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Underground soil and thermal conductivity materials based heat reduction for energy-efficient building in tropical environment

机译:基于地下土壤和导热材料的减热技术,用于热带环境中的节能建筑

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摘要

In this paper, an alternative way of releasing heat of building is investigated in order to reduce energy demand of building built in tropical environment. Underground soil is considered as a source for extracting heat from building through thermal conductivity pipes. Thermal conductivity pipes are considered to be fixed on the inner faces of the walls and their lower part to be inserted to the ground where temperature is lower than the indoor temperature. The entire analyses were done numerically using ANSYS 11. Heat flow between two systems was studied and the performance of the thermal conductivity pipes was examined. The room temperature in the presence of thermal conductivity pipes as well as mechanical cooling system and other passive energy-efficient techniques of building were also studied. The underground soil was demonstrated to act as a heat sink and absorb heat released from the rooms and the thermal conductivity pipes would play a role in transferring heat from the rooms to the underground soil. The system works efficiently when it is used with other mechanical or passive cooling systems. In this way, energy saving measure could be possible to reduce building temperatures by around 3?.
机译:为了减少热带环境下建筑物的能源需求,本文研究了一种释放建筑物热量的替代方法。地下土壤被认为是通过导热管从建筑物中吸收热量的来源。导热管被认为是固定在墙壁的内表面,其下部插入温度低于室内温度的地面。整个分析使用ANSYS 11进行了数值分析。研究了两个系统之间的热流,并研究了导热管的性能。还研究了存在导热管,机械冷却系统和其他被动节能建筑技术的室温。地下土壤被证明是一个散热器,吸收房间释放的热量,而导热管将把热量从房间转移到地下土壤。与其他机械或被动冷却系统一起使用时,该系统可高效运行。这样,可以采取节能措施将建筑物温度降低约3?。

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