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Rod-shaped Proppant Provides Superior Proppant Flowback Control in the Egyptian Eastern Desert

机译:杆状支撑剂在埃及东部沙漠提供了优越的支撑剂回流控制

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The Arta field in the Egyptian eastern desert produces mainly from the Nukhul formation that is characterized as a complex, thin-bedded sequence with heterogeneous laminated siltstone. Typical reservoirs show low-to-average permeability, low temperatures and moderately heavy oil in the 17-24 degree API range. Hydraulic fracturing is the technique traditionally employed to produce hydrocarbons from these marginal reservoirs. However, proppant flowback following the fracturing treatment is a major concern because of the relatively low formation stresses and high viscosity fluids, that results in damaged completions and impaired proppant pack permeability. Proppant flowback control therefore, became an essential requirement to maintain economical production rates from the field. The rod-shaped proppant product was introduced in the Egyptian western desert in 2009. Published results illustrated excellent proppant flowback control as demonstrated by zero proppant flowback.1 Prior to this, several conventional proppant flowback techniques and products had been tested but they had limited application due to low reservoir temperatures. The rod-shaped proppants are inert and have no limitations on application from the reservoir or pumping equipment standpoint. Since introduction, more than 100 wells have been hydraulically fractured using this rod- shaped proppant product. This paper describes the application of the rod-shaped proppant in the Arta field to control proppant flowback and enhance near-wellbore conductivity. The details of the evolution of rod-shaped proppant applications are presented for more than 20 wells in the Arta field, including the effects on the fractured well performance and production, as well as proppant flowback control. Results continue to demonstrate excellent proppant flowback control. In addition, cost savings result from reduced workovers, rig time savings and reduced damage to completion equipment and surface facilities.
机译:埃及东部沙漠中的阿尔塔油田主要产自努克胡尔组,其特征为复杂的薄层层序,含非均质层状粉砂岩。典型的储层在17-24°API范围内表现出低至平均渗透率、低温和中等稠油。水力压裂是从这些边缘储层中生产碳氢化合物的传统技术。然而,压裂处理后的支撑剂返排是一个主要问题,因为相对较低的地层应力和高粘度流体会导致完井受损和支撑剂充填渗透率受损。因此,支撑剂返排控制成为维持油田经济产量的基本要求。杆状支撑剂产品于2009年在埃及西部沙漠引入。公布的结果表明,支撑剂回流控制效果良好,如零支撑剂回流所示。1在此之前,已经测试了几种常规支撑剂返排技术和产品,但由于储层温度较低,它们的应用受到限制。杆状支撑剂是惰性的,从储层或泵送设备的角度来看,其应用没有限制。自引进以来,已有100多口井使用这种杆状支撑剂产品进行水力压裂。本文介绍了杆式支撑剂在阿尔塔油田的应用,以控制支撑剂返排,提高近井导流能力。详细介绍了阿尔塔油田20多口井的杆状支撑剂应用的发展,包括对压裂井性能和产量的影响,以及支撑剂回流控制。结果继续证明支撑剂回流控制良好。此外,通过减少修井、节省钻机时间以及减少对完井设备和地面设施的损坏,可以节省成本。

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