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Working parameters affecting earth-air heat exchanger (EAHE) system performance for passive cooling: A review.

机译:影响地球空气换热器(EAHE)系统性能的工作参数:综述。

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The study on the effect of the working parameters such as pipe material, pipe length, pipe diameter, depth of burial of the pipe, air flow rate and different types of soils on the thermal performance of earth-air heat exchanger (EAHE) systems is very crucial to ensure that thermal comfort can be achieved. In the past decade, researchers have performed studies to develop numerical models for analysis of EAHE systems. Until recently, two-dimensional models replaced the numerical models in the 1990s and in recent times, more advanced analysis using three-dimensional models, specifically the Computational Fluid Dynamics (CFD) simulation in the analysis of EAHE system. This paper reviews previous models used to analyse the EAHE system and working parameters that affects the earth-air heat exchanger (EAHE) thermal performance as of February 2017. Recent findings on the parameters affecting EAHE performance are also presented and discussed. As a conclusion, with the advent of CFD methods, investigational work have geared up to modelling and simulation work as it saves time and cost. Comprehension of the EAHE working parameters and its effect on system performance is largely established. However, the study on type of soil and its characteristics on the performance of EAHEs systems are surprisingly barren. Therefore, future studies should focus on the effect of soil characteristics such as moisture content, density of soil, and type of soil on the thermal performance of EAHEs system.
机译:研究了工作参数,如管材,管道长度,管道直径,管道深度,气流率和不同类型的土壤效果的研究是地球 - 空气热交换器(EAHE)系统的热性能的非常重要的是确保可以实现热舒适度。在过去的十年中,研究人员已经进行了研究以开发用于分析EAHE系统的数值模型。直到最近,二维模型在20世纪90年代替换了数值模型,并且在近来,使用三维模型进行了更高级的分析,特别是在EAHE系统分析中的计算流体动力学(CFD)仿真。本文介绍了以前的型号,用于分析EAHE系统和工作参数,影响截至2017年2月的地球通风热交换器(EAHE)热性能。还提出并讨论了影响EAHE性能的参数的发现。作为结论,随着CFD方法的出现,调查工作已经提高了建模和模拟工作,因为它节省了时间和成本。在很大程度上建立了对EAHE工作参数的理解及其对系统性能的影响。然而,令人惊讶的是,对土壤类型及其对屋檐性能的特性进行研究。因此,未来的研究应专注于土壤特性如水分含量,土壤密度和土壤型土壤的效果。

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