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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Cascade refrigeration system with inverse Brayton cycle on the cold side
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Cascade refrigeration system with inverse Brayton cycle on the cold side

机译:级联制冷系统在冷侧的逆布雷顿循环

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HighlightsA cascade configuration is used to refrigerate a cold store and its loading dock.On the cold side, an inverse Brayton cycle uses the cold store air asa working fluid.The top cycle, that refrigerates also the loading dock, is an NH3compression cycle.The global system performance is comparable to conventional plants.AbstractLow temperature refrigeration of cold stores poses some specific issues: single stage, vapour compression cycles have modest COP at low evaporation temperature; cold evaporator surfaces require de-frosting and a fan for air circulation; a part of the refrigeration load may be delivered at intermediate temperature levels, e.g. for the cold store loading dock.Cascade system may improve the COP and add flexibility on the temperature levels and working fluids, but the problems related to the cold evaporator surface remain unsolved.The refrigeration system presented herein features a cascade configurationcombining a vapour compression cycleand an inverse Braytoncycle. Both cycles use “natural” fluids, complying with strictest regulations. The top cycle uses Ammonia in order to increase efficiency, while the bottom cycle uses air, which directly circulates in the cold space and hence eliminates the cold heat exchanger. A detailed thermodynamic analysis allows a complete screening of the relevant design parameters for an overall system optimization.The results show that, notwithstanding the intrinsic gap of efficiency suffered by the Brayton cycle, the proposed system features an acceptable global performance and widens the implementation field of this technology. This system configuration shows a COP 50% higher than the corresponding simple Brayton cycle at temperatures of the refrigerated storage of ?50°C.]]>
机译:<![cdata [ 亮点 级联配置用于冷藏冷库及其加载码头。 < / ce:list-item> 在冷侧,反向布雷顿循环使用冷库空气ASA工作流体。 顶循环,冰箱也是加载码头,是一个NH 3 压缩周期。 全球系统性能与传统植物相当。 抽象 低温冷冻冷藏的冷库带来了一些特定的问题:单级,蒸汽压缩循环在低蒸发温度下具有适度的警察。冷蒸发器表面需要去磨损和用于空气循环的风扇;可以在中间温度水平下递送一部分制冷载荷,例如,在中间温度水平上递送。对于冷藏店加载码头。 级联系统可以改善COP并增加温度水平和工作流体的灵活性,但是与冷蒸发器表面有关的问题仍然未解决。 本文所提供的制冷系统具有级联配置蒸汽压缩循环的级联。逆Braytoncycle。两个循环都使用“自然”流体,符合最严格的规定。顶循环使用氨以提高效率,而底部循环使用空气,该空气直接在寒冷的空间中循环,因此消除了冷热换热器。详细的热力学分析允许完全筛选整体系统优化的相关设计参数。 结果表明,尽管如此,仍然存在Brayton循环所遭受的效率的内在间隙,所提出的系统具有可接受的全球性能,并扩大了该技术的实施领域。该系统配置显示POP 50%高于相应的简单Brayton循环在50°C的冷藏储存温度下的相应简单布雷顿循环。 ] ]

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