Experimental and numerical studies on dynamic thermal performance of hollow ventilated interior wall

2020 ◽  
Vol 180 ◽  
pp. 115851
Author(s):  
Tao Yu ◽  
Jiangdong Zhao ◽  
Jiri Zhou ◽  
Bo Lei
2013 ◽  
Vol 482 ◽  
pp. 81-84
Author(s):  
Ke Wei Ding ◽  
Wu Sun ◽  
Dong Chen

This paper introduces a new type of rock wool color steel sandwich which is produced by Anhui sambo steel co.,Ltd. The thermal performance analysis of this kind of sandwich is conducted through the finite element software ANSYS in this paper, which reveal the widespread existence of cold bridge phenomenon. And this paper also propose several new ideas on how to reduce the cold bridge condensation of interior wall panels of building.


2021 ◽  
pp. 103334
Author(s):  
Qiang Du ◽  
Liangwei Jin ◽  
Jing Lv ◽  
Changlu Cai ◽  
Runnan Zhang

Energies ◽  
2020 ◽  
Vol 13 (18) ◽  
pp. 4658
Author(s):  
Jiefeng Liu ◽  
Shangxin Yu ◽  
Shichang Yang ◽  
Yiyi Zhang ◽  
Xianhao Fan ◽  
...  

Operating temperature is an important parameter of thyristors to ensure the stable operation of power electronic devices. Thermal management technology is of great significance for improving the reliability of thyristors. In this study, the performance of a phase change material (PCM) mesh-finned heat sink is investigated for the thermal management of thyristors. A multi-physical coupling model of the PCM mesh-finned heat sink is established to analyze the effects of different power losses, air velocities, heights of fins, and thickness of PCM on the thermal performance of the PCM heat sink. The influence of thermal and flow fields on PCM is considered in this model. Furthermore, the heat sink design is optimized to improve the thermal performance based on the calculation results of thermal network parameters. The results show that the power losses, the air velocity, the height of fins, and the thickness of PCM significantly affect the protection ability of the PCM heat sink. After optimizing the heat sink, the PCM heat sink provides 80 s protection time and 100 s recovery time. The PCM mesh-finned heat sink demonstrated good potential for the thermal management of thyristors.


2015 ◽  
Vol 26 (9) ◽  
pp. 1243-1256 ◽  
Author(s):  
Chi-ming Lai ◽  
Shuichi Hokoi

In this study, we integrated a photovoltaic (PV) system, a double-skin structure and a thermal flow mechanism to design ventilated building-integrated photovoltaic (BIPV) curtain walls that can autogenously control an environment using buoyant force. Full-scale experiments and computational fluid dynamics (CFD) simulations were conducted to investigate the flow pattern characteristics for the channel airflow and the thermal performance of the ventilated BIPV curtain walls under various heating conditions, wall thicknesses and types of openings. Channel flows for different channel widths under the same wall heating exhibited different flow patterns and therefore variations in thermal performance. The developed ventilated BIPV curtain walls effectively removed their solar heat gain while maintaining adequate wall thermal performance.


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