首页> 外文会议>The 4th ASME/JSME Joint Fluids Engineering Conference Vol.2 Pt.B; Jul 6-10, 2003; Honolulu, Hawaii >THE STATE-OF-THE-ART OF GAS-LIQUID COMPACT SEPARATOR CONTROL TECHNOLOGY - FROM LAB TO FIELD
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THE STATE-OF-THE-ART OF GAS-LIQUID COMPACT SEPARATOR CONTROL TECHNOLOGY - FROM LAB TO FIELD

机译:气液紧凑型分离器控制技术的最新发展-从实验室到现场

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Conventional gas-liquid separators are vessel-type with simple level, and pressure control since the residence time is large. Compact gas-liquid separators, such as Gas-Liquid Cylindrical Cyclone, have emerged recently as alternatives to reduce size and increase separation efficiency for offshore and subsea applications. As compared to the vessel-type separators, compact separators, are simple, low-cost, low-weight, require little maintenance and are easy to install and operate. However, the residence time of the GLCC is very small. Consequently, it can get upset easily due to high flow variations at the inlet, for example, slugging, without the aid of fast and accurate control systems. In the past, lack of understanding of control system dynamics and design tools have prevented this technology from fast field deployment. The objective of this study is to present a review of the compact gas-liquid separator (GLCC) control technology. This includes the development of control strategies, control system design, dynamic simulation, experimental investigation and field applications. The performance of compact gas-liquid separator (GLCC) strongly depends on the liquid level and/or separating pressure. In this investigation, several control strategies have been developed for field applications of gas-liquid compact separators. Especially, an optimal control strategy was developed for handling slug flow and optimizing the system performance in terms of reduced or eliminated liquid carry-over (LCO) or gas carry-under (GCU). The developed strategies have been used for the design of several GLCC applications, currently in operation in the field. Details of these applications are also presented. This study provides the state-of-the-art of gas-liquid compact separator control technology from the lab to field.
机译:常规的气液分离器是具有简单液位的容器型,并且由于停留时间长而需要压力控制。紧凑型气液分离器,例如气液圆柱形旋风分离器,最近成为替代产品,以减小尺寸并提高海上和海底应用的分离效率。与容器型分离器相比,紧凑型分离器简单,成本低,重量轻,需要的维护少且易于安装和操作。但是,GLCC的停留时间非常短。因此,由于没有快速,准确的控制系统,由于入口处的流量变化大,例如塞子,它很容易生气。过去,由于缺乏对控制系统动力学和设计工具的了解,因此无法将该技术快速应用于现场。这项研究的目的是介绍紧凑型气液分离器(GLCC)控制技术。这包括控制策略,控制系统设计,动态仿真,实验研究和现场应用的开发。紧凑型气液分离器(GLCC)的性能在很大程度上取决于液位和/或分离压力。在这项研究中,已经为气液紧凑型分离器的现场应用开发了几种控制策略。特别是,针对减少团块流和减少或消除液体残留物(LCO)或气体残留物(GCU),开发了一种最佳控制策略来处理团状流和优化系统性能。所开发的策略已用于当前在现场运行的几种GLCC应用程序的设计。还介绍了这些应用程序的详细信息。这项研究提供了从实验室到现场的最新气液紧凑型分离器控制技术。

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