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Dual-effect single-mixed refrigeration cycle: An innovative alternative process for energy-efficient and cost-effective natural gas liquefaction

机译:双重效应单混合制冷循环:一种创新的替代工艺,可节能且经济高效的天然气液化

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Typical liquefaction processes are considered to be energy and cost-intensive. The dual mixed refrigerant (DMR) process (with two independent refrigeration cycles for cooling and subcooling) produces liquefied natural gas (LNG) at relatively high energy efficiency. However, it exhibits a high degree of configurational complexity and high sensitivity to operational conditions, and it also incurs a large capital investment. These factors eventually reduce the overall competitiveness of the liquefaction process, particularly for offshore applications. To address these issues, an energy- and cost-efficient dual-effect single mixed refrigerant (DSMR) process is proposed herein, and it employs a single loop refrigeration cycle to generate the dual cooling and subcooling effect, separately. The DMR process and the proposed DSMR process are simulated (with same design parameters) using well-known commercial simulator Aspen Hysys v10. Then, both processes are optimized using modified coordinate descent algorithm. The specific energy consumption of DSMR is 0.284 kWh/kg-NG, which is equivalent to an energy saving of 22.89% when compared to the conventional DMR process. The exergy efficiency of DSMR is 36.62%, which is 29.67% higher than that of the classical DMR process. Furthermore, the economic feasibility of the proposed DSMR process is evaluated in terms of its total annualized cost, which is 18.52% lower than that of the DMR process. Thus, the proposed DSMR process offers remarkable energy and exergy efficiencies with minimal capital investment. Therefore, DSMR could replace the classical DMR process, as well as other complex mixed refrigerant-based liquefaction processes.
机译:典型的液化过程被认为是能量和成本密集的。双混合制冷剂(DMR)工艺(具有两个独立的冷却和过冷的循环)以相对高的能量效率产生液化天然气(LNG)。然而,它表现出高度的配置复杂性和对运行条件的敏感性高,而且也会引发大量资本投资。这些因素最终降低了液化过程的整体竞争力,特别是对于海上申请。为了解决这些问题,本文提出了一种能量和成本效益的双效单混合制冷剂(DSMR)工艺,采用单环制冷循环,分别地产生双冷却和过冷效果。使用众所周知的商业模拟器ASPEN HYSYS V10模拟DMR过程和所提出的DSMR过程(具有相同的设计参数)。然后,使用修改的坐标缩减算法进行了优化了两个过程。 DSMR的具体能耗为0.284千瓦时/ kg-ng,与传统DMR工艺相比,相当于22.89%的节能。 DSMR的漏极效率为36.62%,比经典DMR过程高29.67%。此外,拟议的DSMR过程的经济可行性在其总年化成本方面进行了评估,比DMR流程低18.52%。因此,拟议的DSMR过程具有最小的资本投资能源和高度效率。因此,DSMR可以取代经典的DMR工艺,以及其他基于复杂的混合制冷剂的液化过程。

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