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State of the art for full electric driven refrigeration compressors solutions using adjustable speed drive: Which combination of technology platforms leads to the best capex opex solution up to 100 MW?

机译:最先进的全电动制冷压缩机使用可调速度驱动器解决方案:技术平台的组合导致最佳的CAPEX和OPEX解决方案最多100兆瓦?

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During the last 2 decades natural gas became a very important source of energy. Consequently liquefaction of such gas became a mandatory process to allow shipping from production fields to customers. Very large liquefaction plants have been built and much more will be built in the next 10 years. The power of such plants is continuously increasing, at the same time environmental restrictions become stricter and create a real challenge for the viability of new plants. Consequently, new approaches must be taken to overtake these challenges and in particular the driving solution for refrigeration compressors. In the last years more and more projects have required full electric drives from 15 to 100MW and different electrical solutions have been developed by various manufacturers in Europe & Asia: · LCI (Load Commutated Inverter) with double winding Synchronous motor. · VSI (Voltage Source Inverter) with standard Synchronous motor. · VSI (Voltage Source Inverter) with squirrel cage Induction motor. Each of these solutions has their Pros & Cons and must be evaluated as a complete system from the grid to the compressor. The paper will study each component and then the complete system in order to present comparison tables of the 3 solutions helping the engineers to choose the best one for their specific application.
机译:在过去的2年中,天然气成为一个非常重要的能量来源。因此,这种天然气的液化成为强制性过程,以允许将生产领域运送给客户。非常大的液化工厂已经建成,并且在未来10年内将建立得多。这种植物的力量不断增加,同时环境限制变得更严格,为新植物的可行性创造了真正的挑战。因此,必须采取新方法以超越这些挑战,特别是制冷压缩机的驱动解决方案。在过去几年中,需要从15到100MW的完整电动驱动器,并且各种机电解决方案都是由欧洲和亚洲各种制造商开发的:·LCI(负载换向逆变器),采用双绕组同步电机。 ·VSI(电压源逆变器)带标准同步电机。 ·VSI(电压源逆变器)带松鼠笼感应电机。这些解决方案中的每一个都具有其优点和缺点,必须作为从电网到压缩机的完整系统。本文将研究每个组件,然后研究完整的系统,以便呈现3个解决方案的比较表,帮助工程师为其特定应用选择最佳。

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