METHOD FOR ESTIMATING THE LENGTH OF MAN-CAUSED FRACTURE DEPENDING ON BOTTOMHOLE INJECTION PRESSURE

A. V. Syundyukov, D. K. Sagitov
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Abstract

Most of Russia's recoverable oil reserves are hard-to-recover reserves. One of the key technologies for the development of these reservoirs is the use of a reservoir pressure maintenance system. The evolution of the development of flood control methods does not stand still. Today, the issue of studying the propagation of self-induced hydraulic fracturing cracks is one of the most important challenges. Over time, as the transition to the development of zones with low permeability values and an increase in down hole pressure in injection wells, the manifestation of the self-induced hydraulic fracturing effect began to be widespread. This was confirmed not only by the dynamics of the water content of products with an increase in the pick-up of neighboring injection wells, but also by hydrodynamic studies of wells, tracer studies, adaptation of the hydrodynamic model taking into account the cracks of the self-induced hydraulic fracturing. Over time, according to the results of studies of geomechanical properties in the deposits of Western Siberia, the direction of the regionally stressed state was established, which coincides with the azimuthal direction of the development of self-induced hydraulic fracturing cracks. Modern development systems take into account the direction of the regional stress state. These systems are mainly located parallel to the cracks of the self-induced hydraulic fracturing to exclude breakthroughs from injection wells to producing wells. Estimation of the parameters of auto-fracturing fractures depending on the injectionmodes is an urgent task that requires the creation of appropriate calculation methods. Control of the waterflood modes for a group of injection wells under conditions of critical bottomhole pressures exceeding the value of the rock fracture pressure is the purpose of this work. A method for estimating the parameters of man-caused fracture from given initial parameters is proposed.
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基于井底注入压力估算人工裂缝长度的方法
俄罗斯的大部分可开采石油储量都是难以开采的储量。开发这些油藏的关键技术之一是使用储层压力维持系统。防洪方法的发展并没有停滞不前。目前,研究水力压裂自致裂缝的扩展问题是最重要的挑战之一。随着时间的推移,随着向低渗透层开发的过渡和注水井井下压力的增加,自致水力压裂效果的表现开始普遍。这一点不仅可以通过邻近注水井采油量增加时产品含水率的动态变化得到证实,还可以通过对井的水动力研究、示踪剂研究以及考虑自致水力压裂裂缝的水动力模型的调整得到证实。随着时间的推移,根据西伯利亚西部矿床地质力学性质的研究结果,确立了区域应力状态的方向,与自致水力压裂裂缝发育的方位方向一致。现代发展体系考虑了区域应力状态的走向。这些系统主要位于与自致水力压裂裂缝平行的位置,以排除从注水井到生产井的突破。根据注入模式估算自动压裂裂缝的参数是一项紧迫的任务,需要建立适当的计算方法。在临界井底压力超过岩石破裂压力值的情况下,控制一组注水井的注水模式是本工作的目的。提出了一种由给定初始参数估计人为裂缝参数的方法。
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来源期刊
CiteScore
0.80
自引率
50.00%
发文量
41
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