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经典极限下含谐振子的多级内可逆量子卡诺热机的最优功率与效率

Optimal Power and Efficiency of Multi-Stage Endoreversible Quantum Carnot Heat Engine with Harmonic Oscillators at the Classical Limit.

作者信息

Meng Zewei, Chen Lingen, Wu Feng

机构信息

Institute of Thermal Science and Power Engineering, Wuhan Institute of Technology, Wuhan 430205, China.

School of Mechanical & Electrical Engineering, Wuhan Institute of Technology, Wuhan 430205, China.

出版信息

Entropy (Basel). 2020 Apr 17;22(4):457. doi: 10.3390/e22040457.

Abstract

At the classical limit, a multi-stage, endoreversible Carnot cycle model of quantum heat engine (QHE) working with non-interacting harmonic oscillators systems is established in this paper. A simplified combined cycle, where all sub-cycles work at maximum power output (MPO), is analyzed under two types of combined form: constraint of cycle period or constraint of interstage heat current. The expressions of power and the corresponding efficiency under two types of combined constrains are derived. A general combined cycle, in which all sub-cycles run at arbitrary state, is further investigated under two types of combined constrains. By introducing the Lagrangian function, the MPO of two-stage combined QHE with different intermediate temperatures is obtained, utilizing numerical calculation. The results show that, for the simplified combined cycle, the total power decreases and heat exchange from hot reservoir increases under two types of constrains with the increasing number (N) of stages. The efficiency of the combined cycle decreases under the constraints of the cycle period, but keeps constant under the constraint of interstage heat current. For the general combined cycle, three operating modes, including single heat engine mode at low "temperature" (SM1), double heat engine mode (DM) and single heat engine mode at high "temperature" (SM2), appear as intermediate temperature varies. For the constraint of cycle period, the MPO is obtained at the junction of DM mode and SM2 mode. For the constraint of interstage heat current, the MPO keeps constant during DM mode, in which the two sub-cycles compensate each other.

摘要

在经典极限下,本文建立了一个与非相互作用谐振子系统一起工作的量子热机(QHE)的多阶段、内可逆卡诺循环模型。分析了一种简化的联合循环,其中所有子循环都在最大功率输出(MPO)下工作,在两种联合形式下进行分析:循环周期约束或级间热流约束。推导了两种联合约束下的功率表达式和相应效率。进一步研究了一种通用联合循环,其中所有子循环在任意状态下运行,在两种联合约束下进行研究。通过引入拉格朗日函数,利用数值计算得到了不同中间温度下两阶段联合量子热机的最大功率输出。结果表明,对于简化联合循环,在两种约束下,随着阶段数(N)的增加,总功率降低,从高温热源的热交换增加。联合循环的效率在循环周期约束下降低,但在级间热流约束下保持不变。对于通用联合循环,随着中间温度的变化,出现了三种运行模式,包括低温单热机模式(SM1)、双热机模式(DM)和高温单热机模式(SM2)。对于循环周期约束,在DM模式和SM2模式的交界处获得最大功率输出。对于级间热流约束,在DM模式下最大功率输出保持不变,其中两个子循环相互补偿。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0092/7516941/061af14d70d4/entropy-22-00457-g001.jpg

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