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A New Approach of Applying Analytical Inflow Model for Horizontal Well Performance of Non-Fully Penetrated Wells

机译:一种应用分析流入模型的非完全穿透井水平井性能的新方法

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Horizontal wells and multilateral wells have been applied in conventional and unconventional resource to improve recovery of hydrocarbon by increasing the contact of wellbores with reservoirs. In order to estimate production rate, many analytical models have been developed in the past years. One of the commonly used models is the Babu and Odeh's model which introduces a concept of partial penetration skin factor to transfer an analytical model for vertical wells to horizontal well mode. The partial penetration skin, SR, which accounts for the deviation of production for a partially-penetrated well in a reservoir (more likely in horizontal well scenarios) from a fully-penetrated well, is estimated by a correlation based on the reservoir simulation results. The correlation is one of the key elements in the Babu and Odeh's model, and it made the model flexible and convenient to use. The limit of the correlation is that the error of the calculation is increasing as the ratio of wellbore length to reservoir dimension decreases. Meanwhile, to consider the influence of permeability heterogeneity and wellbore pressure drop on well performance in these models, a segment approach is also commonly used for a horizontal well which divides the entire wellbore into smaller piece while calculating the pressure and flow relationship. When a well is segmented, the segmented well length is most likely lower than the limit of the partial penetration skin correlation applies. This raises a question of how the partial penetration skin should be distributed for different segments. The conventional method is to only apply the SR to the toe and heel segments when segment a wellbore, since the centered segments are considered fully- penetrated. This sometimes results in unreasonably low flow rate in these two segments compared to the segments in the middle. The toe and the heel segments should have high flow rate because of the larger drainage area contacted at these segments compared with the center segments in partial-penetrated wells. A new approach to distribute the partial penetration skin is needed to solve this problem. In this work, we discuss several approaches to reasonably distribute the total partial penetration skin over different segments. A new approaches is proposed to take into account of the effect of contact area, location of segments, as well as the drainage area on inflow performance. The result shows a more reasonable flow rate distribution for different segments of the new approach when compared with reservoir simulation results. This modification to the conventional approach for the segmented horizontal inflow model makes the analytical model more reasonable and applicable. Examples in the paper illustrate how to use the new approach to estimate horizontal well inflow performance.
机译:横向井和多边井已经应用于常规和非传统的资源,以通过增加井筒与储层的接触来改善烃的回收。为了估算生产率,过去几年已经开发了许多分析模型。其中一个常用的模型是Babu和Odeh的模型,它介绍了部分穿透性皮肤因子的概念,以转移垂直井的分析模型到水平井模式。的部分穿透皮肤,SR,它从一个完全穿透井占生产用于在储存器的局部穿透孔的偏差(更可能在水平井的场景),由基于该储层模拟结果的相关性来估计。相关性是BABU和ODEH模型中的关键元素之一,它使模型灵活,使用方便。相关性的限制是计算的误差随着井筒长度与储存器尺寸的比率而增加。同时,为了考虑渗透性异质性和井眼压降在这些模型中的井中性能的影响,段方法也通常用于水平阱,其在计算压力和流动关系的同时将整个井筒分成较小的件。当井被分割时,分段阱长度最可能低于部分穿透性皮肤相关的限制。这提出了如何为不同的段分配部分穿透皮肤的问题。传统方法是在井网时仅将Sr施加到脚趾和脚跟区段,因为居中的段被认为是完全穿透的。与中间的段相比,这有时会导致这两个段中的不合时理的低流速。脚趾和鞋跟段应具有高流速,因为与部分穿透井中的中心区段相比,在这些段中接触的较大的排水区域。需要一种分布部分穿透皮肤的新方法来解决这个问题。在这项工作中,我们讨论了几种方法,以合理地分配不同段的总部分渗透皮肤。提出了一种新方法,考虑到接触面积,段位置以及流入性能的排水区域的影响。结果显示了与储层模拟结果相比的新方法的不同段更合理的流量分布。这种对分段水平流入模型的传统方法的这种修改使分析模型更合理和适用。本文中的示例说明了如何利用新方法来估计水平井流入性能。

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