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首页> 外文期刊>Physica, A. Statistical mechanics and its applications >Exergy-based ecological optimization of an irreversible quantum Carnot heat pump with harmonic oscillators
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Exergy-based ecological optimization of an irreversible quantum Carnot heat pump with harmonic oscillators

机译:具有谐振振荡器的不可逆量子钟状热泵的基于漏洞的生态优化

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This paper studies ecological performance by taking a quantum Carnot heat pump as object. The working substance of the heat pump is harmonic oscillator. Besides heat resistance, this heat pump also has heat leakage and internal friction. This paper derives heating load, coefficient of performance and ecological function and analyse these important parameters with numerical illustrations. At high temperature limit, this paper simplifies these important parameters and deduces the optimal performance by taking ecological function as objective. Also, this paper illustrates effects of irreversibilities with help of numerical calculation. The results reveal that ecological function of the pump has maximum value. Results at high temperature limit reveal that ecological function versus COP characteristic curves are parabolic-like as when heat leakage is absent and ecological function has maximum value. Heat leakage makes characteristic curves become loop-shaped curves and leads to smaller ecological function and COP. With a constant heat leakage, maximum attained ecological function decreases as internal friction increases. Comparison between maximum points of ecological function and COP at high temperature limit reveals that ecological optimization makes COP decrease 16.8%, exergy loss rate increases about 7.20 times, but heating load and exergy output rate greatly increase about 3.18 times and 3.23 times, respectively. Comparison maximum point of ecological function and point where the value of exergy output rate is A/tau = 6.09 x 10(-4) reveals that the second point makes COP decrease 5.21%, exergy output rate increase only 20.9% and heating load increase only 21.1%, but the exergy lose rate increases 40.7%. Taking maximum ecological function as objective makes larger improvement in COP and reduction in exergy loss rate, and the cost is smaller heating load drop. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文通过将量子碳诺特热泵作为物体进行了生态性能。热泵的工作物质是谐波振荡器。除耐热性外,该热泵还具有散热和内部摩擦。本文推出了加热负荷,性能系数和生态功能,并用数值插图分析这些重要参数。在高温限制,本文简化了这些重要参数,并通过将生态功能视为目标来推导出最佳性能。此外,本文说明了在数值计算的帮助下对不缩义的影响。结果表明,泵的生态功能具有最大值。结果在高温下的结果表明,生态功能与COM特性曲线具有抛物面,如散热泄漏,而生态功能具有最大值。热泄漏使特征曲线成为环形曲线,并导致较小的生态功能和警察。随着恒温泄漏,随着内部摩擦的增加,最大达到的生态功能降低。在高温下的最大生态功能点与COP之间的比较表明,生态优化使得COP减少16.8%,漏洞损失率增加约7.20倍,但热负荷和出境输出速率分别大幅增加约3.18倍和3.23倍。比较生态功能的最大点和光学输出率的值为A / Tau = 6.09 x 10(-4)表明,第二点使COP减少5.21%,电力输出率仅增加20.9%,加热负荷增加21.1%,但走势损失率增加了40.7%。采取最大的生态功能作为客观使警察的提高更大,降低了丧失损失率,成本较小,加热负荷降低。 (c)2019 Elsevier B.v.保留所有权利。

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