论文标题

电力电动器的预测电动电动机的能量变异方法

Energetic Variational Approach for Prediction of Thermal Electrokinetics in Charging and Discharging Processes of Electrical Double Layer Capacitors

论文作者

Ji, Xiang, Liu, Chun, Liu, Pei, Zhou, Shenggao

论文摘要

这项工作提出了一种新的变分,热力学一致的模型,以通过使用能量的变分方法来预测电力电容器(EDLC)中的热电动力学。非平衡热力学的最小动作原理和最大耗散原理被用来开发因温度不均匀性而用于非等温离子转运的改良的Nernst-Planck方程。由于热压力和静电相互作用,热力学定律被用来得出具有热源的温度演化方程。数值模拟在EDLC的充电过程中成功预测了温度振荡,表明开发的模型能够捕获可逆且不可逆转的热代。离子大小和表面电位扫描速率对离子传输,热产生和电荷电流的影响是在循环伏安法模拟中系统评估的。发现EDLC中的热电动力学无法通过快速扫描速率遵循表面电势,显示出滞后图延迟的动力学。因此,我们的工作为基于物理的热电动力学预测EDLC提供了有用的工具。

This work proposes a new variational, thermodynamically consistent model to predict thermal electrokinetics in electric double layer capacitors (EDLCs) by using an energetic variational approach. The least action principle and maximum dissipation principle from the non-equilibrium thermodynamics are employed to develop modified Nernst-Planck equations for non-isothermal ion transport with temperature inhomogeneity. Laws of thermodynamics are employed to derive a temperature evolution equation with heat sources due to thermal pressure and electrostatic interactions. Numerical simulations successfully predict temperature oscillation in the charging-discharging processes of EDLCs, indicating that the developed model is able to capture reversible and irreversible heat generations. The impact of ionic sizes and scan rate of surface potential on ion transport, heat generation, and charge current is systematically assessed in cyclic voltammetry simulations. It is found that the thermal electrokinetics in EDLCs cannot follow the surface potential with fast scan rates, showing delayed dynamics with hysteresis diagrams. Our work thus provides a useful tool for physics-based prediction of thermal electrokinetics in EDLCs.

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