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EXERGY ANALYSIS AND OPTIMIZATION OF A BUILDING AIR CONDITIONING SYSTEM IN TROPICAL CLIMATE

机译:热带气候建筑空调系统的高度分析与优化

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The space conditioning sector is one of the highest exergy consumers and least efficient from the point of view of primary-to-end-use matching. Exergy analysis can be considered as a reliable tool for analyzing and optimizing energy consumption related to building conditioning systems. The present study presents a comparative exergy analysis of the air conditioning system of the TOTAL S.A. offices located in Caracas, Venezuela to finally achieve a reduction of the global electric energy use of the considered building. Starting from the provided thermal cooling load, different possible cooling chains (primary-to-final energy conversion chain) are considered in order to locate the thermodynamically more efficient one from an exergetic point of view. The internal air handler unit, which provides for the cooled and dehumidified air to the building, is fed by the energy obtained from different possible converters of renewable energy primary sources. Specifically, solar and hybrid photovoltaic-thermal (PV/T) panels coupled with an absorption refrigeration machine and with an ejector refrigeration cycle are analyzed. The study that has been carried on leads to identify the most convenient matching between final use and primary sources allowing to substantially reduce the global non-renewable energy consumption of the considered building.
机译:空间调节部门是最高的消费者之一,从主要到最终用途匹配的角度来看,最不高效。 Deergy分析可以被视为可靠的工具,用于分析和优化与建筑调理系统相关的能耗。本研究提出了对委内瑞拉的加拉斯的总部的空调系统的比较放射性分析,委内瑞拉终于实现了被审议的建筑物的全球电能使用的减少。从提供的热冷却负载开始,考虑不同可能的冷却链(初级 - 最终能量转换链),以便从前进的角度来定位热力学上更有效。内部空气处理器单元提供给建筑物的冷却和除湿空气,通过从可再生能源主要来源的不同可能转化器获得的能量来供给。具体而言,分析了与吸收制冷机和带喷射器制冷循环连接的太阳能和混合光伏 - 热(PV / T)面板。已经进行的研究导致确定最终使用与主要来源之间最方便的匹配,允许大大减少被审议的建筑物的全球不可再生能源消耗。

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