1. 中国石油青海油田分公司钻采工艺研究院,甘肃敦煌,736202
2. 中国石油青海油田分公司采气一厂,青海格尔木,816000
3. 西北工业大学 航空学院,西安,710072
[ "杜宇斌,工程师,硕士," ]
[ "陶亮,副教授,博士," ]
纸质出版:2025
移动端阅览
杜宇斌, 李刚, 吴玉杰, 等. 随行振动固井的耦合共振效应与应用评价[J]. 机械科学与技术, 2025,44(12):2063-2068.
杜宇斌, 李刚, 吴玉杰, et al. Coupling Resonance Effect and Application Evaluation of Accompanying Vibration Cementing[J]. Mechanical Science and Technology for Aerospace Engineering, 2025, 44(12): 2063-2068.
杜宇斌, 李刚, 吴玉杰, 等. 随行振动固井的耦合共振效应与应用评价[J]. 机械科学与技术, 2025,44(12):2063-2068. DOI: 10.13433/j.cnki.1003-8728.20240029.
杜宇斌, 李刚, 吴玉杰, et al. Coupling Resonance Effect and Application Evaluation of Accompanying Vibration Cementing[J]. Mechanical Science and Technology for Aerospace Engineering, 2025, 44(12): 2063-2068. DOI: 10.13433/j.cnki.1003-8728.20240029.
随行振动固井技术是一种有效克服振动波衰减、提升石油天然气钻井进程中固井质量的新工艺。本文首次展示了自研装备的结构和激励载荷,阐述了该项技术的耦合共振激励机理,给出了简支梁套管共振的振幅表达式、流体中的激波压力函数、激波衰减特征及界面层参考厚度,并量化了功率为30 W装备对5-1/2英寸套管进行固井时的耦合共振响应和泥浆激波特征。通过在青海油田8口井的应用测试,验证了该项技术是一种有效工艺措施。
Accompanying vibration cementing technology is a new technology and equipment that can effectively overcome vibration wave attenuation and improve cementing quality during the oil and gas drilling process. In this article
the equipment structure and excitation load of self-developed equipment is first presented
and the coupling resonance excitation mechanism of this technology is also elaborated. Though theoretical analysis and simulation
we obtained the amplitude expression of the resonance of simply supported beam casing
the shock wave pressure function in the fluid
and the shock wave attenuation characteristics in the fluid
and quantified with the vibration response parameters and shock wave characteristics of 30 W equipment in 5-1/2 inch casing cementing. Through application testing in 8 gas wells in Qinghai Oilfield
it has been further verified that this technology is an effective process measure to improve cementing quality.
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