首页> 外文会议>Workshop on Geothermal Reservoir Engineering >CHEMICAL STIMULATION OPERATIONS FOR RESERVOIR DEVELOPMENT OF THE DEEP CRYSTALLINE HDR/EGS SYSTEM AT SOULTZ-SOUS-FORETS (FRANCE)
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CHEMICAL STIMULATION OPERATIONS FOR RESERVOIR DEVELOPMENT OF THE DEEP CRYSTALLINE HDR/EGS SYSTEM AT SOULTZ-SOUS-FORETS (FRANCE)

机译:Soultz-Sous-Forets(法国)深层晶体HDR / EGS系统水库开发的化学刺激操作

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The main objective of the European HDR/EGS-project at Soultz is the installation of a geothermal pilot plant for power production by the end of 2008. After drilling of the three 5000 m deep wells to form a triplet with two producers (GPK2 and GPK3) and a central injector (GPK3), the wells were hydraulically stimulated through massive water injection. In addition to hydraulic stimulation, a series of chemical stimulation operations were undertaken to achieve increasing the performance of the wells and the near-wellbore permeability of the geothermal reservoir. Several acid systems such as hydrochloric acid (HCl), Regular Mud Acid (HCl-HF) and Organic Clay Acid (C_(6)H_(8)O_(7)-HF-HBF_(4)-NH_(4)Cl) were injected to dissolve minerals deposits in the wellbore as well as filling materials of fractures in the vicinity of the wells. Also a high-pH chelating agent (NTA) was tested as alternative to the more usual acid treatments. Whereas acid treatments have resulted in a productivity improvement of the production wells (GPK2 and GPK4) up to 50percent, almost no amelioration was obtained in the injection well GPK3. The use of chelating agents resulted in some productivity deterioration of GPK4. The results of stimulation experiments were evaluated using short-term hydraulic tests, conventional pressure transient analysis, interference pressure data, microseismic monitoring, temperature and flow logs. This combination of evaluation techniques helped in getting insight into the origin of the productivity enhancement.
机译:Soultz欧洲HDR / EGS-Project的主要目标是在2008年底安装电力生产的地热试验工厂。钻取三个5000米深井以形成三重药物,用两种生产者(GPK2和GPK3 )和中央喷射器(GPK3),通过大量的注水液压刺激。除了液压刺激之外,还采取了一系列化学刺激作业,以实现井的性能以及地热储层的近井眼渗透性。几种酸性系统,如盐酸(HCl),常规泥酸(HCl-HF)和有机粘土(C_(6)H_(8)O_(7)-HF-HBF_(4)-NH_(4)CL))注射以溶解矿物质沉积物在井筒中以及井中的骨折材料填充材料。还测试了一种高pH螯合剂(NTA)作为更常规的酸处理的替代物。虽然酸性处理导致生产井(GPK2和GPK4)的生产率提高至50平方,但在注射孔GPK3中几乎没有改善改善。使用螯合剂导致GPK4的一些生产率劣化。使用短期液压试验,常规压力瞬变分析,干扰压力数据,微震监测,温度和流量日志评估刺激实验结果。这种评估技术的组合有助于深入了解生产力增强的起源。

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