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首页> 外文期刊>International Journal of Greenhouse Gas Control >Enhancing the Supersonic Gas Separation operating envelope through process control strategies of the feed conditioning plant for offshore CO2 removal from natural gas
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Enhancing the Supersonic Gas Separation operating envelope through process control strategies of the feed conditioning plant for offshore CO2 removal from natural gas

机译:通过饲料调理厂的饲料调节策略加强超声波气体分离操作包络,用于从天然气中移除近海二氧化碳

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摘要

Centrifugal Fluid Separation technology, in particular Supersonic Gas Separation (SGS), is one of the potential technologies considered for offshore CO2 capture. SGS has advantages in terms of CAPEX, hydrocarbon losses, footprint, tonnage and power requirement compared to conventional solutions such as membrane. Even though the technology has been developed since 1989, the applications are limited to mainly dehydration and hydrocarbon dew pointing. For CO2 separation from natural gas, substantial development works are needed prior to the field application as there are a lot of uncertainties in the feed conditions to be tackled. In particular, the stringent requirements of cryogenic temperature, high pressure and inlet CO2 composition of its feed require a robust feed conditioning process plant. For a relatively new technology such as SGS for CO2 removal application, it is crucial to investigate and assess the variations of feed and process conditions i.e. temperature, pressure and gas compositions prior to being applied at actual field, as these will impact the CO2 separation performance inside the separator. Hence, this paper investigates the control strategies for the SGS feed conditioning plant subjected to +/- 15 % disturbances in temperature and pressure, and +/- 5 mol% variations in feed CO2 composition. Results show that effective disturbances elimination in the first flash separator of the feed conditioning plant is crucial in minimizing the impact to the SGS operation. A comparative study reveals that standard PID controller performs significantly better in disturbance rejection than Model Predictive Control.
机译:离心流体分离技术,特别是超音速分离(SGS),是用于海上CO2捕获的潜在技术之一。与诸如膜等常规溶液相比,SGS在CAPEX,烃损失,占用件,吨位和功率要求方面具有优势。尽管自1989年以来已经开发了该技术,但该应用仅限于主要是脱水和碳氢化合物露点。对于来自天然气的二氧化碳分离,在现场应用之前需要大量的开发工程,因为在饲料条件下存在很多不确定性。特别是,其饲料的低温温度,高压和入口CO2组合物的严格要求需要稳健的饲料调理过程植物。对于相对较新的技术,例如SGS用于CO 2去除申请,对饲料和工艺条件的变化是至关重要的,即在实际施加之前的温度,压力和气体组合物,因为它们会影响CO2分离性能在分隔符内。因此,本文研究了在温度和压力下对+/- 15%干扰进行+/- 15%干扰的SGS饲料调理植物的控制策略,+/- 5mol%的饲料CO2组合物变化。结果表明,饲料调理厂的第一闪光分离器中的有效干扰消除在最小化对SGS操作的影响方面是至关重要的。比较研究表明,标准PID控制器在扰动抑制方面比模型预测控制更好地执行更好。

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