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Experimental exergy analysis of the solar thermal system in the Off-Grid Zero Emissions Building

机译:离网零排放建筑中太阳能热系统的实验火用分析

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This paper presents an experimental exergy analysis of the solar thermal system in the Off-Grid Zero Emissions Building (OGZEB) at the Florida State University in efforts to identify components with major irreversibilities, i.e., exergy destruction. The solar thermal system comprises a series of flat-plate solar thermal collectors and 250-gal sensible thermal energy storage tank, and it is an essential constituent of the OGZEB heating system. In this study, exergy flow and destruction rates throughout the solar thermal system were evaluated using the experimental data obtained on two different days. According to the analysis, the greatest exergy destruction rate was observed in the solar thermal collector as expected, and its average exergetic efficiencies were 7.9% and 6.5% on each respective day. In the thermal energy storage tank, most of the exergy destruction was attributed to the mixing of hot water from the collector with the reservoir. This work serves as an initial step to the integrative thermodynamic optimization of the HVAC system in an off-grid residential building, where most energy is consumed for air-conditioning and heating.
机译:本文介绍了佛罗里达州立大学离网零排放大楼(OGZEB)中太阳热系统的实验能值分析,旨在确定具有重大不可逆性(即能值破坏)的组件。太阳能热系统包括一系列平板式太阳能集热器和250加仑的显热储能罐,它是OGZEB加热系统的重要组成部分。在这项研究中,使用两天后获得的实验数据评估了整个太阳能热系统的火用流量和破坏率。根据分析,在太阳能集热器中观察到最大的火用破坏率,正如预期的那样,平均每天的火用效率分别为7.9%和6.5%。在热能储罐中,大部分的火用破坏都归因于集热器与储水箱中的热水混合。这项工作是对离网住宅建筑中的HVAC系统进行综合热力学优化的第一步,在该建筑中,大部分能源用于空调和供暖。

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