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Performance evaluation and economic analysis of integrated earth-air-tunnel heat exchanger-evaporative cooling system

机译:土-空气-隧道热交换-蒸发冷却系统综合性能评估与经济分析

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摘要

Earth-air-tunnel heat exchanger (EATHE) systems are insufficient to meet the thermal comfort requirements in summer conditions. Therefore, evaporating cooling has been integrated with EATHE to enhance the thermal comfort hours. Economics of integrated EATHE-evaporative cooling system to reduce/avoid the use of air-conditioner and electric heater is analyzed by evaluating simple Internal Rate of Return (IRR) on investment. For this analysis a transient and implicit model based on computational fluid dynamics has been used for evaluating the energy saving obtained by the use of EATHE system integrated with evaporative cooling. Four base cases of existing systems, i.e. air-conditioner and electric heater have been considered for carrying out the economic analysis. Moreover, three different types of blower (i.e. energy efficient blower, standard blower and inefficient blower) have been considered for evaluating the energy saving and financial viability of the proposed system. These results of IRR calculation shows that wherever, the existing air conditioner and heaters are efficient, their replacement with proposed EATHE system is not a technically and economically viable option. It is observed that the IRR value is greatly dependent on the electric tariff and the energy efficiency of the blower used in the proposed EATHE system.
机译:地空隧道热交换器(EATHE)系统不足以满足夏季条件下的热舒适性要求。因此,蒸发冷却已与EATHE集成在一起,以提高热舒适性。通过评估投资的简单内部收益率(IRR),分析了集成EATHE蒸发冷却系统减少/避免使用空调和电加热器的经济性。为了进行此分析,已使用基于计算流体动力学的瞬态和隐式模型来评估通过使用集成了蒸发冷却的EATHE系统获得的节能效果。考虑了现有系统的四个基本案例,即空调和电加热器,以进行经济分析。而且,已经考虑了三种不同类型的鼓风机(即节能鼓风机,标准鼓风机和低效率鼓风机),以评估所提出系统的节能和财务可行性。 IRR计算的这些结果表明,无论何时何地,现有的空调和加热器都是有效的,用建议的EATHE系统代替它们在技术上和经济上都不可行。可以看出,IRR值很大程度上取决于建议的EATHE系统中使用的鼓风机的电价和能效。

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