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Numerical Study on Improving the Efficiency of the Earth Pipe Cooling System

机译:改善土管冷却系统效率的数值研究

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摘要

Earth pipe cooling (EPC) is one of the passive cooling systems which has proven to be a very energy efficient sustainable cooling technique for the sub-tropical areas. This cooling system uses the soil as a medium of heat transfer. Efficiency of this system largely depends on the velocity of the cooling air, shape of the cooling space, pattern of the walls in cooling space, inlet size and position of the incoming air. It is well-known that increasing the velocity of the cooling air will improve the efficiency of the cooling system. Therefore, this study focused on the optimization of the shape and pattern of the inlet which might improve the efficiency of the cooling system. ANSYS Fluent is used to perform this simulation-based study. It is found that inclusion of aerofoil shaped turbulator in the inlet cross sectional area provide better circulation of the air inside the cooling space, thus, enhance the effectiveness of the system.
机译:接地管冷却(EPC)是被动冷却系统之一,已被证明是用于亚热带地区的一种非常节能的可持续冷却技术。该冷却系统利用土壤作为热传递的媒介。该系统的效率主要取决于冷却空气的速度,冷却空间的形状,冷却空间中壁的样式,进气口的大小和进入空气的位置。众所周知,增加冷却空气的速度将提高冷却系统的效率。因此,本研究的重点是优化进气口的形状和样式,以提高冷却系统的效率。 ANSYS Fluent用于执行此基于仿真的研究。发现在进口横截面中包括翼型湍流器可提供冷却空间内空气的更好循环,从而增强系统的有效性。

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