Research on Erosion Damage Laws and Structural Optimization of Bypass Valve for Positive Displacement Motors

IF 2.8 4区 工程技术 Q2 ENGINEERING, CHEMICAL Processes Pub Date : 2024-09-11 DOI:10.3390/pr12091953
Yanbo Zhang, Lei Zhang, Yulin Gao, Ping Shi, Yu Wang, Lingrong Kong
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Abstract

The bypass valve of a positive displacement motor is a key component for regulating the bottom hole pressure and ensuring the normal circulation of drilling fluid during the drilling process. Severe erosion damage to the bypass valve significantly affects the service life of the positive displacement motor, yet there is currently a lack of related research. In this research, the flow characteristics of drilling fluid inside the valve core were analyzed through flow field simulation, and the main factors influencing erosion damage to the valve core were investigated. The results indicate that the side holes and flow channel structure of the valve core are the main causes of erosion. Based on this, two optimization schemes are proposed, namely, reducing the number of bypass side holes to 4 and optimizing the flow channel cone angle to 45°. The simulation results show that the erosion rate of the optimized valve core is significantly reduced, and the service life is effectively improved. Finally, a valve core life prediction model is established using a back propagation (BP) neural network to evaluate the optimization effect. The results show that the applicable flow range and maximum service life of the optimized valve core are increased by approximately 60% and 75.4%, respectively, validating the effectiveness of the optimization scheme.
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正排量发动机旁通阀的腐蚀损伤规律与结构优化研究
正排量马达的旁通阀是钻井过程中调节井底压力和确保钻井液正常循环的关键部件。旁通阀的严重冲蚀损坏会严重影响容积式马达的使用寿命,但目前缺乏相关研究。本研究通过流场模拟分析了阀芯内部钻井液的流动特性,并研究了影响阀芯冲蚀损坏的主要因素。结果表明,阀芯的侧孔和流道结构是造成冲蚀的主要原因。在此基础上,提出了两种优化方案,即减少旁路侧孔数量至 4 个,优化流道锥角至 45°。仿真结果表明,优化后的阀芯冲蚀率明显降低,使用寿命得到有效提高。最后,利用反向传播(BP)神经网络建立了阀芯寿命预测模型,以评估优化效果。结果表明,优化后阀芯的适用流量范围和最大使用寿命分别提高了约 60% 和 75.4%,验证了优化方案的有效性。
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来源期刊
Processes
Processes Chemical Engineering-Bioengineering
CiteScore
5.10
自引率
11.40%
发文量
2239
审稿时长
14.11 days
期刊介绍: Processes (ISSN 2227-9717) provides an advanced forum for process related research in chemistry, biology and allied engineering fields. The journal publishes regular research papers, communications, letters, short notes and reviews. Our aim is to encourage researchers to publish their experimental, theoretical and computational results in as much detail as necessary. There is no restriction on paper length or number of figures and tables.
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