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Development dynamic monitoring technologies used in the Puguang high-sulfur gas field
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作者 Zeng Daqian Peng Xinling +3 位作者 fu dekui Hu Jie Wu Xiaolei Zhang Junfa 《Natural Gas Industry B》 2019年第3期191-197,共7页
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 monito... 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 tem-perature resistance of 175℃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℃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 20×10^(4)m^(3)/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. 展开更多
关键词 Puguang gas field Ultra deep High sulfur content Development performance monitoring Gas production profile Phase state characteristics Water influx prediction Deliverability test Leakage prevention
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普光高含硫气田开发动态监测技术 被引量:19
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作者 曾大乾 彭鑫岭 +3 位作者 付德奎 胡杰 吴晓磊 张俊法 《天然气工业》 EI CAS CSCD 北大核心 2018年第10期63-69,共7页
为了解决普光超深高含硫气田动态监测技术系列和相关标准规范缺乏的难题,基于对国内外高含硫气田的调研,通过设备研制、室内实验、理论研究和现场试验形成了超深高含硫气井产气剖面测井、井下取样及流体相态特征分析、水侵动态预测及产... 为了解决普光超深高含硫气田动态监测技术系列和相关标准规范缺乏的难题,基于对国内外高含硫气田的调研,通过设备研制、室内实验、理论研究和现场试验形成了超深高含硫气井产气剖面测井、井下取样及流体相态特征分析、水侵动态预测及产水层位识别、气井产能测试及评价、开发监测安全控制等5项动态监测关键技术,并制订了相关规范标准,进而在该气田进行了应用验证。结果表明:(1)所研制的高抗硫产气剖面测井仪器耐温175℃、耐压105 MPa,产气剖面测井43井次,成功率达100%;(2)所研制的高抗硫井下保压取样器耐温150℃、耐压70 MPa,井下保压取样7井次,成功率达100%;(3)地层压力下降至29.5 MPa时地层中有单质硫析出,气井产气量高于20×10~4m^3/d时井筒中不会产生硫沉积;(4)应用产水层位识别技术和水侵动态预测模型可准确识别产水层位和预测气井出水时间,通过优化、调整气井工作制度以控制水侵速度,延长气井的无水采气期;(5)应用"井下永置式压力计+绳缆输送+井口变流量"测试技术和压力计算模型、试井解释模型实现了气井产能测试全覆盖,气井产能评价结果准确;(6)所设计的绳缆式超高压气密封多级防泄漏控制系统动态气密封压力达50 MPa,研发的防喷装置余气处置工艺实现了143井次测试作业"零泄漏、零污染"。结论认为,上述动态监测技术系列为普光气田科学制订增产增储措施、确保长期稳产发挥了重要作用。 展开更多
关键词 普光气田 超深 高含硫 开发动态监测 产气剖面 相态特征 水侵预测 产能测试 防泄漏
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普光高含H_(2)S气田硫沉积规律及其对开发的影响 被引量:12
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作者 彭鑫岭 蒋光迹 +6 位作者 彭松 彭雪葳 付德奎 陈建 李涛 徐剑明 肖盈 《断块油气田》 CAS CSCD 北大核心 2022年第4期455-462,共8页
普光气田属于高含H_(2)S气田,天然气中含有一定量的单质硫(简称硫,下同)。在开发过程中,随着压力和温度的持续下降,天然气中的硫将会达到过饱和,并从气相中析出。目前,普光气田地面集输流程和井筒已经出现硫沉积与堵塞,在探测和治理方... 普光气田属于高含H_(2)S气田,天然气中含有一定量的单质硫(简称硫,下同)。在开发过程中,随着压力和温度的持续下降,天然气中的硫将会达到过饱和,并从气相中析出。目前,普光气田地面集输流程和井筒已经出现硫沉积与堵塞,在探测和治理方面形成了较成熟的经验做法。但随着地层压力的下降,将会在储层孔喉中形成硫沉积并降低渗流能力,导致气井产能降低,甚至停喷。储层中的硫沉积治理将是气田开发工作面临的又一大难题。文中基于井下PVT取样,首先,开展天然气中硫质量浓度及PVT相态特征室内实验研究,测定了地层条件下天然气中硫初始质量浓度,建立了适用于普光高含硫气田的硫溶解度预测模型,明确了不同压力和温度条件下硫析出状态及析出量;然后,开展硫沉积对岩心渗透率伤害室内实验,理清了硫沉积对储层渗透率的伤害规律;最后,建立了硫析出和沉积预测模型,初步认清硫在井筒周围储层径向沉积规律及对气井产能的影响。研究成果将指导普光气田储层硫沉积治理工作,为高含H_(2)S气田高效开发提供理论支持。 展开更多
关键词 H_(2)S 储层 硫沉积 开发 普光气田
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川东北普光地区下三叠统飞仙关组岩溶段的地质意义 被引量:2
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作者 梁欣阳 付德奎 +3 位作者 张宁 高秋灵 张雄华 陈建 《地质科技通报》 CAS CSCD 北大核心 2022年第5期386-394,共9页
川东北地区飞仙关组发育碳酸盐岩储层,是普光气田天然气的主要产出层位。在飞仙关组四段的划分中,前人研究对飞一段与飞二段间是否存在不整合面这一问题有较大争议。对普光地区现有的4口钻井开展了岩心观察,在飞一-飞二段中部发现了岩... 川东北地区飞仙关组发育碳酸盐岩储层,是普光气田天然气的主要产出层位。在飞仙关组四段的划分中,前人研究对飞一段与飞二段间是否存在不整合面这一问题有较大争议。对普光地区现有的4口钻井开展了岩心观察,在飞一-飞二段中部发现了岩溶角砾段,且在该段上下发现了一定的岩性分界面。飞一段底部为细晶白云岩,而飞一段顶部至飞二段开始发育鲕粒及模铸孔。采取PG104-1井岩心样品并进行了碳氧同位素测试,其碳同位素值普遍正偏,而氧同位素值均大于-5‰,指示相关流体为大气淡水流体,说明岩溶角砾段底部经历了一定时间的暴露,沉积间断发育。综合界面上下出现的碳氧同位素差异,模铸孔的出现及消失以及测井曲线的变化等因素,认为飞一段与飞二段的界限可以由因准同生岩溶而发育的岩溶角砾段划分并表征。 展开更多
关键词 飞仙关组 古岩溶 碳同位素 氧同位素 普光地区
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