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首页> 外文期刊>Journal of natural gas science and engineering >Multiple fracturing parameters optimization for horizontal gas well using a novel hybrid method
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Multiple fracturing parameters optimization for horizontal gas well using a novel hybrid method

机译:新型混合方法优化水平气井多重压裂参数

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Hydraulic fracturing technique has been widely used to develop tight and low-permeability reservoirs, while it has been a great challenge to optimize the fracture parameters for horizontal wells, especially for the horizontal gas wells associated with strong heterogeneity. The traditional mathematical models only can perform well in homogeneous reservoirs. Although the reservoir numerical simulation techniques can take heterogeneity into consideration, the fitting process of parameters is time-consuming, and the simulation results may not be accurate enough due to the limitations of local grid refinement. In this study, a novel hybrid methodology combining the Dual-Porosity Volumetric Source (DPVS) model in gas reservoirs, reservoir numerical simulation technique, and Reservoir Classification (RC) method based on well-logging analysis has been proposed to optimize fracture parameters in horizontal heterogeneous gas wells. First, the RC method is used to subdivide the horizontal wellbore into several blocks which can be treated as homogeneous and heterogeneous blocks, respectively, according to their absolute permeability distribution. Then, DPVS model is applied to optimize the fracture parameters including fracture number, fracture length, and fracture conductivity for the homogeneous blocks and fracture conductivity for the heterogeneous blocks. The reservoir simulation technique is applied to optimize the fracture number and fracture length for the heterogeneous blocks. Besides, the reservoir simulation technique is used to investigate the influence of reservoir heterogeneity including permeability distribution pattern and proportion of permeability value on the fracture optimization results. It has been found, that the permeability distribution pattern along the wellbore has a minor influence on the fracture parameter optimization results, but the proportion of permeability value plays a significant role in the fracture parameter optimization. This novel technique has a higher accuracy and is particularly suitable for fracture parameter optimization of multistage fracturing technique in heterogeneous tight gas reservoirs. (C) 2016 Elsevier B.V. All rights reserved.
机译:水力压裂技术已被广泛用于开发致密低渗油藏,而优化水平井尤其是与非均质性相关的水平气井的压裂参数却面临着巨大的挑战。传统的数学模型只能在均质油藏中表现良好。尽管油藏数值模拟技术可以考虑非均质性,但是参数的拟合过程很耗时,并且由于局部网格细化的限制,模拟结果可能不够准确。在这项研究中,提出了一种新颖的混合方法,该方法结合了气藏中的双孔隙体积源(DPVS)模型,储层数值模拟技术和基于测井分析的储层分类(RC)方法,以优化水平裂缝参数。非均质气井。首先,使用RC方法将水平井眼细分为几个区块,根据其绝对渗透率分布,可以分别将其视为均质和非均质区块。然后,采用DPVS模型优化裂缝参数,包括均质块的裂缝数,裂缝长度和裂缝导度,非均质块的裂缝导度。应用储层模拟技术优化非均质块体的裂缝数和裂缝长度。此外,利用储层模拟技术研究了储层非均质性,包括渗透率分布模式和渗透率值比例对裂缝优化结果的影响。已经发现,沿井眼的渗透率分布模式对裂缝参数优化结果的影响较小,但渗透率值的比例在裂缝参数优化中起着重要作用。该新技术具有较高的精度,特别适用于非均质致密气藏中多级压裂技术的压裂参数优化。 (C)2016 Elsevier B.V.保留所有权利。

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