A reduced order model for a lithium-ion 3D pouch battery for coupled thermal-electrochemical analysis

被引:3
|
作者
Hahn, Youngwon [1 ]
Gao, Zhenyuan [1 ]
Nguyen, Tuan-Tu [2 ]
Oancea, Victor [1 ]
机构
[1] Dassault Syst SIMULIA Corp, 1301 Atwood Ave,Suite 101W, Johnston, RI 02919 USA
[2] VERKOR, 1-2 Allee Nanometre, F-38000 Grenoble, France
关键词
Lithium -ion battery; Pseudo 2-D model; Pseudo 4-D model; Porous electrode theory; Reduced order model; PHYSICOCHEMICAL MODEL; PARAMETERIZATION;
D O I
10.1016/j.est.2023.107966
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Newman's Pseudo 2-D or porous electrode theory model, is commonly used in the coupled thermal -electrochemical analysis for lithium-ion batteries. This model consists of a 1D macroscale model that satisfies the conservation of charge and mass in the solid and liquid phases in the superimposed continua considering the reaction rate at the interface between solid and liquid, and a 1D microscale diffusion model. The macroscale model can be expanded to include 3D topology to help describe more complex lithium-ion battery behavior, which is often referred to as Pseudo 4-D. However, given the geometrical complexities of cell construction, a Pseudo 4-D model is computationally expensive when compared to a Pseudo 2-D model. When simulations require multiple cells while maintaining detailed thermo-electrochemistry computations (as in module-level simulations), a model order reduction method is beneficial to efficiently perform coupled thermal -electrochemical analysis on a Pseudo 4-D model.This work presents a new methodology for constructing a Pseudo 4-D reduced order model using common pouch cell geometries as an example. Governing equations for the Pseudo 2-D models are adopted in the Pseudo 4-D framework. The proposed workflow reduces the model size by limiting the number of component layers and keeping a high fidelity to the detailed model by properly scaling relevant material properties. First, coupled thermal-electrochemical analysis is carried on the detailed and reduced order pouch cell models, where the efficiency and accuracy of the reduced order model is evaluated. Second, a series of the reduced order models are assembled to form a battery module model, where the same analysis is carried out and the corresponding results are analyzed. The proposed reduced order model approach can be used to significantly reduce computational cost for coupled thermal-electrochemical analysis while keeping a high fidelity, compared to a detailed Pseudo 4-D model.
引用
收藏
页数:12
相关论文
共 50 条
  • [21] A REDUCED-ORDER ELECTROCHEMICAL MODEL OF LITHIUM-ION CELLS FOR SYSTEM IDENTIFICATION OF BATTERY AGING
    Marcicki, James
    Rizzoni, Giorgio
    Conlisk, A. T.
    Canova, Marcello
    PROCEEDINGS OF THE ASME DYNAMIC SYSTEMS AND CONTROL CONFERENCE AND BATH/ASME SYMPOSIUM ON FLUID POWER AND MOTION CONTROL (DSCC 2011), VOL 2, 2012, : 709 - 716
  • [22] Lithium-ion battery design optimization based on a dimensionless reduced-order electrochemical model
    Couto, Luis. D.
    Charkhgard, Mohammad
    Karaman, Berke
    Job, Nathalie
    Kinnaert, Michel
    ENERGY, 2023, 263
  • [23] State-of-Charge estimation from a thermal-electrochemical model of lithium-ion batteries
    Tang, Shu-Xia
    Camacho-Solorio, Leobardo
    Wang, Yebin
    Krstic, Miroslav
    AUTOMATICA, 2017, 83 : 206 - 219
  • [24] Parameterization and Validation of an Electrochemical Thermal Model of a Lithium-Ion Battery
    Liebig, Gerd
    Gupta, Gaurav
    Kirstein, Ulf
    Schuldt, Frank
    Agert, Carsten
    BATTERIES-BASEL, 2019, 5 (03):
  • [25] Analysis of heat generation in lithium-ion battery components and voltage rebound based on electrochemical and thermal coupled model
    Yang, Jiaxing
    Zhang, Hengyun
    Xu, Yidong
    Li, Peichao
    JOURNAL OF ENERGY STORAGE, 2023, 72
  • [26] Comparative study of reduced-order electrochemical models of the lithium-ion battery
    Li Tao
    Cheng Xi-Ming
    Hu Chen-Hua
    ACTA PHYSICA SINICA, 2021, 70 (13)
  • [27] 3D Simulation Study on Thermal Behavior and Thermal Stress of Lithium-Ion Battery
    Zhai, Qingwei
    Xu, Xiaobin
    Kong, Jizhou
    Liu, Mingguang
    Xu, Peng
    Heidarshenas, Behzad
    Wang, Qianzhi
    Zhou, Fei
    Wei, Hongyu
    ENERGY TECHNOLOGY, 2023, 11 (02)
  • [28] A Strain-Diffusion Coupled Electrochemical Model for Lithium-Ion Battery
    Verma, M. K. S.
    Basu, Suman
    Hariharan, Krishnan S.
    Kolake, Subramanya Mayya
    Song, Taewon
    Jeon, Jinyong
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2017, 164 (13) : A3426 - A3439
  • [29] A reduced order electrochemical thermal model for lithium ion cells
    Gambhire, Priya
    Ganesan, Nandhini
    Basu, Suman
    Hariharan, Krishnan S.
    Kolake, Subramanya Mayya
    Song, Taewon
    Oh, Dukjin
    Yeo, Taejung
    Doo, Seokgwang
    JOURNAL OF POWER SOURCES, 2015, 290 : 87 - 101
  • [30] SOC Oriented Electrochemical-Thermal Coupled Modeling for Lithium-Ion Battery
    Ma, Yan
    Li, Xin
    Li, Guangyuan
    Hu, Yunfeng
    Bai, Qingwen
    IEEE ACCESS, 2019, 7 : 156136 - 156149