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首页> 外文期刊>Journal of Mechanical Engineering >Probabilistic Thermal and Electromagnetic Analyses of Subsea Solenoid Valves for Subsea Blowout Preventers
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Probabilistic Thermal and Electromagnetic Analyses of Subsea Solenoid Valves for Subsea Blowout Preventers

机译:海底防喷器的海底电磁阀的概率热和电磁分析

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摘要

A prototype of subsea solenoid valve for subsea blowout preventers is designed and manufactured. The deterministic and probabilistic thermal and electromagnetic finite element analyses are performed by using ANSYS software. The effects of uncertainties of five material properties four physical dimensions and an applied voltage on the maximum temperature within the valve and the electromagnetic force with a given air gap are researched by means of Monte Carlo simulation (MCS) and response surface method (RSM). The thermal and electromagnetic experiments were done to validate the finite element analysis results. The results show that the radius of magnetic ring, applied voltage and thermal conductivity of 440C stainless steel have significant effects on the maximum temperature of subsea solenoid valve. The radius of plunger and inside radius of plunger sleeve have significant effects on the electromagnetic force of subsea solenoid valve. The results of finite element analysis and thermal and electromagnetic experiments indicate good matches. Therefore, the probabilistic finite element analysis shows its advantages in improving the development process and performance of subsea solenoid valves.
机译:设计并制造了用于海底防喷器的海底电磁阀原型。使用ANSYS软件进行确定性和概率性的热和电磁有限元分析。利用蒙特卡罗模拟(MCS)和响应面法(RSM)研究了五个材料特性,四个物理尺寸和施加电压对阀内最高温度以及给定气隙下电磁力的不确定性的影响。进行了热和电磁实验,以验证有限元分析结果。结果表明,440C不锈钢的磁环半径,施加电压和导热系数对海底电磁阀的最高温度有显着影响。柱塞的半径和柱塞套的内半径对海底电磁阀的电磁力有很大的影响。有限元分析以及热和电磁实验的结果表明匹配良好。因此,概率有限元分析显示出其在改善海底电磁阀的开发过程和性能方面的优势。

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