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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Optimization design for throttle valve of managed pressure drilling based on CFD erosion simulation and response surface methodology
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Optimization design for throttle valve of managed pressure drilling based on CFD erosion simulation and response surface methodology

机译:基于CFD腐蚀模拟和响应面法的压力钻井节流阀优化设计。

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This article introduces a method to mitigate the effects of erosion on the throttle value of managed pressure drilling, a practice that is vital for drilling safety and efficiency. A discrete phase model (DPM) and a semi-empirical material removal model are adopted to predict mass loss and erosion distribution. The corresponding experiment is performed in order to validate the model, and our hypothesized results are verified by the experiment data. Approaching erosion reduction by choosing the best chamber dimensions for altering particle impact is proven to work excellently. The method was based on a validated erosion model and response surface methodology. The Kriging response surface of at least one parameter versus the mass loss of the valve spool about the bonnet length, the bonnet external radius, and the chamber inner radius of the throttle valve were established, and the multi-objective genetic algorithm was used for the optimized design of the mentioned variables. After the optimization design, the average erosion mass loss of the plug was decreased by 30.2% from that of the original chamber dimensions. The detail analysis of the spool contour in a symmetrical plane indicates the significant decrease of the erosion rate at major points. This was especially evident at the back of the spool. The results showed that the model provides an overall reduction in mass loss and a more even erosion distribution. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文介绍了一种减轻腐蚀对受控压力钻井的节流阀值的影响的方法,该方法对钻井的安全性和效率至关重要。采用离散相模型(DPM)和半经验材料去除模型来预测质量损失和侵蚀分布。为了验证模型,进行了相应的实验,并通过实验数据验证了我们的假设结果。通过选择最佳的腔室尺寸以改变颗粒影响来减少侵蚀已证明是非常有效的。该方法基于经过验证的侵蚀模型和响应面方法。建立了至少一个参数的Kriging响应面与节气门的阀盖长度,阀盖外半径和腔内半径有关的阀芯质量损失,并采用多目标遗传算法提到的变量的优化设计。经过优化设计后,塞子的平均腐蚀质量损失比原始腔室尺寸减少了30.2%。在对称平面上对阀芯轮廓进行的详细分析表明,主要部位的腐蚀速率显着降低。这在线轴后部特别明显。结果表明,该模型总体上减少了质量损失,并使侵蚀分布更均匀。 (C)2015 Elsevier B.V.保留所有权利。

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