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Comparison of Reynolds average Navier–Stokes turbulence models in numerical simulations of the DC arc plasma torch

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【作者】 潘子晗叶雷钱树楼孙强王城叶桃红夏维东

【Author】 Zihan PAN;Lei YE;Shulou QIAN;Qiang SUN;Cheng WANG;Taohong YE;Weidong XIA;School of Engineering Science, University of Science and Technology of China;Hefei Aipuli Plasma Ltd.Company;

【通讯作者】 叶桃红;夏维东;

【机构】 School of Engineering Science, University of Science and Technology of ChinaHefei Aipuli Plasma Ltd.Company

【摘要】 Five turbulence models of Reynolds average Navier–Stokes(RANS), including the standard k-e model, the RNG k-e model taking into account the low Reynolds number effect, the realizable k-e model, the SST k-w model, and the Reynolds stress model(RSM), are employed in the numerical simulations of direct current(DC) arc plasma torches in the range of arc current from 80 A to 240 A and air gas flow rate from 10 m3 h-1 to 50 m3 h-1. The calculated voltage, electric field intensity, and the heat loss in the arc chamber are compared with the experiments. The results indicate that the arc voltage, the electric field, and the heat loss in the arc chamber calculated by using the standard k-e model, the RNG k-e model taking into account the low Reynolds number effect, and the realizable k-e model are much larger than those in the experiments. The RSM predicts relatively close results to the experiments, but fails in the trend of heat loss varying with the gas flow rate. The calculated results of the SST k-w model are in the best agreement with the experiments, which may be attributed to the reasonable predictions of the turbulence as well as its distribution.

【Abstract】 Five turbulence models of Reynolds average Navier–Stokes(RANS), including the standard k-e model, the RNG k-e model taking into account the low Reynolds number effect, the realizable k-e model, the SST k-w model, and the Reynolds stress model(RSM), are employed in the numerical simulations of direct current(DC) arc plasma torches in the range of arc current from 80 A to 240 A and air gas flow rate from 10 m3 h-1 to 50 m3 h-1. The calculated voltage, electric field intensity, and the heat loss in the arc chamber are compared with the experiments. The results indicate that the arc voltage, the electric field, and the heat loss in the arc chamber calculated by using the standard k-e model, the RNG k-e model taking into account the low Reynolds number effect, and the realizable k-e model are much larger than those in the experiments. The RSM predicts relatively close results to the experiments, but fails in the trend of heat loss varying with the gas flow rate. The calculated results of the SST k-w model are in the best agreement with the experiments, which may be attributed to the reasonable predictions of the turbulence as well as its distribution.

【基金】 supported by National Natural Science Foundation of China (Nos. 11675177, 11875256);the Anhui Province Scientific and Technological Project (No. 1604a0902145)
  • 【文献出处】 Plasma Science and Technology ,等离子体科学和技术(英文版) , 编辑部邮箱 ,2020年02期
  • 【分类号】O533
  • 【被引频次】2
  • 【下载频次】38
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