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Modeling and Validating Pressure Transient Effects on Inflatable Bridge Plugs during Coiled Tubing Conveyed Perforating

机译:卷绕管道输送桥管期间充气桥塞的建模与验证压力瞬态效应

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It is known that the performance of inflatable packer is susceptible to the pressure change after it is set.When setting an inflatable bridge plug and then perforating nearby,it was"conventionally"believed that inflatable plug would fail when subjected to the perforating gun-shock loads.A common practice to protect the inflatable from these shock loads is to place an additional barrier to absorb these loads. During one such instance,an offshore operator required setting an inflatable bridge plug and then stimulating the zone above it.However,after the plug was set,a contingency came up as it was not possible to open SSD of this zone.In order to stimulate this zone,perforating this zone was requested by the client.Due to the time and equipment limits,placing an additional barrier above the plug to protect it from the gun-shock loading was deemed impractical and seen as an unnecessary operational delay. In this proposed perforating operation,the risk caused by the pressure surge from perforating to the inflatable plug had to be evaluated.Risk evaluation requires the modeling of the perforating-generated pressure surge.This paper presents a methodology to simulate pressure transients reliably both in magnitude and time and evaluate the risks involved with the inflatable plug.The impact of these pressure transients on the inflatable plugs can then be analyzed during job planning. This methodology enables engineers to evaluate the job risks,mitigate these risks,and then be able to optimize the operation design. One case study will be presented in this paper.With the ability to predict the pressure surge,a decision,such as whether or not to need an additional barrier between the perforating gun and inflatable plug to absorb the pressure surge,can be made, and a successful operation of inflatable plugs with perforation can be expected.
机译:众所周知,在设置充气桥塞和附近的穿孔后,可充气封隔器的性能易受压力变化的影响。在接近孔隙时,它被认为是在经受穿孔枪冲击时充气塞会失效负载。通过这些冲击载荷保护充气的常见做法是放置额外的屏障以吸收这些载荷。在一个这样的例子中,需要设置充气桥塞,然后刺激上方的区域。然而,在塞子被设置后,如果不可能打开该区域的SSD,则会提出争夺。为了刺激该区域,穿孔该区域是由客户要求的.due到时间和设备限制,将额外的屏障放置在插头上方以保护其免受枪冲击载荷被认为是不必要的并且被视为不必要的操作延迟。在该提出的穿孔操作中,必须评估由压力浪涌引起的风险。必须评估对充气塞的跨越孔。缺陷评估需要采用穿孔产生的压力浪涌的建模。本文呈现了一种幅度可靠地模拟压力瞬变的方法然后在工作计划期间分析这些压力瞬变对充气塞上的影响。该方法使工程师能够评估作业风险,减轻这些风险,然后能够优化操作设计。本文将提出一种案例研究。可以预测压力浪涌的能力,决定,例如在穿孔枪和充气插头之间是否需要额外的屏障以吸收压力浪涌,并且可以预期具有穿孔的充气塞的成功运行。

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