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作 者:JIANG Fan MENG Fankai CHEN Lin’gen CHEN Zhaojun
机构地区:[1]Institute of Thermal Science and Power Engineering,Wuhan Institute of Technology,Wuhan 430205,China [2]School of Mechanical&Electrical Engineering,Wuhan Institute of Technology,Wuhan 430205,China [3]College of Power Engineering,Naval University of Engineering,Wuhan 430033,China
出 处:《Journal of Thermal Science》2022年第2期390-406,共17页热科学学报(英文版)
基 金:supported by The National Natural Science Foundation of P.R.China(Project No.11974429 and Project No.51576207);the Natural Science Foundation of Naval University of Engineering(20161505)。
摘 要:This paper aims to find a more general analysis method for the refrigeration performance,and to design a high efficiency modular cooling structure of water-cooled plate.A new analysis method,namely current and refrigeration rate density analysis,is proposed.The general refrigeration performance calculation equations are obtained.A finite-time thermodynamic model of the thermoelectric device is established considering Thomson effect.The basic structure of water-cooled thermoelectric air-conditioner is designed and the specific calculation method is given.The influences of input current density,filling factor and heat transfer conditions on refrigeration performance of the thermoelectric air-conditioner are analyzed,which is compared with refrigeration performance of air-cooled thermoelectric air-conditioner.The results show that the maximum refrigeration rate density of the water-cooled thermoelectric air-conditioner is 8.65 k W/m^(2),and the maximum coefficient of performance(COP)is 2.27 in the case of the cooling temperature differenceΔT=5 K.Compared withΔT=5 K,the maximum refrigeration rate density and the maximum COP ofΔT=15 K decreases by 27.98%and 76.65%,respectively.At the filling factorθ=0.43,the refrigeration rate density and COP are 2.57 k W/m~2 and 1.24,respectively.The experimental device of thermoelectric air-conditioner is established to verify the model.The experimental results show that the maximum value of input current and COP is 4 A and 0.95 with the efficient water-cooling method,respectively.The experimental data coincides with the theoretical calculation,which shows the validity of the analysis method and cooling method.
关 键 词:thermoelectric air-conditioner refrigeration rate density COP finite-time thermodynamics non-equilibrium thermodynamics performance optimization
分 类 号:TB657.2[一般工业技术—制冷工程]
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