在一个直径小的水喷气破裂工具上对侵蚀和应力的数值模拟
Zhenqiang Xu1, Xu Cui2, Jing Zhang3
1National Engineering Research Center of Gas Hydrate Exploration and Development, Guangzhou Marine Geological Survey, Guangzhou 510075, Guangdong, China.
ACS omega
|March 18, 2024
概括
这项研究分析了直径小的水喷气压裂工具的侵蚀和应力. 增加的流速和颗粒度加剧了侵蚀,而较大的颗粒减少了侵蚀.
科学领域:
- 石油工程是石油工程中的一个.
- 流体动力学 流体动力学
- 材料科学 材料科学 材料科学
背景情况:
- 传统的喷气式水力压裂在特定井面临挑战,例如外受损和直径小的井.
- 了解对工具的侵蚀和压力对于优化这些充满挑战的环境中的性能和寿命至关重要.
研究的目的:
- 为了数值地研究经历了小直径的水喷气破裂工具的侵蚀和应力.
- 为了确定关键参数的影响,如输入流量,颗粒大小和颗粒质量度对工具磨损和结构完整性的影响.
主要方法:
- 使用计算流体动力学 (CFD) 方法.
- 利用固体-液体两相流理论和已建立的侵蚀模型.
- 在各种条件下模拟了推动剂颗粒与破碎工具的相互作用.
主要成果:
- 侵蚀的特征是通过在工具的喷嘴壁上的推进颗粒进行切割机制.
- 在速度方面,侵蚀在上喷嘴 (0°) 较为严重,但与下喷嘴 (180°) 相比,侵蚀面积较小.
- 最大应力集中在喷嘴壁上,特别是在上喷嘴的下部.
结论:
- 侵蚀和应力受到运行参数的显著影响.
- 较高的进气流量和粒子质量度导致侵蚀和应力增加.
- 增加推进剂颗粒大小有效地降低了侵蚀率和工具的最大应力.
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