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I need a complete electrical-and-thermal simulation of a lithium-ion battery pack using ANSYS and, where structural coupling is useful, Abaqus. The study must cover three key areas: • Efficiency & Performance – please quantify energy capacity, charge/discharge rates, and thermal management across the full operating window. • Safety Under Various Conditions – test overcharging, short-circuiting, and extreme-temperature scenarios to identify risk points and safe operating limits. • Longevity & Lifecycle – project capacity fade and thermal degradation over repeated cycles. You may build the model from publicly available cell data or adapt one I supply once we start. Mesh quality, material properties, and boundary conditions should be clearly stated so the work is reproducible. Deliverables: 1. Sim files (ANSYS Workbench project, any Abaqus input decks) in a neatly organised folder. 2. A brief PDF report—figures, key plots, and a concise discussion of results, assumptions, and recommendations. 3. A one-page summary highlighting critical findings and next-step suggestions. I’m happy to answer questions quickly so you can keep momentum. Let me know your expected turnaround time and any comparable simulations you have completed.
Project ID: 40446875
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6 freelancers are bidding on average ₹21,667 INR for this job

Hi there! I have done a related project before with different cooling mechanisms. The one I did was with 40 cells and I have done it for different scenarios. I will send the results on the chat. I have a CFD expertise using ANSYS Fluent for more than 10 years with thermal engineering master's degree. Please share further details on the chat so that I can start right away. Best regards, Saleamlak A.
₹24,500 INR in 7 days
7.5
7.5

I am an experienced engineer specializing in ANSYS simulations, offering advanced computational modeling and analysis services to support design validation, optimization, and failure prevention. Using ANSYS Workbench, Mechanical, and Fluent, I can deliver accurate results through structural, thermal, and fluid flow studies, vibration analysis, and failure prediction. Specialized in; 1) 3D model setup and meshing in ANSYS 2) Static structural and thermal analysis 3) CFD simulation for fluid flow and heat transfer 4) Modal and harmonic vibration analysis 5) Fatigue and failure evaluation 6) Optimization and design improvement recommendations 7) Comprehensive technical report with results and conclusions
₹12,500 INR in 3 days
6.3
6.3

A complete lithium-ion battery pack simulation requires coupled electro-thermal modelling, accurate material-property definition, realistic charge/discharge boundary conditions, and safety-case evaluation under abuse conditions such as overcharge, short-circuit, and extreme temperature exposure. Well what I can do for you as electronics engineer with 8+ years of experience is prepare the ANSYS-based electrical and thermal simulation workflow, including cell/pack model setup, mesh quality checks, material properties, heat-generation modelling, charge/discharge performance analysis, thermal-management evaluation, safety-limit scenarios, and where useful, Abaqus-supported structural coupling for thermal-stress behaviour. In fact, I’ve worked on multiple battery-management and engineering simulation projects involving lithium-ion battery systems, MATLAB/Simulink modelling, thermal analysis, power electronics, lifecycle-performance evaluation, technical reporting, and ANSYS-style simulation documentation, so delivering organised simulation files, key plots, reproducible assumptions, concise PDF reporting, and a one-page critical-findings summary aligns directly with my battery-system simulation and electronics engineering experience.
₹25,000 INR in 7 days
5.0
5.0

Hi, I’m a Mechanical Engineer with experience in battery electro-thermal simulations using ANSYS and Abaqus. I can perform a complete analysis of your lithium-ion battery pack, including electrical performance, thermal behavior, safety evaluation, and lifecycle assessment. The study will cover charge/discharge performance, current distribution, heat generation, temperature rise, hotspot identification, overcharge and short-circuit scenarios, and capacity degradation trends. Deliverables will include ANSYS/Abaqus simulation files, mesh and boundary-condition documentation, contour plots, performance graphs, a detailed technical report, and a concise executive summary with recommendations for performance optimization, thermal management, and safety improvement. Thanks.
₹18,000 INR in 3 days
4.6
4.6

Just wanted to clarify one thing before estimating the workflow properly — For the lifecycle + degradation part, are you expecting a full electrochemical aging model (DFN/Newman type) or an equivalent-circuit thermal coupled approach would be enough? Asking because repeated-cycle degradation, thermal runaway prediction and solve times can vary quite a bit depending on the modeling approach. Also do you already have the cell discharge curves / HPPC data and pack config, or should the model be built from public datasets?
₹12,500 INR in 3 days
0.0
0.0

Mumbai, India
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