thermal flow
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2022 ◽  
Vol 92 (3) ◽  
pp. 457
Author(s):  
А.Н. Паньчак ◽  
М.З. Шварц

In photovoltaic converters of concentrated sunlight, the thermal flow is directed from the photoactive region (p-n junction) to a heat-spreading basement through the substrate. The heat sink transfers the excess thermal to the environment by convection or cooled by a liquid carrier. Reducing the thickness of the substrate makes it possible to reduce the thermal resistance of the crystal and lower the operating temperature of the photoactive region. However, in this case, the mechanical stresses in it increase. This work discusses the balance between the mechanical strength of the sample and the decrease in its operating temperature.


2021 ◽  
Vol 127 ◽  
pp. 114417
Author(s):  
Gang Nan ◽  
Zhihui Xie ◽  
Xiaonan Guan ◽  
Xiangkun Ji ◽  
Daoguang Lin

2021 ◽  
Vol 12 (4) ◽  
pp. 250
Author(s):  
Guanchen Liu ◽  
Lijun Zhang

Aiming at the complex experimental conditions of multi-physical field coupling in the analysis of thermal characteristics of lithium-ion batteries, a three-dimensional electrochemical-thermal flow coupling model for lithium-ion batteries was established using COMSOL Multiphysics software. Through the analysis of simulation results, the thermal characteristics of lithium-ion batteries for electric vehicles were explored from the aspects of heat generation and dissipation. It was found that increasing the charge–discharge rate and the electrode thickness will increase the temperature rise rate of lithium-ion batteries, and the temperature rise rate of lithium-ion batteries is the highest during their first time charging and discharging. Increasing the airflow velocity and reducing the size of the inlet flow area can improve the cooling effect on the cell. Under a single inlet, the cooling effect of the airflow field entering from the negative electrode is better than that from the positive electrode.


2021 ◽  
pp. 911-920
Author(s):  
Lou Jin ◽  
Yibin Wu ◽  
Liang Wu ◽  
Dongyue Cui ◽  
Pin Yang

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