论文标题

热电设备的不可逆热力学:从本地框架到全球描述

Irreversible thermodynamics of thermoelectric devices: From local framework to global description

论文作者

Kaur, Jasleen, Johal, Ramandeep S.

论文摘要

传统上,热电学是通过Onsager不可逆的,通量强度框架来解释的。热和电荷的耦合流被建模为稳态流,由根据局部,密集的参数(如温度和电化学潜力)定义的热力学力驱动。热电发生器是具有有限扩展的设备,其性能是根据总功率输出和总熵产生来衡量的。这些全球量自然是用源自本地同行的离散或全球力量来表达的。我们根据全球通量关系分析热电学的热力学。这些关系清楚地表明,驱动器通量对全球力的附加二次依赖性,与焦耳加热过程相对应。我们讨论了这些磁通关系定义的全局动力学系数,并证明全局跨核对象的平等是从局部系数的类似属性中得出的。最后,我们阐明了热电能量转化的全球框架与最近提出的微型非线性不可逆热力学模型之间的差异。

Thermoelectricity is traditionally explained via Onsager's irreversible, flux-force framework. The coupled flows of heat and electric charge are modelled as steady-state flows, driven by the thermodynamic forces defined in terms of the gradients of local, intensive parameters like temperature and electrochemical potential. A thermoelectric generator is a device with a finite extension, and its performance is measured in terms of total power output and total entropy generation. These global quantities are naturally expressed in terms of discrete or global forces derived from their local counterparts. We analyze the thermodynamics of thermoelectricity in terms of global flux-force relations. These relations clearly show the additional quadratic dependence of the driver flux on global forces, corresponding to the process of Joule heating. We discuss the global kinetic coefficients defined by these flux-force relations and prove that the equality of the global cross-coefficients is derived from a similar property of the local coefficients. Finally, we clarify the differences between the global framework for thermoelectric energy conversion and the recently proposed minimally nonlinear irreversible thermodynamic model.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源