陈赵军,孟凡凯,徐辰欣,江帆,谢志辉.基于热管散热的串联式两级热电制冷器制冷性能综合分析[J].,2023,22(6):527-539 |
基于热管散热的串联式两级热电制冷器制冷性能综合分析 |
Comprehensive analysis of refrigeration performance of series two-stage thermoelectric refrigerator based on heat pipe heat dissipation |
投稿时间:2021-02-23 修订日期:2021-06-06 |
DOI: |
中文关键词: 两级热电制冷器 热管 有限时间热力学 制冷率 制冷系数 热力学完善度 极限制冷能温差 |
英文关键词: Two-stage thermoelectric cooler heat pipe finite time thermodynamics refrigeration rate COP thermodynamic perfectibility extreme refrigeration temperature difference |
基金项目:国家自然科学基金项目(面上项目,重点项目,重大项目) |
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中文摘要: |
针对基于热管散热的串联式两级热电制冷器,建立了有限时间热力学模型。通过热阻分析的方法建立了热电制冷器的一维热阻网络图并给出了冷热端热阻的具体计算方法。以制冷率、制冷系数、热力学完善度和极限制冷温差为性能指标,用数值算例的方法研究了工作电流、热电单元分配比、热电单元横截面积、热电单元长度、热管几何参数(冷凝段长度和管芯厚度)和制冷温差等关键参数对热电制冷器综合性能的影响规律。 |
英文摘要: |
A finite-time thermodynamic model is established for a series two-stage thermoelectric cooler
based on heat pipe heat dissipation. The one-dimensional thermal resistance network diagram of the
thermoelectric cooler is built basedonthermalresistanceanalysistocalculatethethermalresistanceof
the hot and cold ends. Taking refrigeration rate, coefficient of performance (COP) , thermodynamic
perfectibility and extreme cooling temperature difference as performance indicators, a numerical
example is used to study the influences of key parameters on the comprehensive performance of
thermoelectric coolers. The key parameters include working current, thermoelectric unit distribution
ratio, thermoelectric unit cross-sectional area, thermoelectric unit length, heat pipe geometric
parameters (condensing section length and tube corethickness) , and cooling temperature difference. |
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