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Development dynamic monitoring technologies used in the Puguang high-sulfur gas field

机译:普光高硫气田开发动态监测技术

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There is lack of performance monitoring technologies and related standards and specifications in the Puguang gas field, which is ultra-deep with high sulfur content. In this paper, five key technologies of dynamic monitoring were developed and the related standards and specifications were formulated by investigating high-sulfur gas fields at home and abroad, combined with equipment development, laboratory experiments, theoretical research and field tests. The five key technologies include gas production profile logging, downhole sampling and fluid phase analysis, dynamic water invasion prediction and water producing horizon identification, gas well productivity testing and evaluation, and development monitoring and safety control of high-sulfur ultra-deep wells. Then, these key technologies were applied for verification in the Puguang gas field. And the following research results were obtained. First, the sulfur-resistant gas production profile logging tool has a temperature resistance of 175?°C and pressure resistance of 105?MPa. Forty-three well times gas production profile logging is carried out with a success ratio of 100%. Second, the high-sulfur downhole pressure sampler has a temperature resistance of 150?°C and pressure resistance of 70?MPa. Seven well times downhole pressure sampling is carried out with a success ratio of 100%. Third, elemental sulfur is precipitated in the formation when the formation pressure drops to 29.5?MPa. And no sulfur is deposited in the wellbore when the production rate of gas well is higher than 20?×?104?m3/d. Fourth, water producing horizons can be identified accurately and water breakthrough time of gas wells can be predicted by using water producing horizon identification technology and dynamic water invasion prediction model. Water influx rates can be controlled and water-free gas production period of gas wells can be extended by optimizing and adjusting the working systems of gas wells. And fifth, full coverage of gas well productivity testing is realized by using the testing technology of "downhole implanted gauge & cable delivery & wellhead flow-variable rate", pressure calculation model and well testing interpretation model, and the productivity evaluation results of gas wells are accurate. Sixth, the dynamic gas tight pressure of the cable multi-stage leakage control system of super-high pressure and gas tightness is 50?MPa, and the processing technology for waste gas of blowout hookup is applied to 143 well times testing operation with zero leakage and zero pollution. In conclusion, these performance monitoring technologies have been playing an important role in scientifically formulating the production and reserves increase measures and ensuring long-term stable production of the Puguang gas field.
机译:普光气田缺乏超深,高硫含量的性能监测技术和相关标准,规范。本文通过对国内外高硫气田的研究,结合设备开发,实验室实验,理论研究和现场试验,开发了五项动态监测关键技术,制定了相关的标准和规范。这五项关键技术包括天然气生产剖面测井,井下采样和流体相分析,动态水入侵预测和产水层位识别,气井产能测试和评估以及高硫超深井的开发监控和安全控制。然后,将这些关键技术应用于普光气田的验证。并获得了以下研究结果。首先,耐硫气体生产剖面测井仪的耐温性为175?C,耐压为105?MPa。进行了43口井时间的天然气生产曲线测井,成功率为100%。第二,高硫井下压力取样器的耐温性为150℃,耐压性为70MPa。进行了7口井次井下压力采样,成功率为100%。第三,当地层压力降至29.5?MPa时,元素硫会在地层中沉淀。当气井产量高于20×××104×m3 / d时,硫不会沉积在井眼中。第四,利用产水层识别技术和动态注水预测模型,可以准确识别出产水层,并预测气井的突水时间。通过优化和调整气井的工作系统,可以控制水的涌入速度,延长气井的无水生产时间。第五,利用“井下仪表,电缆输送和井口流量可变率”测试技术,压力计算模型和试井解释模型以及气井产能评价结果,实现气井产能测试的全覆盖。是准确的。第六,超高压气密性电缆多级泄漏控制系统的动态气密压力为50?MPa,井喷连接废气处理技术应用于143井次零泄漏试井作业零污染综上所述,这些性能监测技术在科学制定增产措施和储量增加措施,确保普光气田长期稳定生产中发挥了重要作用。

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