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New Generation Impulse Testing: An Environmentally Friendly Well Testing Solution for Tight Reservoirs to Acquire Accurate Reservoir Information

机译:新一代脉冲测试:用于粘贴准确储层信息的紧身水库的环保井测试解决方案

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Exploration, appraisal, and production well tests have always been a primary source of information for reservoir characterization, well deliverability estimation, and monitoring of field development. Well test operations are one of the most challenging operations performed at the wellsite today, especially in tight oil and gas reservoirs with limited capability or inability of the well to flow naturally and produce reservoir hydrocarbons to surface. Conventional drill stem tests (DSTs) may also not be applicable in some cases due to the high cost of operations or other constraints. Over time, environmental considerations and regulations have become stricter and one of the most significant limiting factors for conducting conventional DST operations in some geographical areas. DST operations in tight reservoirs have always been limited and deemed challenging due to complexities associated with the ability to create enough pressure drawdown, high risks associated with the inability of the well to flow to surface to unload the liquids from the wellbore, and clean-up of the well to unlock true reservoir potential. Therefore, for the last several decades, the oil industry has been trying to find the most effective ways to flow test these wells to determine essential reservoir information and minimize field development risks. Impulse testing is not a new concept and enables testing a well using a simple DST or tubing- conveyed perforating (TCP) string with no flow of hydrocarbon to surface. This method also reduces cost in comparison with conventional DST operations or other standard testing methods. Until recently, the application of this type of test has been limited, mainly by the complexity of interpreting the test data, limited functionalities of the tools, low success rate, and poor quality of acquired data. With the evolution of downhole DST tool technology and enhancements in well test design, along with the appropriate equipment selection, a new generation of low flow rate impulse tests have been engineered for success by bringing together a multidisciplinary team and emphasizing the importance of the job design. The paper describes cost-effective, practical, and proven impulse testing methods for tight oil and gas reservoirs. The proposed methods are versatile and adaptive to the operating environment and the operator's requirements. The zero-emission well testing solution is based on proven conventional well test interpretation methods and a combination of technologies, workflows, and unique equipment arrangements that make it possible to flow test the wells to determine key reservoir dynamic parameters and the productivity indices of new wells during DST or TCP operations or during workover operations if the wells are currently in production. This paper also presents several field examples from operations performed around the globe, with results of the successful pressure transient analysis of the data recorded during the tests that enabled characterizing the reservoir economically and in two cases, with no environmental impact.
机译:勘探,评估和生产井测试始终是储层特征,良好可交付能力估算和对现场开发监测的主要信息来源。测试操作是当今业务技术在营业站上进行的最具挑战性的操作之一,特别是在紧密的石油和燃气储层中,其具有有限的能力或无法自然流动并产生水库碳氢化合物。由于操作的高成本或其他限制,常规钻杆测试(DSTS)也可能不适用于某些情况下。随着时间的推移,环境考虑因素和法规已经变得更严格,在一些地理区域进行传统DST操作的最重要限制因素之一。由于与创造足够的压力降低的能力相关的复杂性,紧密水库中的DST操作一直受到限制,并且认为具有与能力相关的高风险,与流动的能力相关,以便流向表面,以从井筒卸下液体,并清理解锁真正的储层潜力的良好。因此,在过去的几十年中,石油工业一直试图找到最有效的流量测试这些井来确定基本的水库信息,并尽量减少现场发展风险。脉冲测试不是一个新的概念,并且可以使用简单的DST或管道传送的穿孔(TCP)弦来测试井,没有烃的流量。该方法还降低了与传统DST操作或其他标准测试方法相比的成本。直到最近,这种类型的试验的应用受到限制,主要是通过解释测试数据的复杂性,工具的有限功能,成功率低,收购数据质量差。随着井下DST工具技术的演变和井测试设计中的增强功能,随着适当的设备选择,通过将多学科团队联系在一起并强调工作设计的重要性,为成功设计了新一代的低流量脉冲试验。本文介绍了严格的石油和天然气藏的经济效益,实用,并证明了脉冲试验方法。所提出的方法是多功能的,适应操作环境和操作员的要求。零排放井测试解决方案是基于经过验证的常规井测试解释方法和技术,工作流和独特的设备布置的组合,使得能够对井进行测试以确定关键储层动态参数和新井的生产率指标在DST或TCP运营期间或在工作过程中,如果井当前正在生产。本文还介绍了来自全球执行的操作的几个现场示例,具有在测试期间记录的数据的成功压力瞬态分析的结果,这些数据在经济上和两种情况下,没有环境影响。

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