MODELING OF DISPLACEMENT PROCESSES IN HETEROGENEOUS ANISOTROPIC GAS RESERVOIRS

M. Lubkov, O. Zaharchuk
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引用次数: 1

Abstract

Nowadays there are important problems of increasing efficiency of development and exploitation of gas deposits. There are problems associated with the growth of gas production in heterogeneous anisotropic reservoirs, increasing gas recovery, achieving economic efficiency and so on. In this situation, there are popular methods of computer modeling of gas productive reservoirs, because they allow getting information of the structure and characteristics of the gas reservoir, the distribution parameters of permeability and other important factors in it. They also allow evaluating and calculating uncertainty arising from the lack of information about the gas reservoir properties outside the well. Currently there are many methods of computer modeling, allowing solving various practical problems. From another hand there are some problems related to the accuracy and adequacy of simulation of heterogeneous anisotropic permeable collector systems in real conditions of gas deposits exploitation. On the base of combined finite-element-difference method for solving the nonstationary anisotropic piezoconductivity Lebenson problem, with calculating of heterogeneous distribution of permeable characteristics of the gas reservoir, we carried out modeling of filtration processes between production and injection wells. The results of computer modeling show that intensity of the filtration process between production and injection wells depends essentially on their location both in a shifting-isotropic and anisotropic gas reservoir. Therefore, for the effective using of poorly permeable shifting-isotropic gas-bearing reservoirs, it is necessary to place production and injection wells along the main anisotropy axes of the gas-bearing layers. At the placing production and injection well systems in low-permeable anisotropic reservoirs of a gas field, the most effective exchange between them will take place when the direction of increased permeability of the reservoirs coincides with the direction of the location of the wells. Obviously, the best conditions for gas production processes in any practical case can be achieved due to optimal selection of all anisotropic filtration parameters of the gas reservoir. One can use obtained results for practical geophysical works with a purpose optimizing of gas production activity in low-permeable heterogeneous anisotropic reservoirs. Presented method for more detailed investigation of low-permeable heterogeneous anisotropic gas-bearing deposits can be used.
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非均质各向异性气藏驱替过程建模
目前,提高气藏开发利用效率是一个重要的问题。非均质各向异性储层的产气量增长、提高采收率、实现经济效益等方面存在问题。在这种情况下,产气层的计算机建模方法得到了广泛的应用,因为这些方法可以获得气藏的结构特征、渗透率分布参数等重要因素的信息。它们还可以评估和计算由于缺乏有关井外气藏性质的信息而产生的不确定性。目前有许多计算机建模的方法,可以解决各种实际问题。另一方面,在实际开采条件下,非均质各向异性渗透集热器系统模拟的准确性和充分性也存在一些问题。在求解非平稳各向异性压电性Lebenson问题的有限元-差分联合方法的基础上,通过计算气藏渗透率特征的非均质分布,对采注井间的过滤过程进行了建模。计算机模拟结果表明,生产井和注水井之间的过滤强度主要取决于它们在移动各向同性和各向异性气藏中的位置。因此,为了有效利用低渗透移向各向同性含气层,有必要沿含气层的各向异性主轴线布置生产和注气井。在气田低渗透各向异性储层的注采井系统中,当储层渗透率增加的方向与井的位置方向一致时,两者之间的交换最有效。显然,气藏各向异性过滤参数的最优选择可以在任何实际情况下获得最佳产气条件。人们可以将所得结果用于实际的地球物理工作,以优化低渗透非均质各向异性油藏的产气活动。该方法可用于对低渗透非均质各向异性含气矿床进行更详细的研究。
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