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Advanced Fracture Diagnostics by Utilizing Over 250 Fracture Diagnostic Tests in Indian Volcanic Tight Gas Reservoir

机译:通过在印度火山紧的燃气藏中使用超过250个骨折诊断测试,先进的骨折诊断

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This paper documents the basis of fracturing diagnostic test design and analysis methodology adopted while fracturing one of the few commercial volcanic gas reservoir in the world.More than 10 distinct types of diagnostic tests were performed with each having specific objective.These tests were primarily conducted to: 1.Reduce the uncertainty while fracturing 2.Improve reservoir & hydraulic fracture understanding to enhance production 3.Validate qualitative sources of information These tests included standard pre-frac injection tests,post injection surveys as well as innovative modifications which significantly helped to enhance operational efficiency and improved production results.To achieve maximum net pay coverage with minimum number of frac stages,limited entry fracture technology best suited the economics of this field.Since limited entry technique was selected even with its inherent uncertainties with respect to diversion in individual fracture cluster,the overall performance of this field heavily depended on its effectiveness.To maximize the probability of success,uncertainties & risks were evaluated and a workflow was designed.This workflow consisted diagnostic tests with specific deliverables such as DFITs to calibrate mechanical earth model(MEM),Step rate tests to estimate the efficiency of fluid diversion,temperature surveys to validate fluid distribution,production logs to confirm production performance.These standard tests were also modified to minimize cost/time implication while ensuring specific information was acquired as expected from these tests.Fracture model calibration was achieved by a combination of injection tests,post injection test/fracturing temperature surveys,along with a consistent method for fracture history matching.Final verification was obtained using a series of production logs.Over 13 Diagnostic Fracture Injection Tests(DFITS),63 Step Rate Tests(SRT),80 Step Down Tests,58 post SRT/Fracturing Temperature Surveys,over 50 production logs are incorporated in this study.All of this augmented reservoir understanding and helped to save operational time and reduce cost.These tests further helped to increase from 3 clusters per frac to 6 cluster per frac,thus increased net pay coverage
机译:本文介绍了压裂诊断测试设计和分析方法的基础,同时采用了世界上少数商业火山气体储层中的一个。每种具有特定目标的每种不同类型的诊断试验。这些测试主要进行:1。压裂的不确定性2.improve水库和液压骨折了解提高生产3.过度的定性信息来源这些测试包括标准的FRAC注射试验,注射后调查以及创新修改,可显着帮助加强运营效率和改进的生产结果。实现最大数量的FRAC阶段,有限的入境骨折技术最适合该领域的经济学。即使在各个骨折集群中具有固有的不确定性,也选择了有限的进入技术,整体表现该字段依赖于其有效性。要最大限度地提高成功的概率,评估了不确定性和风险,并设计了工作流程。这条工作流程组成了具有特定可交付成果的诊断测试,如DFITS校准机械地球模型(MEM),步进速率测试估计流体导流的效率,温度调查以验证流体分布,生产日志确认生产性能。这些标准测试也被修改,以最小化成本/时间暗示,同时确保从这些测试中获得的特定信息获得特定信息。实现了算法通过注射试验的组合,后注射测试/压裂温度调查以及一致的裂缝历史匹配方法。使用一系列生产原木获得了51种诊断骨折注射试验(DFITS),63步速率测试(SRT),80个步骤测试,58次SRT /压裂温度调查,超过50个产品N日志纳入本研究。这一增强的水库识别并帮助节省运营时间并降低成本。这些测试进一步帮助从每FRAC的3个集群增加到每次FRAC的6个集群,从而增加净额覆盖率

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