张正玉,袁军,李阳兵. 高强度高温高压直推存储式测井系统在超深井的应用[J]. 石油钻探技术,2022, 50(5):117-124. DOI: 10.11911/syztjs.2022079
引用本文: 张正玉,袁军,李阳兵. 高强度高温高压直推存储式测井系统在超深井的应用[J]. 石油钻探技术,2022, 50(5):117-124. DOI: 10.11911/syztjs.2022079
ZHANG Zhengyu, YUAN Jun, LI Yangbing. Application of rigid HTHP pipe-conveyed memory logging system in ultra-deep wells [J]. Petroleum Drilling Techniques,2022, 50(5):117-124. DOI: 10.11911/syztjs.2022079
Citation: ZHANG Zhengyu, YUAN Jun, LI Yangbing. Application of rigid HTHP pipe-conveyed memory logging system in ultra-deep wells [J]. Petroleum Drilling Techniques,2022, 50(5):117-124. DOI: 10.11911/syztjs.2022079

高强度高温高压直推存储式测井系统在超深井的应用

Application of Rigid HTHP Pipe-Conveyed Memory Logging Systemin Ultra-Deep Wells

  • 摘要: 在高温高压、超深大斜度等特殊复杂井况下,由于工艺和仪器的局限性,传统测井方式无法满足油气资源的安全高效开发要求,直推储存式测井系统等测井新工艺被广泛应用。为此,在介绍高强度高温高压直推存储式测井系统组成的基础上,总结了其技术优势,分析了该系统在四川盆地及塔里木盆地超深井的典型应用场景和应用效果。现场应用表明,直推存储式测井系统在超深井测井一次成功率不低于95%且耗时最少,可以解决大摩阻、井漏及复杂井眼轨迹条件下的测井难题,较其他测井方式的测井时效和施工成功率更高,在复杂超深井测井中潜力巨大,具有广泛的推广价值。

     

    Abstract: In hostile condition wells, such as high-temperature high-pressure(HTHP) ones and ultra-deep and highly deviated ones, etc., conventional logging methods no longer meet the requirements of safe and efficient oil and gas resource development due to technological and instrumental limitations. Therefore, new logging technologies such as pipe-conveyed memory logging system have been employed extensively. Based on the introduction of the constitution of the rigid HTHP pipe-conveyed memory logging system, its technological advantages were summarized. Furthermore, the typical application scenarios and results of this system in ultra-deep wells of Sichuan Basin and Tarim Basin were analyzed. The field applications show that the success rate of the pipe-conveyed memory logging system in the logging of ultra-deep wells is not less than 95% with the shortest operation time. It suggests that the system can effectively solve the logging problems under the conditions of tight hole, lost circulation, and complex wellbore trajectory. Compared with other logging methods, this logging system offers higher logging efficiency and greater operation success rate, therefore, it demonstrates great potential in the logging of complex ultra-deep wells, and its application can be scaled up broadly as well.

     

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