以Ozen油田为例,研究了河道砂岩井距密度的优化问题

A. Sveshnikov, A. K. Kasenov, A. Zholdybayeva, A. Ibrayev
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摘要

哈萨克斯坦的大部分油田都是成熟油田。然而,这些油田仍在钻井(JSC NC KazMunayGas每年约有500口井)。钻井在油田形成了一定的井距密度。本文研究了井距密度对河道砂岩采收率的影响。井距密度(WSD)对采收率(ORF)的影响是石油产量预测中研究和争论最多的问题之一。在研究现有的科学研究成果的过程中,我们认识到井距密度与采收率之间并没有统一的函数关系。如今,在开发油田时,在水动力建模的基础上,考虑到地质结构的各个方面,寻找新的方法来选择最佳的水位差是很有意义的。本文以Ozen油田13层为例,分两阶段对河道砂岩的最优WSD进行了验证。在建模过程中,我们分析了油田开发的现状,并确定了具有高值的WSD。然后确定了高含水(无利可图)井的清单,并建议关闭。根据模拟,通过关闭高含水井,降低井距密度,优化剩余库存的产液,可以保持基本的产油量水平。
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Optimal well spacing density in channel sandstones in the case of Ozen field
Most of Kazakhstans oil fields are mature ones. However, wells are still drilled in these fields (annually ~ 500 wells in JSC NC KazMunayGas). Well drilling forms a certain well spacing density at the fields. This article is concerned with the influence of well spacing density on the oil recovery factor in channel sandstones. The problem of how well spacing density (WSD) influences oil recovery factor (ORF) is one of the most studied and debated in forecasting oil production levels. In the course of studying existing scientific works on this topic, we understood that there is no uniform function of well spacing density and oil recovery factor. Today, when developing a field, it is relevant to search for new approaches to choose the optimal WSD taking into account all aspects of the geological structure based on hydrodynamic modeling. This article provides verification for the optimal WSD in channel sandstones choosing as an example sector model of horizon 13 of the Ozen field in two stages. During modeling we analyzed the current conditions of field development, and identified WSD with high values. Then a list of highly watered (unprofitable) wells was identified and recommended for shutdown. According to simulation, it is possible to maintain the base level of oil production by shutting off high water cut wells thereby decreasing well spacing density and optimizing fluid production on the remaining stock.
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