Mathematical modelling of renewable construction materials for green energy-efficient buildings at permafrost regions of Russia; Environmental Challenges; Vol. 4

Bibliografiske detaljer
Parent link:Environmental Challenges
Vol. 4.— 2021.— [100101, 8 p.]
Institution som forfatter: Национальный исследовательский Томский политехнический университет Исследовательская школа химических и биомедицинских технологий
Andre forfattere: Tsvetkov N. A. Nikolay Aleksandrovich, Tolstykh A. V. Aleksandr Vital'yevich, Khutornoi A. N. Andrey Nikolaevich, Boldyrev S. Stanislav, Kolesnikova A. V. Anna Vladimirovna, Tsvetkov D. N. Dmitrii Nikolaevich
Summary:Title screen
The main goal of this work is to assess the influence of moisture transfer processes on the operational properties of complex structures with wooden elements. A physical-mathematical model of the combined heat and moisture transfer in the walls of insulated timber with connectors has been presented in the paper. The model is intended for use in the climatic conditions of the northern territories. The model has been confirmed by experimental data on moisture sorption isotherms in wood, as well as the dependence of moisture conductivity and thermal conductivity coefficients on the temperature and humidity. Based on numerical simulation of nonstationary heat and moisture transfer in external building envelopes made of thermal insulating profiled timber with connectors, heat and mass fluxes in the selected inhomogeneous fragments have been calculated, and their thermal properties have been evaluated. It is shown that moisture transfer processes result in a decrease in thermal properties of walls made of insulated timber with connectors by 6-8%. The presence of connectors does not lead to the formation of any local zones with a significant accumulation of moisture. The studied properties and characteristics of green building materials enabled to development of the methodology of energy-efficient buildings and provide the background for the calculation of energy systems. The results of this work may be combined with other research on renewable or low-carbon energy technology to create a new strategy of sustainable construction in Russian permafrost regions.
Sprog:engelsk
Udgivet: 2021
Fag:
Online adgang:https://doi.org/10.1016/j.envc.2021.100101
Format: Electronisk Book Chapter
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=667501

MARC

LEADER 00000naa0a2200000 4500
001 667501
005 20250317162526.0
035 |a (RuTPU)RU\TPU\network\38706 
035 |a RU\TPU\network\35273 
090 |a 667501 
100 |a 20220330d2021 k||y0rusy50 ba 
101 0 |a eng 
102 |a NL 
135 |a drcn ---uucaa 
181 0 |a i  
182 0 |a b 
200 1 |a Mathematical modelling of renewable construction materials for green energy-efficient buildings at permafrost regions of Russia  |f N. A. Tsvetkov, A. V. Tolstykh, A. N. Khutornoi [et al.] 
203 |a Text  |c electronic 
300 |a Title screen 
330 |a The main goal of this work is to assess the influence of moisture transfer processes on the operational properties of complex structures with wooden elements. A physical-mathematical model of the combined heat and moisture transfer in the walls of insulated timber with connectors has been presented in the paper. The model is intended for use in the climatic conditions of the northern territories. The model has been confirmed by experimental data on moisture sorption isotherms in wood, as well as the dependence of moisture conductivity and thermal conductivity coefficients on the temperature and humidity. Based on numerical simulation of nonstationary heat and moisture transfer in external building envelopes made of thermal insulating profiled timber with connectors, heat and mass fluxes in the selected inhomogeneous fragments have been calculated, and their thermal properties have been evaluated. It is shown that moisture transfer processes result in a decrease in thermal properties of walls made of insulated timber with connectors by 6-8%. The presence of connectors does not lead to the formation of any local zones with a significant accumulation of moisture. The studied properties and characteristics of green building materials enabled to development of the methodology of energy-efficient buildings and provide the background for the calculation of energy systems. The results of this work may be combined with other research on renewable or low-carbon energy technology to create a new strategy of sustainable construction in Russian permafrost regions. 
461 |t Environmental Challenges 
463 |t Vol. 4  |v [100101, 8 p.]  |d 2021 
610 1 |a электронный ресурс 
610 1 |a труды учёных ТПУ 
610 1 |a thermal insulating profiled timber 
610 1 |a physical-mathematical modelling 
610 1 |a heat and moisture transfer 
610 1 |a moisture conductivity 
610 1 |a moisture sorption 
610 1 |a брус 
610 1 |a физико-математическое моделирование 
610 1 |a перенос тепла 
610 1 |a влагопроводность 
610 1 |a сорбция 
610 1 |a влага 
610 1 |a строительные материалы 
610 1 |a энергоэффективные здания 
701 1 |a Tsvetkov  |b N. A.  |g Nikolay Aleksandrovich 
701 1 |a Tolstykh  |b A. V.  |g Aleksandr Vital'yevich 
701 1 |a Khutornoi  |b A. N.  |g Andrey Nikolaevich 
701 1 |a Boldyrev  |b S.  |c chemical engineer  |c researcher of Tomsk Polytechnic University, Candidate of technical sciences  |f 1975-  |g Stanislav  |3 (RuTPU)RU\TPU\pers\46468 
701 1 |a Kolesnikova  |b A. V.  |g Anna Vladimirovna 
701 1 |a Tsvetkov  |b D. N.  |g Dmitrii Nikolaevich 
712 0 2 |a Национальный исследовательский Томский политехнический университет  |b Исследовательская школа химических и биомедицинских технологий  |c (2017- )  |3 (RuTPU)RU\TPU\col\23537 
801 2 |a RU  |b 63413507  |c 20220330  |g RCR 
856 4 |u https://doi.org/10.1016/j.envc.2021.100101 
942 |c CF