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Performance assessment of an air source heat pump water heater from exergy aspect

机译:驱动方面的空气源热泵热水器的性能评估

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In this study, thermodynamic inefficiencies of the components and the whole system are quantified by exergy destruction. The performance of an air source heat pump water heater (ASHPWH) is examined experimentally under varying ambient conditions from the exergy destruction aspect. The exergy destruction is calculated for each moment through the entire heating period with regard to collected temperature and pressure data under various ambient conditions. The exergy destructions are examined continuously in a sequence from the beginning to the end of the water heating process. This approximation allows the designer and the manufacturer to see the progress of exergy destruction through the entire heating period to evaluate the performance of every component for avoiding irreversibilities and improving the ASHPWH. During these observations, three individual zones are observed in which the exergy destruction characteristics have changed. Furthermore, the impact of the ambient conditions on these zones is identified either. The thermodynamic properties and exergy destruction values are computed for all data collected by a MATLAB code. The results would be helpful to picture out the true evolution of the exergy destruction from component aspect either solely or combined effect of them during the water heating period.
机译:在该研究中,通过损失破坏量化组分和整个系统的热力学低效率。在不同的环境条件下,通过电解破坏方面进行实验检查空气源热泵热水器(ASHPWH)的性能。在各个环境条件下,通过整个加热期通过整个加热时段计算出电解破坏。从水加热过程开始到结束的序列中连续检查了漏洞破坏。这种近似允许设计人员和制造商通过整个加热期看到高度破坏的进展,以评估每个部件的性能,以避免不可逆转,并改善ASHPWH。在这些观察期间,观察到三个单独的区域,其中漏洞的破坏特性发生了变化。此外,鉴定了环境条件对这些区域的影响。对于由MATLAB代码收集的所有数据计算热力学性质和漏洞破坏值。结果将有助于为在水加热时期的完全或组合它们的组合效果中,从组件方面的真正演化中的真正演变是有帮助的。

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