See How Multiphysics Simulation Is Used in Research and Development
Engineers, researchers, and scientists across industries use multiphysics simulation to research and develop innovative product designs and processes. Find inspiration in technical papers and presentations they have presented at the COMSOL Conference. Browse the selection below or use the Quick Search tool to find a specific presentation or filter by application area.
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A thermo-physical 3D model of a commercial Li-ion battery was developed and validated. Visualization of the temperature distributions inside a Li-ion cell during cell stacking processes were simulated. Critical temperature levels depend on position, duration and intensity of the thermal ... Read More
The proposed State of Charge (SOC) governed fast charging method for secondary lithium based batteries charges a battery many times faster than the normal Constant Current-Constant Voltage (CC-CV) charging and reduces the side-effects generally accompanied by various fast charging ... Read More
The thermal behavior of lithium ion batteries could be investigated by efficient simulation method [1,2]. Here, we developed an electrochemical-lumped thermal analytical model to analyze the thermal response and heat breakdown of a pouch LiNi1/3Co1/3Mn1/3O2 battery (3Ah) under fast ... Read More
At Leoni, we are not only working towards even more reliable, performant cables by simulating their electric, magnetic, mechanical as well as thermal properties but also bring our customer applications to our design board. Based, amongst others on multi-physical simulations, we prepare ... Read More
Abstract:The thermal behavior of lithium ion batteries could be investigated by efficient simulation method [1,2]. Here, we developed an electrochemical-lumped thermal analytical model to analyze the thermal response and heat breakdown of a pouch LiNi1/3Co1/3Mn1/3O2 battery (3Ah) under ... Read More
The performance of Li-ion battery is known to be dependent on the thickness direction distribution of binder volume fraction. The distribution is determined by drying process of electrode ink, which contains large active material and small binder. With the aim of predicting binder ... Read More
Two Anode Surface processes are examined : Formation of Solid Electrolyte Interphase (SEI) and heating due to Shuttle Current. During charging, higher order sulfur species are reduced at the anode surface, while they are concurrently being oxidized at the cathode. This leads to the ... Read More
环境污染问题日益严重,新能源汽车将逐渐成为汽车工业发展的新方向,而动力电池作为整个电动汽车的驱动核心,其安全性和使用寿命受到广泛关注。动力电池组在大倍率充放电时内部化学反应加剧,各单体电池温度急剧升高,电池单体之间的不一致性加剧,容易引发热失控等一系列安全事故。本工作采用COMSOL Multiphysics有限元软件对圆柱卷绕式锂离子电池建立3D电化学-热平均耦合有限元模型,将电化学模型与热模型结合分析电池的电化学特性以及热行为,最终建立一个安全可靠的热管理系统。 首先使用COMSOL软件的“电池与燃料电池模块”和“传热模块”这两个模块和“锂离子电池接口” ... Read More
三元锂离子电池作为目前电动汽车的主流储能设备之一,其电化学性能与热性能引发诸多关注。锂离子电池的内部电化学特性和热特性对其性能有显著影响,但这些特性无法通过实验方法得到。本文基于多物理场耦合仿真软件COMSOL Multiphysics® 5.4,采用有限元方法,将电池电化学模型与热模型结合分析电池的电化学特性以及热行为。通过电化学模型和热模型原理,建立了30 Ah三元锂离子方形电池的三维电化学-三维热耦合模型。采用热传导模块建立了由电芯、正极和负极片组成的三维热模型,并覆盖电池硬壳,采用自由四面体法进行网格划分。基于该模型 ... Read More
Here we optimize the geometry: proof mass length Lm to total length L, thickness of the piezoelectric material (Tp) to total cantilever thickness (T) for obtaining the maximum stress distribution (Smax), output voltage (Vout) and power performance (Pout) of the unimorph Cantilever beam ... Read More