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Integration of natural ventilation by thermal buoyancy in solar thermal modelling for conservation of thermal energy in vernacular building in India

机译:通过热浮力将自然通风整合到太阳热模型中,以节省印度本土建筑中的热能

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There are array of evidences to suggest that changes in climate are taking place globally with varying degrees of impacts. Climate change triggered by global warming is expected to have widespread consequences and subsequent usage and overloading of conventional energy resources. These effects will have major impacts on ecosystems, health, water resources and key economic sectors. Most of the vernacular building design considerations have a window and a small opening at ventilator level / beneath the ceiling at opposite wall to create natural ventilation to the building envelop through thermal buoyancy effect. Natural ventilation by thermal buoyancy in a building with a window and a small opening at ventilator level and periodic solar thermal model have been integrated to investigate the thermal behaviour of a non-air conditioned building. The Solar thermal model has been considered to analyse the indoor air temperature swings for heating and cooling periods with due considerations to the building components such as walls/roof, periodic solar radiation, isothermal mass, openings (window and door opening), ACHs and ambient air temperatures. The vernacular concept has been studied through solar thermal model to elaborate the influence openings on indoor air temperature swings and to consider its importance in designing of the non-air conditioned buildings for conservation of energy at micro level and to save a large amount of energy at settlement level as the over-all temperature in the room is a sensitive function of the size of the openings i.e. windows and ventilators / slits.
机译:有大量证据表明,全球气候变化正在发生不同程度的影响。预计由全球变暖引发的气候变化将产生广泛的后果,并随后对常规能源的使用和超负荷使用。这些影响将对生态系统,健康,水资源和关键经济部门产生重大影响。大多数民用建筑设计要考虑的是在通风机高度/对面墙壁的天花板下方/相对位置的天花板下有一个窗户和一个小开口,以通过热浮力作用为建筑围护结构提供自然通风。在窗户和通风机水平有小开口的建筑物中,通过热浮力进行自然通风和定期的太阳热模型已被集成,以研究非空调建筑物的热行为。已经考虑使用太阳能热模型来分析室内空气温度在供暖和制冷期间的波动,并适当考虑了建筑物的组成部分,例如墙壁/屋顶,周期性的太阳辐射,等温物质,开口(窗户和门的开口),ACH和周围环境空气温度。通过太阳能热模型对白话概念进行了研究,以阐明对室内空气温度波动的影响开口,并考虑其在设计非空调建筑中的重要性,以节省微观能源并节省大量能源。作为室内总体温度的沉降水平是开口大小(即窗户和通风机/缝隙)的敏感函数。

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