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LABORATORY STUDY OF THE BEHAVIOR OF CONVENTIONAL INTERMITTENT GAS-LIFT

机译:常规间歇性气举行为的实验室研究

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The intermittent gas-lift (IGL) methods still remain a practical recourse for the extended production of petroleum wells in the on-shore fields of Brazil. The IGLs are a natural candidate to substitute the continuous gas-lift (CGL) method at a late stage of reservoir depletion; as so the IGLs require modest adaptation to the OGL installation. The IGLs also display operational and economical characteristics that make it a viable artificial lift method for many low producing wells. In such cases, it becomes advantageous to properly design the system and to optimize it. A laboratory apparatus was designed and built to study the operation of the conventional IGL, such as the concurrency of cycle stages, as presented by Carvalho (2004), the fallback for different operating conditions and the stability of cycles due to motor valve timing and adjustment of the gas-lift valve. The results of the tests performed by changing the operating variables of the IGL are presented here. These tests results show the types of dynamical behavior predicted by numerical simulations; therefore they will be useful in tuning the simulation models that will be applied to the large scale systems of petroleum fields.
机译:间歇式气举(IGL)方法仍然是巴西陆上油田扩展生产油井的实用手段。 IGL是在储层枯竭后期替代连续气举法(CGL)的自然选择。因此,IGL需要适度地适应OGL安装。 IGL还显示出操作和经济特性,这使其成为许多低产井的可行的人工举升方法。在这种情况下,适当地设计系统并对其进行优化将变得很有利。设计并建造了一个实验室设备来研究常规IGL的操作,例如Carvalho(2004)提出的循环阶段的并发性,不同操作条件的回退以及由于电动阀正时和调整引起的循环稳定性。气举阀的位置。此处介绍了通过更改IGL的操作变量执行的测试结果。这些测试结果表明了通过数值模拟预测的动力学行为的类型。因此,它们对于调整将应用于大型油田系统的仿真模型非常有用。

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