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Proposal and Analysis of a Cogeneration System Integrating High Temperature Gas-cooled Reactor with Ammonia-water Cycle

机译:高温气冷反应器与氨水循环相结合的提案及分析

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A nuclear ammonia-water power and refrigeration cogeneration system(NAPR)with zero CO2 emission has been proposed and analyzed in this paper.It consists of a high temperature gas-cooled reactor(HTGR)closed Brayton cycle and a modified ammonia water power/refrigeration combined cycle(APR).The HTGR is an inherently safe reactor,and thus could be stable,flexible and suitable for various energy supply situation.The helium working medium in HTGR need not discharge,so the exhaust waste heat could be recovered more thoroughly.The ammonia water adopted as working fluid in bottoming cycle makes the exergy destruction in heat exchange and absorption-condensation processes decrease; and the concentrated ammonia solution was throttled to provide refrigeration.With the HTGR of 200MW thermal capacity and 900°C/70bar outlet parameters,the system attains an exergy efficiency of 64.4%.Compared with the nuclear combined cycle(NCC)with the same nuclear energy input,the exergy efficiency of NAPR in Comparison caseⅠcould reach up to 2.6%-points higher than that of NCC(72.5%VS 69.9%).With same flow path of ammonia solution working medium,NAPR achieves 4.9%-points higher than that of original APR cycle(62.5%VS 57.6%).The fossil fuel saving(based on CH4)and CO2 emission reduction of base-case NAPR are found to be~8.5×104t/y CH4 and~2.3×105t/y CO2,respectively.The system integration accomplishes the safe and high-efficiency utilization of nuclear energy by power and refrigeration cogeneration.
机译:本文提出并分析了核氨水和制冷热电系统(NAPR),并分析了具有零CO2排放的零CO2排放。由高温气体冷却反应器(HTGR)闭合的Brayton循环和改性氨水/制冷组成联合周期(APR)。HTGR是一个固有的安全电抗器,因此可以是稳定的,灵活,适用于各种能源供应情况。HTGR中的氦气工作介质无需放电,因此排气余热可以更彻底地回收。作为底部循环中的工作流体采用的氨水使得热交换和吸收 - 冷凝过程中的漏极破坏降低;和浓氨溶液节流以提供refrigeration.With的200MW热容量和900℃/ 70bar出口参数HTGR,该系统达到的64.4%与核联合循环(NCC)具有相同的核。相比有效能效率能量输入,NAPR的在比较有效能效率caseⅠcould可达2.6%-points比NCC的更高(72.5%VS 69.9%)。用氨溶液的工作介质的相同流路,NAPR达到4.9%-points高于原始APR周期(62.5%VS 57.6%)。发现化石燃料(基于CH4)和CO2减排基本情况NAPR为〜8.5×104t / Y CH4和〜2.3×105t / Y CO2,分别通过电力和制冷热电联产实现了系统集成实现了核能的安全和高效利用。

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