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Design of a Thermally-Actuated Gas Lift Safety Valve

机译:热驱动气举安全阀的设计

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摘要

Gas-lifted oil wells are susceptible to failure through malfunction of gas lift valve assemblies (GLV). One failure mode occurs when the GLV check valve fails and product passes into the well annulus, potentially reaching the wellhead. This is a growing concern as offshore wells are drilled thousands of meters below the ocean floor in extreme temperature and pressure conditions, and repair and monitoring become difficult. Currently no safeguard exists in the GLV to prevent product passage in the event of check valve failure. In this paper a design and operational procedures are proposed for a thermally-actuated positive-locking safety valve to seal the GLV in the event of check valve failure. A thermal model of the well and GLV system is developed and compared to well data to verify feasibility of a thermally-actuated safety valve. A 3× scale prototype safety valve is built and tested under simulated failure scenarios and well start-up scenarios. Realistic well temperatures in the range of 20C to 70C are used. Results demonstrate valve closure in response to simulated check valve failure and valve opening during simulated well start-up.
机译:气举油井会因气举阀组件(GLV)的故障而导致故障。当GLV止回阀发生故障并且产品进入井环带并可能到达井口时,就会出现一种故障模式。随着在极端温度和压力条件下在海床以下数千米处钻探海上油井,这越来越引起人们的关注,并且维修和监控变得困难。当前,GLV中没有安全装置,以防止止回阀故障时产品通过。在本文中,提出了一种热控正锁安全阀的设计和操作程序,以在止回阀出现故障时密封GLV。开发了油井和GLV系统的热模型,并将其与油井数据进行比较,以验证热控安全阀的可行性。在模拟故障场景和油井启动场景下构建并测试了3倍比例的原型安全阀。使用的实际井温范围为20C至70C。结果表明,在模拟油井启动过程中,由于模拟止回阀故障和阀门打开而导致阀门关闭。

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