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不同出入口条件下气液喷射器喷射性能的数值模拟

  • 秦敬轩 郑平 陈旭
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  • 辽宁石油化工大学石油天然气工程学院,辽宁 抚顺 113001

收稿日期: 2016-10-12

  修回日期: 2016-12-04

  网络出版日期: 2017-06-14

基金资助

316L不锈钢在高温高压水中沿晶应力腐蚀裂尖钝化膜的微纳米尺度研究; 水平管气液两相分层流界面剪切改进模型预测研究

Numerical Simulation of Ejection Performance of GasLiquid Ejector under Different Inlet and Outlet Conditions

  • Jingxuan QIN Ping ZHENG Xu CHEN
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  • College of Petroleum Engineering, Liaoning Shihua University, Fushun, Liaoning 113001, China

Received date: 2016-10-12

  Revised date: 2016-12-04

  Online published: 2017-06-14

本文引用格式

秦敬轩 郑平 陈旭 . 不同出入口条件下气液喷射器喷射性能的数值模拟[J]. 过程工程学报, 2017 , 17(3) : 469 -476 . DOI: 10.12034/j.issn.1009-606X.216318

Abstract

.According to the shortage of both traditional two-dimensional design and no considering of gas-liquid phase change in numerical simulation, the ejection performance of gas-liquid ejector was simulated by CFD software. Three-dimension model was established and phase change UDF procedure influenced by time and temperature was used. The simulation results are in good agreement with experiments when phase change caused by temperature is taken into account after 40000 s. The axis velocity, pressure, temperature, entrainment ratio, volume fraction of gas and liquid were obtained by changing the inlet and outlet conditions of gas-liquid ejector. The results showed that entrainment ratio increases with inlet liquid velocity, and reasonable inlet velocity can stabilize volume fraction of gas and liquid and entrainment ratio and benefit to ejection. As outlet pressure increases, entrainment ratio decreases, while volume fraction of LNG increases. Higher outlet pressure can result in inclined flow and BOG liquefaction at the outlet of diffuser which are harmful to ejection. For the specific ejector described in this paper, it is the best ejection performance that liquid inlet velocity is from 11 to 12 m/s and mixture outlet pressue is from 0.101 to 0.304 MPa. of gas-liquid ejector was simulated by CFD software. Three-dimension model was established and phase change UDF procedure influenced by time and temperature was used. The simulation results are in good agreement with experiments whenstabilize
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