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首页> 外文期刊>International Journal of Heat and Mass Transfer >Thermal to electrical closed-loop thermoelectric generator with compact heat sink modules
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Thermal to electrical closed-loop thermoelectric generator with compact heat sink modules

机译:具有紧凑型散热片模块的热电闭环热电发电机

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摘要

In this study, a novel compact heat sink module with water as the working fluid in a closed-loop thermal (Peltier effect) to electrical (Seebeck effect) thermoelectric generator (TEG) is presented. The heat sink thermoelectric generator consists of an input system (TEC) that produces a hot and cold liquid and an output system (TEG) that generates output voltage using the thermoelectric model TEC1-12710. The liquid flow rate of the hot side and the cold side ranges from 0.011-0.049 kg/s, and input voltages of 5 V and 7 V are studied. The number of thermoelectric plates in TEC systems with 2TECs and 3TECs, and in a TEG system with 9TEGs are considered. The results demonstrate that an increase in heat transfer in the hot and cold sides results in increased temperature differences in the liquid, which increases the output power. The experiment indicates that a maximum temperature difference of 14.714°C was obtained in the liquid between the hot and cold sides in the TEC system (input system), resulting in a generated output voltage of 5.44 V from the TEG system (output system). Besides, the optimum mass flow rate of the liquid in the hot and cold sides was 0.034 kg/s and 0.016 kg/s for an input voltage of 5 V, and 0.017 kg/s and 0.011 kg/s for an input voltage of 7 V, respectively, producing the maximum temperature difference and total output power. To increase the heating and cooling capacity by obtaining a greater temperature difference, the number of thermoelectric plates and the input voltage of the TEC system should be considered.
机译:在本研究中,提出了一种具有水作为闭环热(Peltier效应)的工作流体的新型紧凑型散热器模块,以电(塞贝克效应)热电发电机(TEG)。散热器热电发电机由输入系统(TEC)组成,该输入系统(TEC)产生热冷液体和输出系统(TEG),其使用热电模型TEC1-12710产生输出电压。研究了热侧和冷侧的液体流速,从0.011-0.049 kg / s和5v和7v的输入电压。考虑了具有2TECS和3TEC的TEC系统中的热电板的数量,并在具有9点的TEG系统中进行。结果表明,热和冷侧的热传递的增加导致液体温度差异增加,这增加了输出功率。实验表明,在TEC系统(输入系统)中的热和冷侧之间的液体中获得了14.714°C的最大温度差,从TEG系统(输出系统)中产生5.44V的产生电压。此外,热和冷侧的液体的最佳质量流量为0.034kg / s,输入电压为0.034kg / s,为0.016kg / s,为0.017kg / s,输入电压为0.017kg / s和0.011kg / s,为7 v分别产生最大温差和总输出功率。为了通过获得更大的温差来增加加热和冷却能力,应考虑热电板的数量和TEC系统的输入电压。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2021年第1期|120562.1-120562.12|共12页
  • 作者单位

    Thermo-Fluid and Heat Transfer Enhancement Lab. (TFHT) Department of Mechanical Engineering Faculty of Engineering Srinakharinwirot University 63 Rangsit-Nakhomnayok Rd. Ongkharak Nakhorn-Nayok 26120 Thailand;

    Thermo-Fluid and Heat Transfer Enhancement Lab. (TFHT) Department of Mechanical Engineering Faculty of Engineering Srinakharinwirot University 63 Rangsit-Nakhomnayok Rd. Ongkharak Nakhorn-Nayok 26120 Thailand;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Thermoelectric generator; Heat sink; Electricity; Voltage; Seebeck effect; Peltier effect; Heat transfer;

    机译:热电发电机;散热器;电;电压;塞贝克效应;Peltier效果;传播热量;

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