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首页> 外文期刊>International Journal of Refrigeration >High-flux thermal management at megawatt scale using a double-effect absorption/vapor-compression cascade refrigeration cycle
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High-flux thermal management at megawatt scale using a double-effect absorption/vapor-compression cascade refrigeration cycle

机译:使用双效吸收/蒸气压缩级联制冷循环队列的高通量热管理

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A robust, high-performance, cascaded double-effect absorption/vapor-compression cycle with a high temperature lift was conceptualized and analyzed for a naval ship application. A double-effect LiBr-H2O absorption cycle driven by high-temperature (>275 degrees C) exhaust heat was coupled to a subcritical CO2 vapor-compression cycle to provide low temperature refrigerant (-40 degrees C) for high-heat flux electronics applications and medium temperature refrigerant (5 degrees C) for space conditioning and other low-heat flux applications. The double-effect absorption/vapor-compression cycle outperformed the corresponding single-effect cycle, providing 74.4% higher cooling capacity for the same waste heat input; however, it required more heat exchange area. The improved performance of the double-effect configuration was much higher at lower heat rejection temperatures. A parametric study on the exhaust and heat rejection temperatures showed that the cycle exhibited high COPs over a wide range of operating conditions, indicating the robustness of the cycle. (C) 2020 Elsevier Ltd and IIR. All rights reserved.
机译:具有高温升力的强大,高性能,级联的双效吸收/蒸气压缩循环被概念化并分析了海军船舶应用。由高温(> 275摄氏度)排出的双效利率-H2O吸收循环耦合到亚临界CO2蒸气压缩循环,以提供用于高温磁通电子应用的低温制冷剂(-40℃)和中温制冷剂(5摄氏度)用于空间调节和其他低温通量应用。双效吸收/蒸气压缩循环优于相应的单效循环,为相同的废物热输入提供74.4%的冷却能力;但是,它需要更多的热交换区域。在较低的散热温度下,双效配置的改进性能要高得多。对排气和散热温度的参数研究表明,该循环在广泛的操作条件下表现出高COPS,表明循环的鲁棒性。 (c)2020 Elsevier Ltd和IIR。版权所有。

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