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Key technologies and practice for gas field storage facility construction of complex geological conditions in China

机译:中国复杂地质条件气田储藏设施建设的关键技术与实践

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摘要

In view of complex geological characteristics and alternating loading conditions associated with cyclic large amount of gas injection and withdrawal in underground gas storage(UGS) of China, a series of key gas storage construction technologies were established, mainly including UGS site selection and evaluation, key index design, well drilling and completion, surface engineering and operational risk warning and assessment, etc. The effect of field application was discussed and summarized. Firstly, trap dynamic sealing capacity evaluation technology for conversion of UGS from the fault depleted or partially depleted gas reservoirs. A key index design method mainly based on the effective gas storage capacity design for water flooded heterogeneous gas reservoirs was proposed. To effectively guide the engineering construction of UGS, the safe well drilling, high quality cementing and high pressure and large flow surface injection and production engineering optimization suitable for long-term alternate loading condition and ultra-deep and ultra-low temperature formation were developed. The core surface equipment like high pressure gas injection compressor can be manufactured by our own. Last, the full-system operational risk warning and assessment technology for UGS was set up. The above 5 key technologies have been utilized in site selection, development scheme design, engineering construction and annual operations of 6 UGS groups, e.g. the Hutubi UGS in Xinjiang. To date, designed main indexes are highly consistent with actural performance, the 6 UGS groups have the load capacity of over 7.5 billion cubic meters of working gas volume and all the storage facilities have been running efficiently and safely.
机译:针对我国地下储气库复杂的地质特征和周期性的大量注气与撤气相关的交替加载条件,建立了一系列关键的储气库建设技术,主要包括UGS选址与评价,关键指标设计,钻井和完井,地表工程和操作风险预警和评估等。讨论并总结了现场应用的效果。首先,采用捕集器动态密封能力评估技术,从断层贫乏或部分贫乏气藏转化为UGS。提出了一种主要基于注水非均质气藏有效储气能力设计的关键指标设计方法。为了有效指导UGS的工程建设,开发了适合长期交替加载条件和超深超低温形成的安全井钻探,高质量固井和高压大流量地表注水以及生产工程优化。诸如高压气体喷射压缩机之类的核心表面设备可以由我们自己制造。最后,建立了UGS的全系统操作风险预警和评估技术。以上5项关键技术已用于6个UGS集团的选址,开发计划设计,工程建设和年度运营,例如:新疆的呼图壁UGS。迄今为止,已设计的主要指标与实际性能高度吻合,六个UGS组的负载能力超过75亿立方米的工作气体量,所有存储设施均已有效且安全地运行。

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