2017
DOI: 10.1007/978-3-319-70987-1_50
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Thermal Resistance and Accumulation of Heat by the Wall Construction

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Cited by 3 publications
(4 citation statements)
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“…Thermal regime and humidity conditions of enclosing structures described in the works of such authors as: Musorina T.A., Vatin N., Gorshkov A., Nemova D., Tarasova D., Zaborova D., Selezneva A., Ishkov A. [13][14][15][16][17][18] The problem of making a decision when choosing the best solution to increase the thermal protection of a building is difficult due to the variety of factors affecting this choice. Each solution has some advantages and some disadvantages and due to the variety of factors it is not immediately clear which of the options is better (preferable) than others and why.…”
Section: Introductionmentioning
confidence: 99%
“…Thermal regime and humidity conditions of enclosing structures described in the works of such authors as: Musorina T.A., Vatin N., Gorshkov A., Nemova D., Tarasova D., Zaborova D., Selezneva A., Ishkov A. [13][14][15][16][17][18] The problem of making a decision when choosing the best solution to increase the thermal protection of a building is difficult due to the variety of factors affecting this choice. Each solution has some advantages and some disadvantages and due to the variety of factors it is not immediately clear which of the options is better (preferable) than others and why.…”
Section: Introductionmentioning
confidence: 99%
“…High-strength concrete has to be strength, frost resistance and water penetration resistance tested [10,11], however under Russian harsh climatic conditions thermal capacity is an extremely important characteristic of a building envelope. The accumulative capacity of wall structures determines the amount of heat absorbed and passed by the structure and used to maintain a required temperature level of the room and enclosing wall when the temperature of the external heat source changes [12]. According to [13], thermal stability is one of the most important topics in the building design, as it measures how quickly a material gains or loses heat to the environment.…”
Section: Introductionmentioning
confidence: 99%
“…Для снижения вероятности появления влаги и минимизации количества конденсирующейся влаги в толще ограждающей конструкции каждый последующий слой в наружной стене в направлении от внутренней к наружной поверхности должен обладать большей паропроницаемостью и меньшей теплопроводностью по сравнению с предыдущим. Избытки влаги в стене из газобетона чаще всего возникают из-за использования для наружной отделки отделочных покрытий, имеющих высокие значения сопротивления паропроницанию и низкие значения сопротивления теплопередаче [1][2][3][4][5].…”
Section: Introductionunclassified
“…В работе оценивали влажностный режим в газобетонной стене, отделанной цементно-песчаной штукатуркой. Покрытия, получаемые при использовании данной штукатурки, характеризуются плотностью 1800 кг/м 3 , что согласно нормативной документации не позволяет рекомендовать данный материал для отделки газобетонных блоков 1,2,3 .…”
Section: Introductionunclassified