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The impact of internal gains on thermal stratification for public buildings

机译:内部收益对公共建筑热分层的影响

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The indoor temperature in public buildings varies according to its internal loads scenario. In fact, this building typology in temperate climates is generally non-air conditioned and naturally ventilated. In order to improve indoor thermal conditions with appropriate solutions, it is necessary to study the vertical temperature profile. The main objective of this study is to show the impact of thermal stratification on thermal comfort of public buildings. The thermo-airodynamic modeling using TRNSYS(C) and CONTAM (C) have been performed in this numerical simulation study. The indoor air volume is vertically subdivided into several levels to evaluate the evolution of temperature profile taking into account the different inside-outside air exchange and air coupling between sub-zones. This study is performed in the city of Morocco that represents Mediterranean climate region with a moderate temperature. The effect of several parameters, such as indoor occupation pattern, internal lighting, sub-zones air exchange and vertical thermal stratification are studied. Numerical simulation results show that thermal stratification of buildings affects the occupant's comfort level
机译:公共建筑物的室内温度根据其内部负载方案而变化。事实上,温带气候的这种建筑类型通常是非空气条件和自然通风。为了改善适当的解决方案的室内热条件,有必要研究垂直温度曲线。本研究的主要目的是展示热分层对公共建筑物热舒适性的影响。使用Trnsys(c)和corn(c)的热 - 动力学建模已经在该数值模拟研究中进行。室内空气量垂直细分为几个层次,以评估温度曲线的演变考虑到子区域之间的不同内外空气交换和空气耦合。该研究在摩洛哥市进行,代表地中海气候区,温度适中。研究了几种参数的效果,例如室内职业模式,内部照明,子区域空气交换和垂直热分层。数值模拟结果表明,建筑物的热分层影响乘员的舒适程度

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