bibliografia na stronach 217-220. Indeks.
1Principles of Mathematical Modeling 1.1How to develop a mathematical model 1.1.1A simple mathematical model 1.1.2Use of a computer 1.1.3Development of mathematical models 1.2Types of models 1.3Stability of models 1.4Dimension, units, and scaling 1.4.1Dimensional analysis 1.4.2Scaling 2Numerical and symbolic computations 2.1Numerical and symbolic computations of derivatives and inte¬grals 2.2Iterative methods 2.3Newton's method 2.4Method of successive approximations 2.5Banach Fixed Point Theorem 2.6Why is it difficult to numerically solve some equations? II Basic Applications 3Application of calculus to classic mechanics 3.1Mechanical meaning of the derivative 3.2Interpolation 3.3Integrals 3.4Potential energy 4Ordinary differential equations and their applications 4.1Principle of transition for ODE 4.2Radioactive decay 4.3Logistic differential equation and its modifications 4.3.1Logistic differential equation 4.3.2Modified logistic equation 4.3.3Stability analysis 4.3.4Bifurcation 4.4Time delay 4.5Approximate solution to differential equations 4.5.1Taylor approximations 4.5.2Pade approximations 4.6Harmonic oscillation 4.6.1Simple harmonic motion 4.6.2Harmonic oscillator with friction and exterior forces 4.6.3Resonance 4.7Lotka-Volterra model 4.8Linearization 5Stochastic models 5.1Method of least squares 5.2Fitting 5.3Method of Monte Carlo 5.4Random walk 6One-dimensional stationary problems 6.1ID geometry 6.2Second order equations 6.3ID Green's function 6.4Green's function as a source 6.5The (5-function III Advanced Applications 7Vector analysis 7.1Euclidean space R3 7.1.1Polar coordinates 7.1.2Cylindrical coordinates 7.1.3Spherical coordinates 7.2Scalar, vector and mixed products 7.3Rotation of bodies 7.4Scalar, vector and mixed product in Mathematica 7.5Tensors 7.6Scalar and vector fields 7.6.1Gradient 7.6.2Divergence 7.6.3Curl 7.6.4Formulae for gradient, divergence and curl 7.7Integral theorems 8Heat equations 8.1Heat conduction equations 8.2Initial and boundary value problems 8.3Green's function for the ID heat equation 8.4Fourier series 8.5Separation of variables 8.6Discrete approximations of PDE 8.6.1Finite-difference method 8.6.2ID finite element method 8.6.3Finite element method in R2 8.7Universality in Mathematical Modeling. Table 9Asymptotic methods in composites 9.1Effective properties of composites 9.1.1General introduction 9.1.2Strategy of investigations 9.2Maxwell's approach 9.2.1Single-inclusion problem 9.2.2Self consistent approximation 9.3Densely packed balls 9.3.1Cubic array 9.3.2Densely packed balls and Voronoi diagrams 9.3.3 Optimal random packing
Sygnatura czytelni BMW: XIII 151 (nowy)
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Reliability Engineering in Perspective Why Study Reliability? 2 Failure Models Stress-Strength Model Damage-Endurance Model. Performance-Requirement Model Failure Mechanisms Performance Measures Formal Definition of Reliability Definition of Availability Definition of Risk Basic Reliability Mathematics: Review of Probability and Statistics Elements of Probability Sets and Boolean Algebra Basic Laws of Probability Classical Interpretation of Probability (Equally Likely Concept) Frequency Interpretation of Probability Subjective Interpretation of Probability Calculus of Probability Bayes' Theorem Probability Distributions Random Variable Some Basic Discrete Distributions Discrete Uniform Distribution Binomial Distribution Hypergeometric Distribution Poisson's Distribution Geometric Distribution Some Basic Continuous Distributions Normal Distribution Lognormal Distribution Exponential Distribution Weibull Distribution Gamma Distribution Beta Distribution Beta-Exponential Distribution Joint and Marginal Distributions Truncated Distributions Basic Characteristics of Random Variables Estimation and Hypothesis Testing Point Estimation Method of Moments Maximum Likelihood Method Interval Estimation and Hypothesis Testing Hypothesis Testing Bayesian Estimation 2.6 Frequency Tables and Histograms Goodness-of-Fit Tests Chi-Square Test Kolmogorov_Smirnov Test Regression Analysis Simple Linear Regression Component Reliability Analysis Concept of Reliability Reliability Function Failure Rate Some Useful Bounds and Inequalities for IFR (DFR) Bounds Based on a Known Quantile Bounds Based on a Known Mean Inequality for Coefficient of Variation Common Distributions in Component Reliability Exponential Distribution Weibull Distribution Gamma Distribution Normal Distribution Lognormal Distribution Extreme Value Distributions Some Basic Concepts and Definitions Order Statistics from Samples of Random Size Asymptotic Distributions of Maxima and Minima Three Types of Limit Distributions Reliability Data and Model Selection Graphical Nonparametric Procedures Small Samples Large Samples Probability Plotting Exponential Distribution Probability Plotting Weibull Distribution Probability Plotting Normal and Lognormal Distribution Probability Plotting Total-Time-on-Test Plots Maximum Likelihood Estimation of Reliability Distribution Parameters Censored Data Left and Right Censoring Type I Censoring Types of Reliability Tests Random Censoring Maximum Likelihood Estimation Using Reliability Data Exponential Distribution Point Estimation type I Life Test with Replacement Exponential Distribution Interval Estimation Lognormal Distribution Weibull Distribution Binomial Distribution Classical Nonparametric Distribution Estimation Confidence Intervals for cdf and Reliability Function for Complete and Singly Censored Data Confidence Intervals for cdf and Reliability Function for Multiply Censored Data Bayesian Estimation Procedures Estimation of the Parameter of Exponential Distribution Selecting Parameters of Prior Distribution Uniform Prior Distriburion Jeffreys Prior Distribution Bayesian Estimation of the Parameter of Binomial Distribution Standard Uniform Prior Distribution Truncated Standard Uniform Prior Distribution Beta Prior Distribution Jeffreys Prior Distribution for Parameterp of the Binomial Distribution Lognormal Prior Distribution Bayesian Estimation of the Weibull Distribution Prior Distribution Jeffreys Prior for Weibull Parameters Posterior Distributions (Posterior Distribution of Weibull cdf at a Fixed Exposure Posterior Distribution of Weibull Distribution Parameters Particular Case Bayesian Probability Papers Classical Simple Linear Regression Classical Probability Papers Bayesian Simple Linear Regression and Bayesian Probability Papers Including Prior Information about Model Parameters Including Prior Information about the Reliability or cdf Methods of Generic Failure Rate Determination System Reliability Analysis Reliability Block Diagram Method Series System Parallel Systems Standby Redundant Systems Load-Sharing Systems Complex Systems Fault Tree and Success Tree Methods Fault Tree Method Evaluation of Logic Trees Analysis of Logic Trees Using Boolean Algebra Combinatorial (Truth Table) Technique for Evaluation of Logic Trees Binary Decision Diagrams Success Tree Method Event Tree Method Construction of Event Trees Evaluation of Event Trees Master Logic Diagram Failure Mode and Effect Analysis Types of FMEA/FMECA Procedure. Reliability and Availability of Repairable Components and Systems Repairable System Reliability Basics of Point Processes Homogeneous Poisson Process Renewal Process Nonhomogeneous Poisson Process General Renewal Process Probabilistic Bounds Nonparametric Data Analysis Estimation of the CIF Estimation Based on one Realization (Ungrouped Data Estimation Based on One Realization (Grouped Data) Estimation Based on Several Realizations Confidence Limits for CIF Data Analysis for the HPP Procedures Based on the Poisson Distribution Procedures Based on the Exponential Distribution - of Time Intervals Data Analysis for the NHPP Regression Analysis of Time Intervals Maximum Likelihood Procedures Laplace's Test Data Analysis forGRP Example Based on Simulated Data Example Based on Real Data Availability of Repairable Systems Instantaneous (Poinr) Availability Limiting Point Availability Average Availability Availability Measures Based on Causes of Unavailability Inherent Availability Achieved operational Availability Use of Markov Processes for Determining System Availabitity Use of System Analysis Techniques in the Availability Calculations of Complex Systems Selected Topics in Reliability Modeling Probabilistic Physics-of-Failure Reliability Modeling Stress-Strength Model Damage*Endurance Model Performance-Requirement Model Software Reliability Analysis Software Reliability Models Software Life Cycle Models Waterfall Model Human Reliability HRA Process Simulation Methods Expert Judgment Methods Analytical Methods Human Reliability Data Measures of Importance Birnbaum Measure of Importance Criticality Importance Fussell-Vesely Importance Risk-Reduction Importance RAW Importance Practical Aspects of Importance Measures Maintenance Considerations in Reliability Reliability-Centered Maintenance optimal Preventive Maintenance Scheduling Economic Benefit of optimization Comparative Analysis of optimal Maintenance Policies under General Repair with Underlying Weibull Distributions Reliability Growth Graphical Method DuaneMethod Army Material Systems Analysis Activity Method Selected Topics in Reliability Data Analysis ................... ..'......'..'...... Accelerated Life Testing Basic AL Notions Time Transformation Function for the Case of Constant Stress ALModel Cumulative Damage Models and AL Model PHModel Some PopularAL(Reliability)Models AL Data Analysis Exploratory Data Analysis (Critęria of Linearity of Time Transformation Function for Constant Stress) Two-sample Criterion Checking the Coefficient of Variation Logarithm of Time-to-Failure Variance Quantile-Quantile Plots Reliability Models Fitting: Constant Stress Case Model for Time-Dependent Stress AL Reliability Model for Time-Dependent Stress and Palmgren-Miner's Rule Exploratory Data Analysis for Time-Dependent Stress Statistical Estimation of AL Reliability Models on the Basis of AL Tests with Time-Dependent Stress PH Model Data Analysis Automotive Tire Reliability Reliability Test Procedure PH Model and Data Analysis Reliability Analysis of Warranty Data Probabilistic models Models for Nonrepairable Systems Models for Repairable Systems Bivariate Models Statistical Estimation Nonrepairable System Models Repairable System Models Bivariate Models Special Topics Survival Regression in Root Cause Analysis of FieldFailures Life Scales; Time versus Usage Warranty Data Maturity Issues Calendarized Warranty Forecasting Analysis of Dependent failures Single-Parameter Models Multiple-Parameter Models Multiple Greek Letter Model cr-Factor Model BFRModel Data Analysis for CCFs Uncertainty Analysis Types of Uncertainty Parameter Uncertainties Model Uncertainties Completeness Uncertainty Uncertainty Propagation Methods Method of Moments System Reliability Confidence Limits Based on Component Failure Data Lloyd*Lipow Method Maximus Method Classical Monte Carlo Simulation Bayes' Monte Carlo Simulation Bootstrap Method Graphical Representation of Uncertainty Use of Expert opinion for Estimating Reliability Parameters Geometric Averaging Technique Bayesian Approach Statistical Evidence on the Accuracy of Expert Estimates Determination of Risk Values Quantitative Risk Assessment Identification of Hazards Identification of Barriers Identification of Challenges to Barriers Estimation of Hazard Exposure Consequences of Evaluation Probabilistic Risk Assessment Strengths of PRA Steps in Conducting a PRA objectives and Methodology Familiarization and Information Assembly Identification of Initiating Events Sequence or Scenario Development Logic Modeling Failure Data Collection, Analysis, and Performance Assessment Quantification and Integration Uncertainty Analysis Sensitivity Analysis Risk Ranking and Importance Analysis Interpretation of Results Compressed Natural Gas Powered Buses: A PRA Case Study Primary CNG Fire Hazards PRA Approach System Description Natural Gas Supply Compression and Storage Station Storage Cascade Dispensing Facile CNG Bus Gas Release Scenarios Fire Scenario Description Gas Release Gas Dispersion Ignition Likelihood Consequence Determination Fire Location Risk Value Determination Summary of PRA Results Overall Risk Results Uncertainty Analysis Sensitivity and Importance Analysis A Simple Fire Protection Risk Analysis Precursor-Based Risk Analysis Differences between APA and PRAs Appendix A: Statistical Tables Appendix B: Generic Failure Probabily Data
Sygnatura czytelni BMW: XIII 15 (nowy)
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Wykaz autorów na stronach XIII-XVIII.
Bibliografia przy pracach. Indeks.
Trends and success factors in mass customization An introduction to mass customized manufacturing Designing assembly lines for mass customization production systems Role of information systems in mass customization Complexity drivers in mass customization Complexity issues in mass customized manufacturing Modeling of assembly supply chain structures Variety-induced complexity metrics Product variety management assuming product configuration conflicts Management and sustainability of mass customization Product configuration for order acquisition and fulfillment Shoe configurators: A comparative analysis of capabilities and benefits Empirical investigation on implications of configurator applications for mass customization Sustainability assessments for mass customization supply chains Sustainability issues in mass customized manufacturing.
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Statistical process control : a pragmatic approach / Stephen Mundwiller. - Boca Raton, FL : CRC Press Taylor & Francis Group, copyright 2018. - XI, [1], 104 strony : ilustracje, wykresy ; 24 cm.
(Continuous Improvement Series)
Indeks.
Why Statistical Process Control? A Brief History The Fourteen Points The Seven Deadly Diseases A Teaching Methodology That Works Who Are the Audience and What Is the Time Involved? Simulated Factory Plotting Class Data Bell Curves and Normalcy Process Data Taguchi's Loss Function Control Charts Process Capability Process Capability Calculating Cp and Cpk Calculating Cp (Simple Process Capability) Calculating Cpk (Real Process Capability) Xbar and R Charts Variation in the Real World War Stories Metal Stamping Plastic Injection Molding Filling Bottles of Lubricating Oil Manual Powder Filling Fishing Reel Drag Constant Battles Machining Metal Parts.
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Bibliografia na stronach 143-151. Indeks.
Background and Motivation Initial Phase of Aero Engine Development Working Principle of Aero Gas Turbine Engines Critical Components of an Aero Engine Aero Engine Compressor Aero Engine Combustion Chamber Aero Engine Turbine Aero Engine Propelling Nozzle Design Philosophy of an Aero Engine Combustion Chamber Types of Combustion Chamber in Aero Engines Multiple Combustion Chambers Tubo-Annular Combustion Chamber Annular Combustion Chamber Complexities in Combustion Chamber Design Materials Used for Combustion Chamber Significant Contributions Fatigue Design Philosophy of an Aero Engine Combustor Casing Combustion Chamber Design Fatigue Failure in Aero Engines Fatigue Cycle Counting Methods Fatigue Life Evaluation Methods Fatigue Damage Assessment Nondestructive Testing Methods Radiography Inspection Magnetic Particle Inspection Dye Penetrant Inspection Ultrasonic Inspection Eddy Current and Electromagnetic Inspection of the Design Philosophy Important Design Considerations for Combustor Casing Development of Test Facility and Test Setup Airworthiness and Certification Description of the Test Facility and Its Subsystems Hydraulic Power Supply Servo Valve with Manifold Safety Relief Valve Servo Controller Pressure Integration of the Subsystems Design and Manufacturing of Adaptors Bottom Fixing Plate Bottom Sealing Drum Inner Bottom Fixing Plate Special Tie Rod Top Sealing Plate Top Fixing Plate Top Support Plate Top Holding Plate Special Studs Seals Manufacturing of an Aero Engine Combustor Casing, the Experimental Evaluation of Its Fatigue Life, and Correlation with Numerical Results Manufacturing Method of the Combustor Casing Metal Spinning Process Advantages of the Metal Spinning Process Disadvantages of Metal Spinning Process Electron Beam Welding Method Tungsten Inert Gas Welding Method Configuration of the Combustor Casing Experimental Evaluation of Fatigue Life Instrumentation Inspection Methodology Mechanical Properties of Combustor Casing Material Numerical Analysis of the Combustor Casing Details of the Finite Element Model Finite Element Model Quality Parameters Boundary Conditions Load Pressure Load Thermal Load Nusselt Equation Dittus Boelter Equation Numerical Analysis of the Igniter Boss and Its Correlation with Experimental Data Results and Discussions Summary Reassessment of Fatigue Life of the Modified Combustor Casing Modified Manufacturing Methodology Forging Process: Benefits and Drawbacks Instrumentation of the Modified Combustor Casing Assembly and Trial Run Testing Results and Discussion Safety Test on Modified Combustor Casing Component Details Instrumentation and Testing and Discussion Effect of Fatigue on the Proof Strength of an Aero Engine Combustor Casing Metallographic Techniques in Failure Analysis Stereo Zoom Microscopy Scanning Electron Microscopy Optical Microscopy Details of the Test Component Experimental Procedure Observation Visual Observation Stereo Zoom Microscopy Scanning Electron Microscopy Fractography Energy Dispersive X-Ray Analysis Optical Microscopy Microhardness Measurement Discussions Certification and Acceptance of the Combustor Casing Specific Conclusions Scope for Further Work
Sygnatura czytelni BMW: VIII K 31 (nowy)
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The global quality management system : improvement througt systems thinking / Suresh Patel. - Boca Raton, FL : CRC Press Taylor & Francis Group, copyright 2016. - XXVIII, 211 stron : wykresy, fotografie ; 25 cm.
Bibliografia strony 199-[200]. Indeks.
Homage to Quality and Lean Six Sigma Gurus Quality Management System as a Management ISO Strategy Quality Management System Identification and Improvement of Processes Turtle diagrams Charting process to control process variables the finance management process Objectives and their measurement The project management process Common responsibilities for IT project Manager-program manager Qualifications for IT project manager -program The purchasing process The HR process SIPOC Diagrams for performance management Generic process to improve a process using Plan-Do-Check-Act-Fix, Focus, Flex Global Quality Audit Processes Process control plan audit (PCPA) Audit guide for each of the nine areas Documentation Tooling/equipment Process Human resources organization Product qualification/ one-day production Implementation of quality Logistic Continuous improvement Audit of eight management principles based on ISO 9001:2008 Global Quality Management System Processes Management Review Process Preamble Quality training process Change control process Processes to identify special characteristics Supplier PPAP/FAI Supplier quality management process Failure mode and effects analysis for product Process control plans Measurement system analysis Fresh eyes audit Common manufacturing and special process audit Process capability methods and requirements Control of nonconforming material Performance analysis and improvement process Corrective and preventive action process Quality alert system Risk management Fast Customer Response Problem Solving Drill Deep/Drill Wide Method for Permanent Corrective Action Quality Operating System: The Engine That Perpetuates Continuous Improvement.
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Bibliografia przy pracach. Indeks.
Determining the Net Positive Suction Head of a Magnetic Drive Pump ByAllen A. Busick, Melissa L. Cooley, Alexander M. Lopez, Aaron J. Steuart, William Roy Penney, Edgar C. Clausen Bernoulli Balance Experiments Using a Venturi ByMegan F. Dunn, William Roy Penney, Edgar C. Clausen Force Produced by Impingement of a Fluid Jet on a Deflector ByDaniel R. Miskin, William Roy Penney, Edgar C. Clausen Applying the Bernoulli Balance to Determine Flow and Permanent Pressure Loss ByJordan N. Foley, John W. Thompson, Meaghan M. Williams, William Roy Penney, Edgar C. Clausen A Simple Sharp-Edged Orifice Demonstration ByWilliam Roy Penney, Shannon L. Servoss, Christa N. Hestekin, Edgar C. Clausen Depressurization of an Air Tank ByMartin A. Christie, John A. Dominick, William Roy Penney, Edgar C. Clausen Draining an Upper Tank into a Lower Tank: Experimental and Modeling Studies ByWilliam Roy Penney, Edgar C. Clausen Determining the Pump Curve and the Efficiency for a Bomba BP-50 Regenerative Centrifugal Pump ByWilliam Roy Penney, Edgar C. Clausen Heat Transfer Experiments and Demonstrations Thermal Conductivity and Radiative Experiments Measurement ByEdgar C. Clausen, William Roy Penney, Dave C. Marrs, Megan V. Park, Anthony M. Scalia, Nathaniel S. Weston Free Convection Heat Transfer from Plates ByEdgar C. Clausen, William Roy Penney Forced Convection Heat Transfer by Air Flowing over the Top Surface of a Horizontal Plate * ByEdgar C. Clausen, William Roy Penney Laminar Forced Convection Inside a Coiled Copper Tube ByEdgar C. Clausen, William Roy Penney, Jeffrey R. Dorman, Daniel E. Fluornoy, Alice K. Keogh, Lauren N. Leach An Experimental Testing of Turbulent Forced Convection Inside Tubes ByEdgar C. Clausen, William Roy Penney, Jeffrey R. Dorman, Daniel E. Fluornoy, Alice K. Keogh, Lauren N. Leach Forced Convection through an Annulus ByEdgar C. Clausen, William Roy Penney Experimental Investigation and Modeling Studies of the Transient Cooling of a Brass Rod Subjected to Forced Convection of Room Air ByWilliam Roy Penney, Edgar C. Clausen Solar Flux and Absorptivity Measurements ByWilliam Roy Penney, Kendal J. Brown, Joel D. Vincent, Edgar C. Clausen A Transient Experiment to Determine the Heat Transfer Characteristics of a 100 W Incandescent Light Bulb, ByLauren Cole, Lindsay R. Hoggatt, Jamie A. Sterrenberg, David R. Suttmiller, William Roy Penney, Edgar C. Clausen Experimental Determination of a Room Heat Transfer Coefficient by Transient Cooling of a Mercury-in-Glass Thermometer ByWilliam Roy Penney, Edgar C. Clausen Experimental Determination and Modeling of the Temperature Distribution Along a Hollow Fin ByWilliam Roy Penney, Edgar C. Clausen
Sygnatura czytelni BMW: XIII 12 (nowy)
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U dołu s. tyt. i okł.: A Balkema Book.
T. 1-2 zaw. mat. z VIII i IX Konferencji pod tym samym tytułem, odbywających się kolejno w 2005 i 2009 r. w Juracie - inf. na s. XIII.
Druk dwuszpaltowy.
Bibliogr. przy rozdz. Indeks.
Sygnatura czytelni BWB: X M 103,3
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Computational modeling of pulverized coal fired boilers / Vivek V. Ranade, Devkumar F. Gupta. - Boca Raton [etc.] : CRC Press/Taylor & Francis Group, cop. 2015. - XIII, [1], 257 s., [16] s. tabl. kolor. : il. ; 24 cm.
Bibliogr. przy rozdz. Indeks.
Introduction, Toward the Computational Modeling of Pulverized Coal Fired Boilers, Kinetics of Coal Devolatilization and Combustion: Thermogravimetric Analysis (TGA) and Drop-Tube Furnace (DTF), CFD Model of a Pulverized Coal Fired Boiler, Reactor Network Model (RNM) of a Pulverized Coal Fired Boiler, Application to Practice, Summary and the Path Forward.
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Bibliografia przy rozdziale. Indeks.
FUNDAMENTALS, STRATEGIES, AND DESIGN OPTIONS IN INTEGRAL LOGISTICS MANAGEMENT. Logistics, Operations, and Supply Chain Management Basic Definitions, Issues, and Challenges Business Objects Strategies in the Entrepreneurial Context Performance Measurement Summary Keywords Scenarios and Exercises References. Supply Chain Design: Business Relations and Risks Ownership and Trade in a Supply Chain Strategic Procurement Designing a Partnership Relationship Supply Chain Risk Management Summary Keywords Scenarios and Exercises References. Supply Chain Design: Location Planning and Sustainability Design Options for Production, Distribution, and Service Networks Location Selection and Location Configuration Sustainable Supply Chains Summary Keywords Scenarios and Exercises References. PART B: STRATEGIC AND TACTICAL CONCEPTS OF PLANNING AND CONTROL IN INTEGRAL LOGISTICS MANAGEMENT. Business Process Analysis and Concepts for Planning and Control Elements of Business Process Management Push and Pull in the Design of Business Processes Important Techniques of Analysis in Business Process Engineering Characteristic Features Relevant to Planning and Control in Supply Chains Branches, Production Types, and Concepts for Planning and Control Summary Scenarios and Exercises References. The MRP II / ERP Concept: Business Processes and Methods Business Processes and Tasks in Planning and Control Master Planning - Long-Term Planning Introduction to Detailed Planning and Execution Logistics Business Methods in R&D Summary Keywords Scenarios and Exercises References. The Lean / Just-in-Time Concept and Repetitive Manufacturing Characterizing Lean / Just-in-Time and Repetitive Manufacturing The Lean / Just-in-Time Concept The Kanban Technique The Cumulative Production Figures Principle Implementing Procedure and Comparison of Techniques Summary Keywords Scenarios and Exercises References. The Concept for Product Families and One-of-a-Kind Production Logistics Characteristics of a Product Variety Concept Adaptive Techniques Generative Techniques Generative and Adaptive Techniques for Engineer-to-Order Summary Keywords Scenarios and Exercises References. The Concept for the Process Industry Characteristics of the Process Industry Processor-Oriented Master and Order Data Management Processor-Oriented Resource Management Special Features of Long-Term Planning Summary Keywords Scenarios and Exercises References. ERP and SCM Software Software in the Area of ERP and SCM: An Introduction Contents of ERP and SCM Software Factors for Successful Implementation of ERP and SCM Software Summary Keywords Scenarios and Exercises References. PART C: METHODS OF PLANNING AND CONTROL IN COMPLEX LOGISTICS SYSTEMS. Demand Planning and Demand Forecasting Overview of Demand Planning and Forecasting Techniques Historically Oriented Techniques for Constant Demand Historically Oriented Techniques with Trend-Shaped Behavior Future-Oriented Techniques Using Forecasts in Planning Summary Keywords Scenarios and Exercises References. Inventory Management and Stochastic Materials Management Stores and Inventory Management Usage Statistics, Analyses, and Classifications Order Point Technique and Safety Stock Calculation 11.4 Batch or Lot Sizing Summary Keywords Scenarios and Exercises References. Deterministic Materials Management Demand and Available Inventory along the Time Axis Deterministic Determination of Independent Demand Deterministic Determination of Dependent Demand Batch or Lot Sizing Analyzing the Results of Material Requirements Planning (MRP) Summary Keywords Scenarios and Exercises References. Time Management and Scheduling Elements of Time Management Buffers and Queues Scheduling of Orders and Scheduling Algorithms Splitting, Overlapping, and Extended Scheduling Algorithms Summary Keywords Scenarios and Exercises References. Capacity Management Fundamentals of Capacity Management Infinite Loading Finite Loading Rough-Cut Capacity Planning Summary Keywords Scenarios and Exercises References. Order Release and Control Order Release Shop Floor Control Order Monitoring and Shop Floor Data Collection Distribution Control Summary Keywords Scenarios and Exercises References. Cost Estimating, Job-Order Costing, and Activity-Based Costing Costs, Cost Elements, and Cost Structures Cost Estimating Job-Order Costing Activity-Based Costing Summary Keywords References. Representation and System Management of Logistic Objects Order Data in Sales, Distribution, Production, and Procurement The Master Data for Products and Processes Extensions Arising from the Variant-Oriented Concept Extensions Arising from the Processor-Oriented Concept The Management of Product Data and Product Life Cycle Data Summary Keywords Scenarios and Exercises References. PART D: OVERVIEW OF FURTHER MANAGEMENT SYSTEMS IN THE ENTERPRISE. Quality Management-TQM and Six Sigma Quality: Concept and Measurement Quality Management Tasks at the Operations Level Quality Management Systems Summary Keywords References. Systems Engineering and Project Management Systems Engineering Project Management Summary Keywords References. Selected Sections of Information Management
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Bibliografia przy pracach. Indeks.
Risk management in water distribution system operation and maintenance using Bayesian theory B. Tchorzewska-Cieslak & K. Pietrucha-Urbanik Differentiation of selected components in bottom sediments of Poland's Solina-Myczkowce complex of dam reservoirs L. Bartoszek, J.A. Tomaszek & J.B. Lechowicz The role of wetlands in the removal of heavy metals from the leachate (on the example of the Lipinka River catchment, southern Poland) T. Molenda The possibilities of limitation and elimination of activated sludge bulking M. Kida, A. Maslon, J.A.Tomaszek & P. Koszelnik Lakes and reservoirs restoration-Short description of the chosen methods L. Bartoszek & P. Koszelnik The use of keramsite grains as a support material for the biofilm in moving bed technology A. Maslon & J.A. Tomaszek A review of current knowledge on N2O emissions from WWTPs J.A. Tomaszek & J. Czarnota
Sygnatura czytelni BMW: XIII 11 (nowy)
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Sygnatura czytelni BMW: XIII 129 (nowy)
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(Chapman & Hall/CRC Data Mining and Knowledge Discovery Series)
Bibliografia przy pracach. Indeks.
Computational Intelligent Data Analysis for Sustainable Development: An Introduction and Overview Tracing Embodied CO2 in Trade Using High- Resolution Input-Output Tables Aggregation Effects in Carbon Footprint Accounting Using Multi- Region Input-Output Analysis Climate Informatics CLAIRE MONTELEONI, GAVIN A. SCHMIDT, FRANCIS ALEXANDER, ALEXANDRU NICULESCU- MIZIL, KARSTEN STEINHAEUSER, MICHAEL TIPPETT, ARINDAM BANERJEE, M. BENNO BLUMENTHAL, AUROOP R. GANGULY, JASON E. SMERDON, AND MARCO TEDESCO Computational Data Sciences for Actionable Insights on Climate Extremes and Uncertainty Mathematical Programming Applications to Land Conservation and Environmental Quality Data Analysis Challenges in the Future Energy Electricity Supply without Fossil Fuels JOHN BOLAND, PETER PUDNEY, JERZY FILAR Data Analysis for Real- Time Identification of Grid Disruptions Statistical Approaches for Wind Resource Assessment KALYAN VEERAMACHANENI, XIANG YE, AND UNA- MAY O’REILLY Spatio- Temporal Correlations in Criminal Offense Records JAMESON L. TOOLE, NATHAN EAGLE, JOSHUA B. PLOTKIN Constraint and Optimization Techniques for Supporting Policy Making MARCO GAVANELLI, FABRIZIO RIGUZZI, MICHELA MILANO, PAOLO CAGNOLI
Sygnatura czytelni BMW: XIII 13 (nowy)
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Power Plant Engineering / Farshid Zabihian. - Boca Raton : CRC Press / Taylor & Francis Group, 2021. - XXVII, [1], 1221 stron : ilustracje ; 25 cm.
Indeks.
Introduction to Electricity Introduction to Steam Power Plants Steam Generators: Water-Steam Side Steam Generators: Fire Side Steam Turbines Condensate-Feedwater Systems Cooling Systems (Circulating Water Systems) Gas Turbines Combined Cycle Power Plants and Cogeneration Plants Solar Energy and Photovoltaic Solar Units Solar Thermal Energy Wind Energy Ocean Renewable Energy Geothermal Energy Energy Storage Systems
Sygnatura czytelni BMW: XIII 96 (nowy)
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Applied strength of materials / Robert L. Mott, Joseph A. Untener. - Sixth edition SI units version. - Boca Raton : CRC Press, Taylor & Francis Group, [2018] - XV, [1], 806 stron : ilustracje ; 26 cm.
Bibliografia przy rozdziale. Indeks.
Basic Concepts in Strength of Materials The Big Picture Objective of This Book: To Ensure Safety Objectives of This Problem-Solving Procedure Basic Unit Systems Relationship among Mass, Force, and Weight Concept of Stress Direct Normal Stress Stress Elements for Direct Normal Stresses Concept of Strain Direct Shear Stress Stress Elements for Shear Stresses Preferred Sizes and Screw Threads Structural Shapes Experimental and Computational Stress Analysis Review of the Fundamentals of Statics Design Properties of Materials The Big Picture Objectives of This Chapter Design Properties of Materials Steel Cast Iron Aluminum Copper, Brass, and Bronze Zinc-, Magnesium-, Titanium-, and Nickel-Based Alloys vi Contents Nonmetals in Engineering Design Wood Concrete Plastics Composites Materials Selection Direct Stress, Deformation, and Design The Big Picture Objectives of This Chapter Design of Members under Direct Tension or Compression Design Normal Stresses Design Factor Design Approaches and Guidelines for Design Factors Methods of Computing Design Stress Elastic Deformation in Tension and Compression Members Deformation due to Temperature Changes Thermal Stress Members Made of More Than One Material Stress Concentration Factors for Direct Axial Stresses Bearing Stress Design Bearing Stress Design for Direct Shear, Torsional Shear, and Torsional Deformation The Big Picture Objectives of This Chapter Design for Direct Shear Stress Torque, Power, and Rotational Speed Torsional Shear Stress in Members with Circular Cross Sections Development of the Torsional Shear Stress Formula Polar Moment of Inertia for Solid Circular Bars Torsional Shear Stress and Polar Moment of Inertia for Hollow Circular Bars Design of Circular Members under Torsion Comparison of Solid and Hollow Circular Members Stress Concentrations in Torsionally Loaded Members Twisting: Elastic Torsional Deformation Torsion in Noncircular Sections Shearing Forces and Bending Moments in Beams The Big Picture Objectives of This Beam Loading, Supports, and Types of Beams Reactions at Supports Shearing Forces and Bending Moments for Concentrated Loads Guidelines for Drawing Beam Diagrams for Concentrated Loads Shearing Forces and Bending Moments for Distributed Loads General Shapes Found in Bending Moment Diagrams Shearing Forces and Bending Moments for Cantilever Beams Beams with Linearly Varying Distributed Loads Free-Body Diagrams of Parts of Structures Mathematical Analysis of Beam Diagrams Continuous Beams: Theorem of Three Moments Centroids and Moments of Inertia of Areas The Big Picture Objectives of This Concept of Centroid: Simple Shapes Centroid of Complex Shapes Concept of Moment of Inertia of an Area Moment of Inertia of Composite Shapes Whose Parts Have the Same Centroidal Axis Moment of Inertia for Composite Shapes: General Case-Use of the Parallel Axis Theorem Mathematical Definition of Moment of Inertia Composite Sections Made from Commercially Available Shapes Moment of Inertia for Shapes with All Rectangular Parts Radius of Gyration Section Modulus Stress due to Bending 380 The Big Picture Objectives of This Flexure Formula Conditions on the Use of the Flexure Formula Stress Distribution on a Cross Section of a Beam Derivation of the Flexure Formula Applications: Analysis of Stresses in Beams Applications: Beam Design and Design Stresses Section Modulus and Design Procedures Stress Concentrations Flexural Center or Shear Center Preferred Shapes for Beam Cross Sections Design of Beams to Be Made from Composite Materials 8 Shearing Stresses in Beams The Big Picture Objectives of This Importance of Shearing Stresses in Beams General Shear Formula Distribution of Shearing Stress in Beams Development of the General Shear Formula Special Shear Formulas Design for Shear Shear Flow Deflection of Beams 480 The Big Picture Objectives of This Need for Considering Beam Deflections General Principles and Definitions of Terms Beam Deflections Using the Formula Method Comparison of the Manner of Support for Beams Superposition Using Deflection Formulas Successive Integration Method Moment-Area Method Combined Stresses The Big Picture Objectives of This Chapter Stress Element Stress Distribution Created by Basic Stresses Creating the Initial Stress Element Combined Normal Stresses Combined Normal and Shear Stresses Equations for Stresses in Any Direction Maximum and Minimum Stresses Mohr's Circle for Stress Stress Condition on Selected Planes Special Case in Which Both Principal Stresses Have the Same Sign Use of Strain-Gage Rosettes to Determine Principal Stresses Columns The Big Picture Objectives of This Slenderness Ratio Transition Slenderness Ratio Euler Formula for Long Columns Johnson Formula for Short Columns Summary: Buckling Formulas Design Factors for Columns and Allowable Load Method of Analyzing Columns Column Analysis Spreadsheet Efficient Shapes for Column Cross Sections Specifications of the AISC Specifications of the Aluminum Association Noncentrally Loaded Columns Pressure Vessels The Big Picture Objectives of This Distinction between Thin-Walled and Thick-Walled Pressure Vessels Thin-Walled Spheres Thin-Walled Cylinders Thick-Walled Cylinders and Spheres Analysis and Design Procedures for Pressure Vessels Spreadsheet Aid for Analyzing Thick-Walled Spheres and Cylinders Shearing Stress in Cylinders and Spheres Other Design Considerations for Pressure Vessels Composite Pressure Vessels Connections Objectives of This Modes of Failure for Bolted Joints Design of Bolted Connections Riveted Joints Eccentrically Loaded Riveted and Bolted Joints Welded Joints with Concentric Loads
Sygnatura czytelni BMW: XIII 7 (nowy)
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The science and technology of industrial water treatment / ed. by Zahid Amjad. - Boca Raton [etc.] : CRC Press/Taylor & Francis Group ; London ; New York : IWA Publishing, cop. 2010. - XIV, 516 s. : il. ; 26 cm.
Bibliogr. przy rozdz. Indeks.
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Biological wastewater treatment / C. P. Leslie Grady, Jr. [et al.]. - 3rd ed. - Boca Raton [etc.] : CRC Press/Taylor&Francis Group ; London : Iwa Publishing, cop. 2011. - XXIX, [1], 991 s. : il. ; 27 cm.
Bibliogr. przy rozdz. Indeks.
Introduction and Background; Classification of Biochemical Operations; Fundamentals of Biochemical Operations; Stoichiometry and Kinetics of Aerobic/Anoxic Biochemical Operations; Theory: Modeling of Ideal Suspended Growth Reactors; Modeling Suspended Growth Systems; Aerobic Growth of Heterotrophs in a Single Continuous Stirred Tank Reactor Receiving Soluble Substrate; Multiple Microbial Activities in a Single Continuous Stirred Tank Reactor; Multiple Microbial Activities in Complex Systems; Stoichiometry, Kinetics, and Simulations of Anaerobic Biochemical Operations; Techniques for Evaluating Kinetic and Stoichiometric Parameters; Applications: Suspended Growth Reactors; Design and Evaluation of Suspended Growth Processes; Activated Sludge;Biological Nutrient Removal; Aerobic Digestion; Anaerobic Processes; Lagoons;Theory: Modeling of Ideal Attached Growth Reactors; Biofilm Modeling; Biofilm Reactors;Fluidized Bed Biological Reactors; Applications: Attached Growth Reactors; Trickling Filter; Rotating Biological Contactor; Submerged Attached Growth Bioreactors; Future Challenges; Fate and Effects of Xenobiotic Organic Chemicals; Designing Systems for Sustainability.
Sygnatura czytelni BMW: II M 148 z (nowy)
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