会议论文详细信息
8th TSME-International Conference on Mechanical Engineering
Heat transfer enhancement of flow insulator by combined stainless steel fibrous and wire net porous materials
Khantikomol, P.^1 ; Polsongkram, M.^1 ; Apisitpinyo, W.^1 ; Poowadin, T.^1
Renewable Energy Technology Research Laboratory (RTER), Department of Mechanical Engineering, Faculty of Engineering and Architecture, Rajamangala University of Technology Isan, 744 Suranarai Rd., Muang, Nakhonratchasima
30000, Thailand^1
关键词: Electric heater;    Heat Transfer enhancement;    Highest temperature;    Inlet temperature;    Stainless steel wires;    Temperature drops;    Temperature profiles;    Thermal efficiency;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/297/1/012072/pdf
DOI  :  10.1088/1757-899X/297/1/012072
来源: IOP
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【 摘 要 】

The present research article aims to propose the heat transfer enhancement of the flow insulator using combined fibrous and wire net stainless steel porous material. The stainless fibrous plate with porosity of 0.9292 was combined to the stainless steel wire net having pore per inch (PPI) of 16 and total thickness of 30 mm. Two models of the arranging porous plates were prepared, which were model BA and model AB. Each porous plate segment had the same thickness. The examined porous plate model have porosities of 0.8452. The porous plate was placed normal to the flow direction. The air was used as working fluid heated by 5 kW electric heater, which was controlled by the automatic temperature control. Type-K thermocouples were employed to measure the air temperatures. The temperature at front of the porous plate was varied to be 350, 450, and 550°C. The air flow rate was varied in the range of 4-12 m3/hr. The experimental result showed that the temperature drop across the porous plate and the thermal efficiency increase with the inlet temperature. The air velocity slightly affects the temperature profile inside the test section at the upstream side of the porous plate but greatly affects temperature inside the porous plate. In consideration of the arranging porous plate, placing of the stainless steel wire net at the upstream side and placing the stainless steel fibrous at downstream side (model BA) results in the highest temperature drop and the highest thermal efficiency. At Re 733 and inlet temperature 550°C for model BA at 30 mm thickness, the thermal efficiency was 50%. It was shown that the combined stainless steel fibrous and stainless steel wire net porous material could be a good flow insulator.

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