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Analysis of Factors Influencing Shut in Pressure Cone in Offshore Strong Bottom Water Reservoir

机译:影响海上强底水库压力锥体的因素分析

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X oilfield is an offshore strong bottom water reservoir with water cut up to 96% at present, and liquid extraction has become one of the main ways to increase oil production. However, the current liquid production of the oilfield reaches 60,000 m ~( 3 ) /d due to the limitation of offshore platform, well trough and equipment, the oilfield is unable to continue liquid extraction. In order to maximize the oil production of the oilfield, it is necessary to study the strategy of shut in and cone pressure. Through numerical simulation, this paper analyzes the influence of different factors, such as crude oil density, viscosity, reservoir thickness, interlayer, permeability and so on, on the drop height of water cone and the effect of precipitation and oil increase after well shut in. At the same time, the weight of each factor is analyzed by combining the actual dynamic data with the fuzzy mathematics method, and the strategy of well shut in and cone pressure is formulated for the offshore strong bottom water reservoir. It provides the basis and guidance for the reasonable use of shut in pressure cone when the reservoir with strong bottom water meets the bottleneck of liquid volume.
机译:X油田是一个近海强力底部水库,目前水切割高达96%,液体提取已成为提高石油生产的主要方法之一。然而,由于海上平台,井和设备的限制,油田的目前的液体产量达到60,000米〜(3)/ d,油田无法继续液体提取。为了最大限度地提高油田的石油生产,有必要研究关闭和锥压力的策略。本文通过数值模拟分析了不同因素的影响,如原油密度,粘度,储层厚度,层间,渗透率等,在水锥的落水高度和沉淀和油增加后的效果。同时,通过将实际动态数据与模糊数学方法组合来分析每个因素的重量,并为海上强大的底部水库配制了良好的晶体和锥形压力的策略。它为合理使用在具有强大的底水的储层符合液体体积瓶颈时,为合理使用的基础和指导。

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