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Implementing a Field Pilot Project for Selective Polymer Injection in Different Reservoirs

机译:实施用于不同储层中选择性聚合物注射的现场试验项目

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Polymer-flood projects with selective polymer injection in different reservoirs within the same injector well has never been a simple task, but it can be achieved. This work explains how. During secondary recovery in several reservoirs (contacted by vertical wells), selective installation at injector wells enables vertical distribution wherever convenient (i.e: reservoirs with a high oil saturation, lower injected poral volumes); such distribution in Polymer-flood projects was not possible since some reservoirs were not completely or effectively swept. A new deep well selective injection system has been developed to be used in multiple reservoirs while preserving viscosity of the polymer solution without mechanical degradation. Thus, injection is increased in those reservoirs with hydrocarbon potential with a low admission of polymer or no admission at all. This device is installed in the well bottom (patent still pending) and has side-pocket mandrels with valves operated by the conventional Slick Line rig. Through the different positions of these valves, the desired flow in each reservoir can be achieved. We are going to introduce the work developed in lab and field pilot in order to prove this development is technically feasible. Different tests have been performed in test benches designed to that purpose, the equipment was manufactured and this new tool was installed in some injector wells. The tool was installed in two polymer injector wells. Reservoirs tests had been previously performed to evaluate injectivity, mainly to dismiss problems (high pressure, skin factor or lack of continuity in the reservoirs). Afterwards, valve combination to achieve target injection rate in each reservoir was defined. This pilot experience was held with a service company in the polymer project located in the Diadema field in the San Jorge Gulf Basin Argentina. The field is operated by CAPSA, an Argentine oil operator with 480 producers and 270 injector wells The reservoir flooded with polymer is characterized by high permeability (500 md average), high heterogeneity (10 to 5000 md), high porosity (30%), very layered sand layers (4 to 12 m net thickness), poorlateral continuity (fluvial origin) and oil of 20° API (100 cp at reservoir conditions). The permeability and reservoir pressure in the reservoirs led us to develop a system with a selective admission and no polymer degradation.
机译:在同一喷射器内的不同储层中具有选择性聚合物注射的聚合物 - 洪水项目从未如此简单的任务,但它可以实现。这项工作解释了如何。在几个储存器中的二次恢复(由垂直井接触)中,在喷射器井上的选择性安装能够在方便的情况下实现垂直分布(即:具有高油饱和度的储层,较低的喷射孔隙量);由于一些水库没有完全或有效地扫除,因此在聚合物洪水项目中的这种分布是不可能的。已经开发出一种新的深井选择性注射系统,用于多个贮存器,同时保留聚合物溶液的粘度而不是机械降解。因此,在那些具有碳氢化合物潜力的储层中增加注射,其含有低的聚合物或根本没有入院。该设备安装在井底(仍有待申请)的井底(专利仍然),并具有由传统的光滑线钻机操作的阀门的侧袋心轴。通过这些阀的不同位置,可以实现每个储存器中的所需流动。我们将介绍实验室和现场飞行员在实验室开发的工作,以证明这种发展是在技术上可行的。在设计为此目的的测试台上进行了不同的测试,制造了设备,并将新工具安装在一些注射器井中。该工具安装在两个聚合物注射器孔中。以前已经进行了储层测试以评估注射性,主要是为了解雇问题(高压,皮肤因子或储层中缺乏连续性)。然后,定义了在每个储存器中实现目标注射速率的阀门组合。该试点经验是在San Jorge Gulf Barin Argentina的Diatema领域的聚合物项目中举行了一家服务公司。该领域由Capsa运营,Argentine Oil算子,带有480个生产商和270个注射器井的储层用聚合物淹没的储层的特点是高渗透性(500 md平均值),高异质性(10至5000 md),高孔隙度(30%),非常分层的砂层(4至12米净厚度),较差的连续性(河流原点)和20°API的油(储层条件下的100cp)。储存器中的渗透率和储层压力导致我们开发具有选择性入学和无聚合物降解的系统。

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