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Numerical and Experimental Study on the Performance of Thermoelectric Radiant Panel for Space Heating

机译:热电辐射板空间加热性能的数值实验研究

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摘要

The purpose of this study is to investigate the suitable operation and performance of a thermoelectric radiant panel (TERP) in the heating operation. First, the hypothesis was suggested that the heating operation of TERP can operate without a heat source at the cold side according to theoretical considerations. To prove this hypothesis, the thermal behavior of the TERP was investigated during the heating operation using a numerical simulation based on the finite difference method. The results indicated that it is possible to heat the radiant panel using a thermoelectric module without fan operation via the Joule effect. A mockup model of the TERP was constructed, and the numerical model and hypothesis were validated in experiment 1. Moreover, experiment 2 was performed to evaluate the necessity of fan operation in the heating operation of TERP regarding energy consumption. The results revealed that the TERP without fan operation showed the higher coefficient of performance (COP) in the heating season. After determining the suitable heating operation of the TERP, prediction models for the heating capacity and power consumption of the TERP were developed using the response surface methodology. Both models exhibited good R2 values of >0.94 and were validated within 10% error bounds in experimental cases. These prediction models are expected to be utilized in whole-building simulation programs for estimating the energy consumption of TERPs in the heating mode.
机译:本研究的目的是研究热电辐射板(TERP)在加热操作中的合适操作和性能。首先,提出了假设,即根据理论考虑,TERP的加热操作可以在冷侧的情况下没有热源。为了证明这一假设,使用基于有限差分法的数值模拟在加热操作期间研究了TERP的热行为。结果表明,可以使用通过焦耳效应使用风扇操作的热电模块加热辐射板。构建了TERP的样机模型,在实验1中验证了数值模型和假设。此外,进行了实验2,以评估风扇操作的必要性,以便在泰p的加热操作中关于能量消耗的加热操作。结果表明,没有风扇操作的Terp显示了加热季节中的较高的性能系数(COP)。在确定TERP的合适加热操作之后,使用响应表面方法开发用于加热容量和TERP功耗的预测模型。这两种模型都表现出良好的R2值> 0.94,在实验情况下验证在10%误差范围内。预计这些预测模型将用于整个建筑模拟程序,用于估计加热模式中的TERP的能量消耗。

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  • 作者

    Hansol Lim; Jae-Weon Jeong;

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  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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