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Route towards the optimization at given power of thermoelectric heat engines with broken time-reversal symmetry

机译:朝向具有破裂时间反转对称的热电热风发动机的优化的途径

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We investigate the performance at a given power of a thermoelectric heat engine with broken time-reversal symmetry, and derive analytically the efficiency at a given power of a thermoelectric generator within linear irreversible thermodynamics. A universal bound on the efficiency of the thermoelectric heat engine is achieved under a strong constraint on the Onsager coefficients, and some interesting features are further revealed. Our results demonstrate that there exists a trade-off between efficiency and power output, and the efficiency at a given power may surpass the Curzon-Ahlborn limit due to broken time-reversal symmetry. Moreover, optimal efficiency at a given power can be achieved, which indicates that broken time-reversal symmetry offers physically allowed ways to optimize the performance of heat engines. Our study may contribute to the interesting guidelines for optimizing actual engines.
机译:我们在具有破坏的时间反转对称的热电热发动机的给定功率下进行性能,并在线性不可逆热力学内的热电发电机的给定功率下进行分析的效率。 在昂山系数的强制下实现了对热电发动机效率的普遍束缚,并且进一步揭示了一些有趣的特征。 我们的结果表明,效率和功率输出之间存在权衡,并且由于破裂的时间反转对称,给定功率的效率可能超过Curzon-Ahlborn限制。 此外,可以实现给定功率的最佳效率,这表明破损的时间反转对称性提供了物理允许的方法来优化热风发动机的性能。 我们的研究可能有助于优化实际发动机的有趣指导方针。

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