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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Optimal design and operating condition of boil-off CO2 re-liquefaction process, considering seawater temperature variation and compressor discharge temperature limit
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Optimal design and operating condition of boil-off CO2 re-liquefaction process, considering seawater temperature variation and compressor discharge temperature limit

机译:考虑海水温度变化和压缩机放电温度极限的蒸发二氧化碳重新液化过程的最佳设计与运行条件

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摘要

Low-temperature liquid CO2 could boil off during ship transportation because of the heat ingress from the surroundings to inside the tank, which causes the tank pressure to increase. To maintain the operating pressure range of the tank, the re-liquefaction process is indispensable. Three design alternatives to the re-liquefaction process using boil-off CO2 as a refrigerant are proposed and compared. A systematic procedure to find the optimal design of CO2 re-liquefaction is provided considering operational constraints such as the cooling water temperature and compressor discharge temperature. The optimal operating conditions of the proposed processes are determined by solving nonlinear programming. The compressor power consumption as the operation energy for the CO2 re-liquefaction ranges from 60 to 120 kW/t CO2 given the operational constraints. As the seawater temperature is lower and the discharge temperature limit is higher, the proposed Alternative 2 design consumes less power than the other designs. (C) 2017 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:低温液体二氧化碳在船舶运输期间可以脱落,因为从周围环境到罐内的热进入,这导致罐压力增加。为了保持罐的工作压力范围,重新液化过程是必不可少的。提出了使用蒸煮二氧化碳作为制冷剂的重新液化过程的三种设计替代品。考虑到诸如冷却水温和压缩机放电温度的操作约束,提供了用于找到CO2重新液化的最佳设计的系统程序。通过求解非线性编程来确定所提出的过程的最佳运行条件。考虑到操作限制,压缩机功耗作为CO2重新液化的操作能量范围为60至120kW / t CO2。随着海水温度较低,放电温度限制较高,所提出的替代方案2设计消耗比其他设计更低的功率。 (c)2017年化学工程师机构。 elsevier b.v出版。保留所有权利。

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