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Effective Use of Laboratory Measurements on Eor Planning

机译:有效地利用实验室测量结果进行计划

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EOR design and risk mitigation often involves the use of laboratory results to further characterize frontal movement and interaction of the EOR agents within the reservoir; laboratory tests and protocols have been designed to address such uncertainties and constitute now a fundamental part of any EOR deployment. While the need for laboratory tests is recognized, specifics of the tests and uncertainty of the laboratory tests themselves are not widely known, or fully understood, which has the potential of inadequate usage of the laboratory results on the EOR performance estimations. This paper aims to provide guidance on use of the laboratory results in numerical models by identifying and pairing specific laboratory measurements to numerical requirements; that is recognizing what parameters are directly measured and which are estimated indirectly from either laboratory and field measurements. This paper addresses the requirements for chemical, miscible and WAG processes; and highlights the caveats of translation of the measurements onto numerical models as well as the inherent measurement uncertainties. A comprehensive numerical investigation is used to illustrate the effect and scalability of laboratory measurements for different displacement scenarios, accounting for finite-difference grid size, viscous-gravity forces, concentrations and fluid interaction. These results are used to further refine the remaining uncertainties on the displacement characterization and provide a solid start for the design of any field measurements including EOR pilot operations.
机译:EOR设计和减轻风险通常涉及利用实验室结果来进一步表征储层内EOR剂的锋面运动和相互作用。实验室测试和协议旨在解决此类不确定性,现在已成为任何EOR部署的基本组成部分。尽管已经认识到需要进行实验室测试,但是测试的细节和实验室测试本身的不确定性尚未广为人知或充分理解,这有可能在EOR性能评估中未充分使用实验室结果。本文旨在通过识别特定的实验室测量值并将其与数字要求配对,为在数字模型中使用实验室结果提供指导。可以识别直接测量哪些参数,以及从实验室和现场测量间接估算出哪些参数。本文阐述了化学,可混溶和WAG工艺的要求;并强调了将测量值转换为数值模型的注意事项以及固有的测量不确定性。进行了全面的数值研究,以说明实验室测量在不同位移情况下的效果和可扩展性,并说明了有限差分网格的大小,粘性重力,浓度和流体相互作用。这些结果可用于进一步完善位移表征方面的剩余不确定性,并为包括EOR导频操作在内的任何现场测量的设计提供坚实的开端。

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