Review of Embedded Discrete Fracture Models: Concepts, Simulation and Pros & Cons

Rostami S
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Abstract

The oil and gas industry faces significant challenges when simulating fractured reservoirs. With the rising cost of hydrocarbons, there is a growing interest in exploiting unconventional reservoirs using hydraulic fracturing technologies. However, unconventional reservoirs typically contain fractured systems at various scales, ranging from nano to kilometer, making it difficult to simulate and predict these reservoirs accurately. Therefore, a rapid and precise method is crucial for this purpose. This paper presents a comprehensive review of the Embedded Discrete Fracture Model (EDFM), a novel approach designed for this purpose. This work begins by reviewing and comparing common methods for simulating naturally and hydraulically fractured reservoirs with EDFM, considering each method's advantages and disadvantages. The concept and formulation of EDFM are then discussed, focusing on adding mass balance equations and making them compatible with reservoir simulators. Additionally, this paper considers the concept and application of non-neighboring connections, which are crucial in simulating fractured reservoirs using EDFM models. This work also highlights the importance of considering changes in the EDFM formulation and simulation when fractures are treated as dynamic systems; failure to do so can lead to significant errors that deviate from actual results. Finally, the disadvantages of EDFM and proposed solutions for enhancing this method are discussed.
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嵌入式离散裂缝模型综述:概念、模拟与优缺点
油气行业在模拟裂缝性储层时面临着重大挑战。随着油气成本的不断上升,人们对利用水力压裂技术开发非常规油藏的兴趣日益浓厚。然而,非常规储层通常包含不同规模的裂缝系统,从纳米到千米不等,这使得很难准确模拟和预测这些储层。因此,一种快速而精确的方法对这一目的至关重要。本文全面回顾了嵌入式离散裂缝模型(EDFM),这是一种为此目的而设计的新方法。本工作首先回顾和比较了常用的EDFM模拟自然裂缝和水力裂缝油藏的方法,并考虑了每种方法的优缺点。然后讨论了EDFM的概念和公式,重点是添加质量平衡方程并使其与油藏模拟器兼容。此外,本文还考虑了非相邻连接的概念和应用,这对于使用EDFM模型模拟裂缝性储层至关重要。这项工作还强调了当裂缝被视为动态系统时,考虑EDFM配方和模拟变化的重要性;如果不这样做,可能会导致偏离实际结果的重大错误。最后,讨论了EDFM的缺点,并提出了改进方法。
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