首页> 外文会议>14th international conference amp; exhibition on liquefied natural gas (LNG 14) >A PLAN FOR OPERATING COST REDUCTION AND TECHNOLOGY DEVELOPMENT OF LNG VAPORIZING SYSTEM
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A PLAN FOR OPERATING COST REDUCTION AND TECHNOLOGY DEVELOPMENT OF LNG VAPORIZING SYSTEM

机译:LNG汽化系统的降低成本的计划和技术发展

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摘要

This study was performed to establish an effective operating plan to reduce the operating cost of LNG vaporizing system in Incheon R/T (Receiving Terminal), and to develop a bench scale new type LNG vaporizer for lower seawater temperature.rn To reduce the operating cost, we first analyzed the double train pump-seawater pipeline network with the modified Linear Theory Method and the thermal performance of ORVs (Open Rack Vaporizers) with the modified Wilson Plot Technique. From the results, we estimated the unit cost of ORVs operation with the flow rate and the temperature of seawater and were able to determine an effective operating mode of LNG vaporizing system in Incheon R/T. rnTo develop new type vaporizer, we investigated two models: 1Body-1HX (Heat eXchanger) with double tubes and 1Body-3HXs with single tubes, in applying an intermediate fluid so as to overcome seawater icing of ORVs. In particular, the intermediate fluids were investigated to apply freons or hydrocarbons. In the first year, we performed basic analyses and fabricated a batch type vaporizer. In the second year, we will create a bench scale vaporizer to modify and improve on the problems of the characteristics of its structure and heat transfer, and then, will perform a final bench scale vaporizer test for its performance verification. Also, we are planning to demonstrate its realization for a real-scale system with scale-up parameters in conclusion. rnConsequently, we have established an operating plan for the LNG vaporizing system in Incheon R/T and driven the development of a new type vaporizer to positively resolve the icing problem of ORVs in the winter season. RESUME
机译:进行这项研究是为了建立有效的运营计划,以降低仁川R / T(接收站)的LNG气化系统的运行成本,并开发一种台式规模的新型LNG气化器以降低海水温度。rn降低运行成本,我们首先使用改良的线性理论方法分析了双列火车泵-海水管线网络,并利用改良的Wilson Plot技术分析了ORV(敞口式蒸发器)的热性能。根据结果​​,我们估算了ORV的单位成本随流速和海水温度的变化,并能够确定仁川R / T中LNG气化系统的有效运行方式。为了开发新型的蒸发器,我们研究了两种模型:使用双管的1Body-1HX(Heat eXchanger)和使用单管的1Body-3HXs在应用中间流体以克服ORV的海水结冰方面。特别地,研究了中间流体以施加氟利昂或碳氢化合物。在第一年,我们进行了基本分析,并制造了间歇式蒸发器。在第二年,我们将创建一个台式蒸发器,以修改和改进其结构和传热特性的问题,然后,将执行最终的台式蒸发器测试以验证其性能。另外,我们计划在最后展示其在具有放大参数的实际规模系统中的实现。因此,我们在仁川R / T建立了LNG气化系统的运行计划,并推动了新型气化器的开发,以积极解决冬季ORV的结冰问题。恢复

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  • 来源
  • 会议地点 Doha(QA);Doha(QA);Doha(QA);Doha(QA)
  • 作者单位

    RD Division, Korea Gas Corporation Incheon, South Korea hoykim@kogas.re.kr;

    RD Division, Korea Gas Corporation Incheon, South Korea hoykim@kogas.re.kr;

    RD Division, Korea Gas Corporation Incheon, South Korea hoykim@kogas.re.kr;

    RD Division, Korea Gas Corporation Incheon, South Korea hoykim@kogas.re.kr;

    RD Division, Korea Gas Corporation Incheon, South Korea hoykim@kogas.re.kr;

    RD Division, Korea Gas Corporation Incheon, South Korea hoykim@kogas.re.kr;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TE626.7;
  • 关键词

  • 入库时间 2022-08-26 13:57:34

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