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EN
The gradual exploitation of the natural environment has forced most developed countries to promote ecological solutions and the development of sustainable construction. Ventilated facades perfectly match into this trend, and with their appropriate design, they bring real energy savings. This paper analyzes numerically the influence of the inflowing air, mimicking the wind, on the efficiency of heat removal from the ventilated space and heat transmission by thermal radiation and conduction through the consecutive layers of the external wall. For the purpose of comparison, two variants of ventilated facade were adopted: open and closed joints, at different wind speeds prevailing outside. The results obtained show that in windless weather, the ventilated facade with open joints shows higher heat removal efficiency and thus lower heat transmission to the building interior. At higher wind speeds of 5 m/s, the open-joint and closed-joint ventilated facades achieve similar heat transfer efficiency, and the prevailing temperature inside the building for the two technologies is almost identical. Subsequent increments of incoming wind on the building result in minimal differences in the heat transmission to the building interior, representing changes of about 0.1°C at increments of another 5 m/s of incoming wind. Conscious use of this facade technology, along with appropriate urban design of cities, can help reduce the energy needed to cool buildings during the summer period.
EN
Increasingly high demands on environmental protection are intensifying the development of sustainable construction. Ventilated facades can provide an energy-efficient alternative to standard facades, that is, external thermal insulation composite systems (ETICS). The article compares standard facades, which was a reference, to ventilated facades in two variants: closed joints and open joints. The comparison was made by means of numerical simulations of computational fluid dynamic (CFD), under conditions of high outside temperature and high sunshine. The results showed great benefits of using ventilated facades in such external climate conditions. It was also observed that the selection of the variant of ventilated facade in the system of close or open joints has minimal influence on thermal efficiency of the whole partition.
RU
Privedeny rezul’taty, preimusestva i promezutocnye vyvody po novejsim teoreticeskim i eksperimental’nym issledovaniam novyh principov povysenia komfortnosti mikroklimata i energeticeskoj effektivnosti naruznyh ograzdausih konstrukcij zdanij i sooruzenij razlicnogo naznacenia s minimal’nym energopotrebleniem. Pokazano, cto dla energoeffektivnyh ventiliruemyh ograzdausih konstrukcij (EVOK) vozmozno povysit’ energeticeskuu effektivnost’ v neskol’ko raz otnositel’no susestvuusih sovremennyh ograzdauusih konstrukcij i dejstvuusih norm. Primenenie EVOK pozvolit obespecit’ prakticeski polnuu rekuperaciu teplovogo potoka i vlagi, vklucaa svetoprozracnye konstrukcii, cto otkryvaet novye perspektivy dla stroitel’stva i rekonstrukcii zdanij (sooruzenij, teplic) s bol’sim procentom osteklenia.
EN
Results, advantages and intermediate conclusions on the newest theoretical and pilot studies of the new principles of increase of comfort of a microclimate and energy efficiency of the envelopes and fenestration of buildings and constructions of different function with the minimum energy consumption are given. It is shown that for the energy efficient ventilated envelopes (EEVE) it is possible to increase energy efficiency several times of the envelopes and fenestration which are rather existing modern and existing rules. Application of EEVE will allow to provide almost full recovery of a thermal stream and moisture, including fenestration that opens new prospects for construction and reconstruction of buildings (constructions, greenhouses) with big percent of a glazing).
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