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A novel cryogenic power cycle for LNG cold energy recovery

机译:一种用于LNG冷能回收的新型低温功率循环

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摘要

A novel cryogenic cycle by using a binary mixture as working fluids and combined with a vapor absorption process was proposed to improve the energy recovery efficiency of an LNG (liquefied natural gas) cold power generation. The cycle was simulated with seawater as the heat source and LNG as the heat sink, and the optimization of the power generated per unit LNG was performed. Tetrafluoromethane (CF_4) and propane (C_3H_8) were employed as the working fluids. The effects of the working fluid composition, the recirculation rate of the C_3H_8-rich solution and the turbine intermediate pressure were investigated. In the cryogenic absorber, the C_3H_8-rich liquid absorbs the CF_4-rich vapor so that the mixture exhausting from the turbine can be fully condensed at a reduced pressure. This reduction of turbine back pressure can considerably improve the cycle efficiency. The presented cycle was compared with the C_3H_8 ORC (organic Rankine cycle), to show such performance improvement. It is found that the novel cycle is considerably superior to the ORC. The efficiency is increased by 66.3% and the optimized LNG recovery temperature is around -60 ℃.
机译:为了提高液化天然气(LNG)冷能发电的能量回收效率,提出了一种以二元混合物为工作液并结合蒸汽吸收工艺的新型低温循环技术。以海水为热源,以LNG为散热器模拟了该循环,并对每单位LNG的发电量进行了优化。使用四氟甲烷(CF_4)和丙烷(C_3H_8)作为工作流体。研究了工作流体组成,富C_3H_8溶液的再循环率和涡轮中压的影响。在低温吸收器中,富含C_3H_8的液体吸收富含CF_4的蒸气,从而使从涡轮排出的混合物可以在减压下完全冷凝。涡轮背压的降低可以大大提高循环效率。将给出的周期与C_3H_8 ORC(有机朗肯周期)进行比较,以显示这种性能的提高。发现新颖的循环明显优于ORC。效率提高了66.3%,优化的LNG回收温度约为-60℃。

著录项

  • 来源
    《Energy》 |2011年第5期|p.2828-2833|共6页
  • 作者

    Yanni Liu; Kaihua Guo;

  • 作者单位

    School of Engineering, Sun Yat-Sen University, 135 Xingangxi Road, Guangzhou, China;

    School of Engineering, Sun Yat-Sen University, 135 Xingangxi Road, Guangzhou, China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    lng cryogenic power cycle absorber cold energy orc;

    机译:低温功率循环吸收器冷能兽人;

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