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Experimental investigation and optimization of a low-temperature thermoelectric module with different operating conditions

机译:不同工况下低温热电模块的实验研究与优化

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Purpose-This paper aims to present an experimental investigation and optimization of a low-temperature thermoelectric module to examine the influence of the main operating conditions. Design/methodology/approach-In this work, a comparison was made by varying the various operating parameters such as heat source temperature, the flow rate of the cold fluid and the external load resistance. A Taguchi method was applied to optimize the parameters of the system. Three factors, including the external load resistance, mass flow rate of water (at the heat sink side) and heater temperature (at the heat source side) along with different levels were taken into account. Analysis of variance was used to determine the significance and percentage contribution of each parameter. Findings-The experimental results show that the maximum power output 8.22W and the maximum conversion efficiency 1.11 per cent were obtained at the heater temperature of 240℃, the cold fluid mass flow rate of 0.017 kg/s, module temperature difference of 45℃ and the load resistance of 5 0. It was observed that the optimum parameter levels for maximum power output determined as 5 0 external load resistance, 0.17 kg/s mass flow rate of water and 240℃ heater temperature (A1B3C3). It reflects that these parameters influence on the optimum conditions. The heater temperature is the most significant parameter on the power output of the thermoelectric module. Originality/value-It is dear from the confirmation test that experimental values and the predicted values are in good agreement.
机译:目的-本文旨在对低温热电模块进行实验研究和优化,以检查主要工作条件的影响。设计/方法/方法-在这项工作中,通过更改各种操作参数(例如热源温度,冷流体的流量和外部负载阻力)进行了比较。采用Taguchi方法优化系统参数。考虑了三个因素,包括外部负载阻力,水(在散热器侧)的质量流量和加热器温度(在热源侧)以及不同的水平。方差分析用于确定每个参数的显着性和百分比贡献。研究结果-实验结果表明,在加热器温度为240℃,冷流体质量流量为0.017 kg / s,模块温差为45℃,加热温度为240℃时,可获得最大功率输出8.22W,最大转换效率为1.11%。负载电阻为50。观察到最大功率输出的最佳参数水平确定为5 0外部负载电阻,0.17 kg / s的水质量流量和240℃的加热器温度(A1B3C3)。它反映出这些参数影响最佳条件。加热器温度是热电模块功率输出上最重要的参数。创意/价值-从确认测试中可以看出,实验值和预测值吻合良好。

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