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Applicability of thermoelectric heat pump in a dedicated outdoor air system

机译:热电热泵在专用室外空气系统中的适用性

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The main objective of this research is to propose a dedicated outdoor air system assisted by a thermoelectric heat pump, and to evaluate the operating energy performance of the proposed system compared with a reference system. The proposed dedicated outdoor air system consists of an enthalpy wheel, a desiccant wheel, and the thermoelectric heat pump to condition the introduced outdoor air to provide required ventilation air to the conditioned zone at neutral temperature, while the reference system consists of a desiccant wheel, a sensible heat exchanger, a cooling coil, and a regeneration air heater. To develop an empirical model for the thermoelectric heat pump applicable to the energy simulation of the proposed system, a thermoelectric heat pump prototype was built, and its operating data were collected in a fully controlled laboratory environment. By integrating the existing models of each system component used in both dedicated outdoor air systems, detailed energy simulations were performed to compare the energy performance of the proposed dedicated outdoor air system with the reference system. The results showed that the proposed system assisted by the thermoelectric heat pump consumed 23% more operating energy than the reference system because of the lower coefficient of performance of the thermoelectric heat pump compared with the conventional vapor compression system. For comparable energy performance, the proposed dedicated outdoor air system should have heat exchange effectiveness values greater than 49% at least at both the process and secondary air channels of the thermoelectric heat pump, and the figure of merit of the thermoelectric modules used in the thermoelectric heat pump should be over 1.35. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究的主要目的是提出一种由热电热泵辅助的专用室外空气系统,并与参考系统相比,评估该系统的运行能量性能。拟议的专用室外空气系统由一个焓轮,一个干燥剂轮和热电热泵组成,以调节引入的室外空气,以在中性温度下向调节区域提供所需的通风空气,而参考系统由一个干燥剂轮组成,显热交换器,冷却盘管和再生空气加热器。为了开发适用于所提议系统的能量模拟的热电热泵的经验模型,构建了热电热泵原型,并在完全受控的实验室环境中收集了其运行数据。通过整合两个专用室外空气系统中使用的每个系统组件的现有模型,进行了详细的能源模拟,以将建议的专用室外空气系统与参考系统的能量性能进行比较。结果表明,与传统的蒸汽压缩系统相比,由于热电热泵的性能系数较低,因此该系统在热电热泵的辅助下比参考系统多消耗了23%的运行能量。为了达到可比的能源性能,建议的专用室外空气系统至少在热电热泵的过程和二次空气通道上的热交换效率值均应大于49%,并且在热电中使用的热电模块的品质因数热泵应超过1.35。 (C)2019 Elsevier Ltd.保留所有权利。

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