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Integrated fracability assessment methodology for unconventional naturally fractured reservoirs: Bridging the gap between geophysics and production

机译:非常规天然裂缝性储层的易碎性综合评估方法:弥合地球物理与生产之间的差距

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Fracability evaluation in unconventional reservoirs is one of the most important initiatives for economic success. Most evaluation methods in geophysics and well logging are based on calculating rock mechanical properties, in which a frequently used term is brittleness. However, oil and gas production, mainly determined by effective natural fracture networks in unconventional low-permeability reservoirs, is the final goal of reservoir stimulation. In this work, a novel integrated methodology was proposed to correlate conventional post-stack seismic data to well production rate. It aims to pre-evaluate regional stimulation performance, facilitating investment decision-making in line with global oil prices and environmental consideration. Structural occurrence, seismic maximum curvature, and geomechanics parameters were combined in a physical model to evaluate underlying development and activation of natural fractures, result in the activation index F-1. The potential of artificial induced fractures were quantified as normalized index F-2 by integrating mechanical item based on fracture mechanics and fluid flow. Accordingly, a fracability sweetness index (F-sweet) model was built to correlate standardized well production rate (Q(eff)). A Case study of a naturally fractured igneous reservoir with 8 wells showed agreement between Fsweet and Q(eff). A considerable part of highly active fractures with F1 of [0.9, 1] distributed over the area with lower curvature value. By contrast, the majority of fractures with lower F1 of [0.8, 0.9] located in zone with higher curvature value. The weight ratio alpha = 0.06 indicated that in this case the overwhelming production contribution were from natural fractures, which were evidenced by well core picture. The field data demonstrates the prospect for predicting regional fracability variation, and suggests that it is possible to correlate fracability index with standardized well production rate. The insights contribute to well placement optimization and stimulation treatment design, breaking limitation of engineers' influence on individual wells, and hence reducing exploitation cost while enhancing ultimate recovery. (c) 2016 Elsevier B.V. All rights reserved.
机译:非常规油藏的易碎性评估是实现经济成功的最重要举措之一。地球物理和测井中的大多数评估方法都是基于计算岩石力学特性的,其中经常使用的术语是脆性。然而,主要由非常规低渗透油藏有效的天然裂缝网络决定的油气生产是油藏增产的最终目标。在这项工作中,提出了一种新颖的综合方法,以将常规叠后地震数据与油井生产率联系起来。它的目的是预先评估区域的刺激效果,促进根据全球油价和环境因素进行的投资决策。将结构发生,地震最大曲率和地质力学参数组合到一个物理模型中,以评估天然裂缝的潜在发育和活化作用,从而得到活化指数F-1。通过基于断裂力学和流体流动的机械项积分,将人工诱发裂缝的可能性量化为归一化指数F-2。因此,建立了易碎性甜度指数(F-sweet)模型,以关联标准井产量(Q(eff))。一个有8口井的天然裂缝性火成岩储层的案例研究表明Fsweet和Q(eff)之间是一致的。 F1为[0.9,1]的高活性裂缝的相当一部分分布在曲率值较低的区域。相比之下,大多数F1较低的[0.8,0.9]裂缝位于曲率值较高的区域。 α= 0.06的重量比表明,在这种情况下,压裂产品的主要贡献来自天然裂缝,这可以通过井眼图像来证明。现场数据显示了预测区域易碎性变化的前景,并暗示有可能将易碎性指数与标准化油井生产率相关联。这些见解有助于优化井位和进行增产措施设计,打破工程师对单个井的影响的局限性,从而在提高最终采收率的同时降低开采成本。 (c)2016 Elsevier B.V.保留所有权利。

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