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Application of a New Class of Chemical Tracers to Measure Oil Saturation in Partitioning Interwell Tracer Tests

机译:新类化学示踪剂在分区间隔跟踪试验中测量油饱和度的应用

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This paper introduces six new oil-water partitioning tracers suitable for use in oil reservoirs to estimate remaining oil saturation in inter-well regions. The tracers were tested in a field pilot in the Total-operated Lagrave field located in the South- West of France in 2011. The tests were successful for all six tracers. Measurement of remaining oil saturation in a near well region, using a single-well chemical tracer test (SWCTT) is commonly used in the oil industry. This method exploits the time lag of back-produced ester vs. hydrolysed alcohol. Partitioning inter-well tracer tests (PITTs), which can be used to assess inter-well oil saturation, are frequently used to investigate the presence and remediation of non-aqueous phase liquids (NAPLs) in aquifers. However PITTs are rare in the oil industry, with a few notable exceptions dating back to the 1990's. Consequently, few tracers are available for such tests in oil reservoirs. In addition, several of the tracers previously used were radio-labelled, which may restrict their application in many fields. Our main objective is therefore to expand the portfolio of environmentally acceptable partitioning tracers for PITT operations, and we present results from a field pilot where we successfully tested six new PITT tracers with oil-water partitioning coefficients ranging from 1.5 to 2.9. Lagrave is a relatively small carbonate field with fast injector-producer communications, which allows for relatively low- cost field qualification of partitioning tracers. Six partitioning tracers were injected in February 2011, together with a well- known non-partitioning tracer (2-FBA). The pilot area encloses one injector and three producers. Frequent sampling (2-3 times per week) yielded concise tracer response curves well-suited for estimation of remaining oil saturation. The response curves from the partitioning tracers were compared to the non-partitioning tracer to estimate saturations. The results are also compared with other reservoir data. The class of new partitioning water tracers enables testing of oil saturation in inter-well regions and may become a vital tool to investigate the potential for enhanced oil recovery and assess the effect of EOR measures. Outside the oil industry, the new tracers should also be useful for NAPL identification and evaluation of NAPL remediation processes.
机译:本文介绍了六种新的油水分配示踪剂,适用于油藏,以估算井间区域中的剩余油饱和度。在2011年,在法国南部的总操作的LAGRAVE领域中测试了示踪剂。该测试对于所有六个示踪剂都是成功的。使用单孔化学示踪试验(SWCTT)在近孔区域中剩余油饱和度的测量通常用于石油工业中。该方法利用后产酯与水解醇的时间滞后。分配井间示踪剂测试(PITTS),其可用于评估井间的油饱和度,经常用于研究含水层中非水相液体(NaPLS)的存在和修复。然而,在石油工业中,皮特很少见,有一些值得注意的例外,可追溯到1990年代。因此,少量示踪剂可用于储油储存器中的这种测试。此外,先前使用的几个示踪剂是无线标记的,这可能限制它们在许多领域中的应用。因此,我们的主要目标是扩大与PITT操作的环保分区示踪剂的组合,我们从现场飞行员提出了结果,其中我们成功地测试了六个新的Pitt示踪剂,其中油水分配系数为1.5至2.9。 LAGRAVE是一种具有快速注射器 - 生产商通信的碳酸盐田,其允许分区示踪剂的相对低成本的现场资格。 2011年2月,六次分区示踪剂与着名的非分区示踪剂(2-FBA)一起注入了六分区示踪剂。试验区包围一个注射器和三个生产商。频繁采样(每周2-3次)产生简洁的示踪曲线曲线适合估计剩余的油饱和度。将分隔示踪剂的响应曲线与非分区示踪剂进行比较以估计饱和子。结果也与其他水库数据进行比较。新的分区水示踪剂的类使得能够在井间区域进行油饱和,并且可能成为研究增强的采油潜力的重要工具,并评估EOR措施的影响。在石油工业之外,新示踪剂也应该有助于Napl鉴定和Napl修复过程的评估。

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