158660
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(Monografie, Studia, Rozprawy / Politechnika Świętokrzyska, ISSN 1897-2691 ; M136)
(Inżynieria Środowiska i Energetyka / Politechnika Świętokrzyska)
EXPERIMENTAL AND CALCULATION RESEARCH OF DISTRIBUTION OF BUILDING THERMAL STATE CHARACTERISTICS FOR EDUCATIONAL BUILDING IN KYIV caćemy of Sciences of UkrainęDescription of the object of study Experimental definitions of integral and distributed characteristics of the energy state of a building Description of the experimental method for determining the temperaturę characteristics of the building Results of temperaturę maps processing The results of the measuring time temperaturę characteristics of representative spaces Daily outside temperaturę changes and analysis Prediction of energy characteristics by regression models Methodology for creating forecasting regression models Weather analysis Investigation of changes in intemal air temperaturę under the influence of various factors Creation of regression models Linear multivariate regression dependence for predicting indor air temperaturę Nonlinear multivariate regression dependence for predicting indoor air temperaturę Nonlinear multivariate regression dependence for predicting heatinglevels Experimental and calculation study of the integral and distributed characteristics of the building energy state Diagnosis of temperaturę and thermal modes of premises Mathematical description of the model Experimental technique Simulation results Distribution of the heat flow fom the building's heating system Determination of intermittent heating management efficiency Regression models for prediction of daily average indoor air temperaturę FORMING THERMOPHYSICAL PROPERTIES OF A MATERIAŁlevel ot development of BY CREATING PREDICTABLE POROUS STRUCTURES determined by energy prodm Porous structures and their effect on thermophysical properties of thermalOf all the industries of hur protection elementsenergetics has the greates Study of pore formation in the raw materiał mixtureMistakes in this area ha\ Finding of the generał ized equation of thermalconductivityeat qi- all this requires eners\ for porous structures vears high prioritv aeąuire Obtaining claydite witha minimal thermal conductmty coefficient Method of making an additive to concrete mixtures of pure clay a minimal coefficient of thermal conductivite and with existing scheme. Creation ofeffective metallic thermal insulation constructions Design of a mathematical model of transfer of thermal energy throug exceed the profit. Secondha body with a microporous structure
Sygnatura czytelni BMW: XI J 2
Status dostępności:
Biblioteka Międzywydziałowa
Egzemplarze są dostępne wyłącznie na miejscu w bibliotece: sygn. M 15100 N (1 egz.)
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Uwaga dotycząca bibliografii
Bibliografia, netografia, wykaz norm na stronach 136-145.
Uwaga dotycząca finansowania
Finansowanie: Ministerstwo Nauki i Szkolnictwa Wyższego (Polska).
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