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Enhancement of natural ventilation in buildings using a thermal chimney

机译:使用热烟囱增强建筑物的自然通风

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A new module was developed for and implemented in the EnergyPlus program for the simulation and determination of the energy impact of thermal chimneys. This paper describes the basic concepts, assumptions, and algorithms implemented into the EnergyPlus program to predict the performance of a thermal chimney. Using the new module, the effects of the chimney height, solar absorptance of the absorber wall, solar transmittance of the glass cover and the air gap width are investigated under various conditions. Chimney height, solar absorptance and solar transmittance turned out to have more influence on the ventilation enhancement than the air gap width. The potential energy impacts of a thermal chimney under three different climate conditions are also investigated. It turned out that significant building cooling energy saving can be achieved by properly employing thermal chimneys and that they have more potential for cooling than for heating. In addition, the performance of a thermal chimney was heavily dependent on the climate of the location.
机译:已为EnergyPlus程序开发并实施了一个新模块,用于模拟和确定热烟囱的能量影响。本文介绍了在EnergyPlus程序中实现的用于预测热烟囱性能的基本概念,假设和算法。使用新模块,研究了烟囱高度,吸收器壁的太阳吸收率,玻璃罩的太阳透射率和气隙宽度在各种条件下的影响。烟囱高度,日光吸收率和日光透射率被证明对通风增强的影响大于气隙宽度。还研究了热烟囱在三种不同气候条件下的潜在能量影响。事实证明,适当地使用热烟囱可以显着节省建筑物的冷却能源,并且它们具有更大的制冷潜力而非供暖潜力。此外,热烟囱的性能在很大程度上取决于所在地区的气候。

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