Holistic Modeling Framework for the Investigation of Innovative Battery Thermal Management Concepts
暫譯: 創新電池熱管理概念研究的整體建模框架

Auch, Marcus

  • 出版商: Springer Vieweg
  • 出版日期: 2026-07-24
  • 售價: $4,260
  • 貴賓價: 9.5$4,047
  • 語言: 英文
  • 頁數: 161
  • 裝訂: Quality Paper - also called trade paper
  • ISBN: 3658526114
  • ISBN-13: 9783658526115
  • 相關分類: 熱力學 Thermodynamics
  • 海外代購書籍(需單獨結帳)

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商品描述

Battery electric vehicles are considered a key technology for achieving zero-emission mobility, increasing the demand for efficient battery thermal management systems (BTMSs) capable of ensuring both high performance and long battery lifetime. While conventional BTMS concepts effectively control the overall battery temperature, unavoidable coolant temperature increase along the flow path results in temperature gradients across battery modules. These temperature differences cause inhomogeneous aging of lithium-ion battery cells and can significantly affect long-term module performance and life-cycle characteristics. This work investigates the impact of BTMS-related thermal inhomogeneities on battery degradation and develops a holistic electro-thermal-fluid-aging modeling framework for accurate life-cycle analysis of lithium-ion battery modules. The results demonstrate significant aging differences for conventional cooling concepts and motivate the development of a novel switchable BTMS architecture. By periodically reversing the coolant flow direction between load cycles, the proposed concept reduces thermal aging inhomogeneities and increases total charge throughput and vehicle mileage by up to 7.2 %.

商品描述(中文翻譯)

電池電動車被視為實現零排放移動的關鍵技術,這增加了對高效電池熱管理系統(BTMS)的需求,這些系統能確保高性能和長電池壽命。雖然傳統的BTMS概念能有效控制整體電池溫度,但沿著流動路徑不可避免的冷卻液溫度上升會導致電池模組之間的溫度梯度。這些溫度差異會造成鋰離子電池單元的不均勻老化,並可能顯著影響長期模組性能和生命週期特徵。本研究探討了BTMS相關的熱不均勻性對電池退化的影響,並開發了一個整體的電-熱-流體-老化建模框架,以準確分析鋰離子電池模組的生命週期。結果顯示,傳統冷卻概念的老化差異顯著,並促使開發一種新型可切換的BTMS架構。通過在負載循環之間定期反轉冷卻液流向,所提出的概念減少了熱老化不均勻性,並將總充電通量和車輛里程提高了最多7.2%。

作者簡介

Marcus Auch earned his Ph.D. in automotive engineering at the Institute of Automotive Engineering (IFS) at the University of Stuttgart. His research focused on the electro-thermal behavior of battery systems. He currently works as an engineer in the field of system stability at a transmission system operator.

作者簡介(中文翻譯)

馬庫斯·奧赫在斯圖加特大學的汽車工程研究所(IFS)獲得了汽車工程博士學位。他的研究專注於電池系統的電熱行為。目前,他在一個傳輸系統運營商擔任系統穩定性工程師。