Shwetank Verma

Shwetank Verma

Cell Design Engineer @ BASQUEVOLT

About

Battery engineer with a strong background in cell modeling and degradation analysis, currently focused on the scale-up of lithium metal battery technology at Basquevolt. I specialize in bridging the gap between the material development (R&D) team and key stakeholders including production, engineering, and customers—ensuring that scientific innovation is effectively translated into scalable, high-performance cell designs. My role spans technical coordination, specification management, and cross-functional leadership to support the transition from lab-scale research to commercial-scale manufacturing. Before this, I was working on modelling lithium ion cells. I have experience using various lithium-ion battery models such as DFN (Doyle-Fuller-Newman), P2D (Pseudo 2D), and SPM. (Single Particle Model). Additionally, I have experience in creating models for simulating battery abuse and developing 3D thermal runaway and propagation simulation models with gas generation for lithium-ion cells. I have also extensively worked on modeling thermal performance of lithium-ion batteries and creating thermal management solutions for various automotive platforms. I am proficient in using tools such as COMSOL Multiphysics, Star CCM+, and Ansys, as well as programming languages such as Python, Julia, and Matlab.

Country

-

City

Spain

Industry

Automotive

Skill

Chemistry, Python (Programming Language), Lithium-ion Batteries, COMSOL, Star-CCM+, Machine Learning, Julia (Programming Language), Computer-Aided Design (CAD), Automotive, Finite Element Analysis (FEA), ANSYS, Autodesk Inventor, Product Development, MATLAB, 3D Printing, Simulink, Teamwork, Leadership, Thermal Management, Electric Cars

Experience

BASQUEVOLT

Cell Design Engineer

BASQUEVOLT

LinkedIn
2024-3 - Present · 2 yrs 7 mos

Vitoria-Gasteiz, Basque Country, Spain

- Contributed to the scale-up of Basquevolt’s lithium metal battery technology from coin cell prototypes to large-format cells, advancing commercialization readiness. - Acted as a strategic liaison between R&D, production teams, and key customers to align technical development with operational and market requirements. - Owned and maintained core cell performance specifications, including volumetric and gravimetric energy density metrics, ensuring data accuracy and consistency across product iterations. - Led a cross-functional team of R&D scientists and production engineers to investigate the influence of mechanical pressure on battery cell performance, driving insights for process optimization.

BASQUEVOLT

Thermal Modelling Engineer

BASQUEVOLT

LinkedIn
2023-5 - 2024-3 · 11 mos

Vitoria-Gasteiz, Basque Country, Spain

- Built Phase-field models to study dendrite formation in Li-metal batteries in COMSOL Multiphysics. - Developed standalone Python-based application to analyse cycling data for R&D team. - Developed P2D model for Lithium Metal batteries in COMSOL Multiphysics. - Worked on developing Formation-profiles for our semi-solid Li-metal batteries.

oorja

Lead Developer: Capacity fade

oorja

LinkedIn
2022-5 - 2023-2 · 10 mos

Bengaluru, Karnataka, India

- Lead the development of capacity prediction software for lithium-ion cells with SEI, LAM, particle cracking, and Lithium plating degradation models and parameter estimation techniques in Julia and Python. - Responsible for deployment of the capacity prediction software on the cloud as well as assisting clients with their capacity fade issues.

Micelio

Engineer - Thermals and CFD simulation

Micelio

LinkedIn
2020-12 - 2022-4 · 1 yr 5 mos

Bengaluru, Karnataka, India

- Implemented DFN model with stress-coupled diffusion to simulate very high C-rates in Comsol multiphysics. - Developed capacity prediction program for lithium-ion cells using Pybamm and parameter estimation techniques in Python. - Developed thermal runaway propagation simulations with gas generation using Arrhenius-based differential equations in Comsol multiphysics - Worked on parameter estimation of the SPM model using global optimization methods. - Developed LSTM Neural network-based cell capacity prediction model and used k-fold cross-validation for hyperparameter tuning. - Worked on thermal analysis and simulation of 21700 lithium-ion cell-based battery packs for two-wheelers using Star CCM+. - Worked on Thermal and electrical simulation of busbars using Star CCM+ and Comsol multiphysics.

Grinntech

Thermal design engineer

Grinntech

LinkedIn
2019-9 - 2020-11 · 1 yr 3 mos

Chennai Area, India

- Developed SEI and Lithium plating-based cycle life and performance prediction model in Julia programming language. - Worked on simulating batteries in Battery Design Studio with deep knowledge of battery chemistry - Worked on parameter sensitivity analysis of SPM model w.r.t voltage response using Julia. -Thermal analysis and simulation of 21700 lithium-ion cell-based battery packs for two-wheelers using ANSYS steady-state thermal. -Conceptualised various thermal management strategies for two-wheeler battery packs based on simulation results. -Used Solidworks for various 3D design projects such as pipe routing for actively cooled 22.2 kWh Tractor battery pack. - Analysed PCB heat load with a focus on MOSFET heating in ANSYS Icepak.

Criollo Automobiles

Mechanical Design Engineer

Criollo Automobiles

2018-9 - 2019-7 · 11 mos

Delhi

Worked on designing liquid-cooled Li-ion battery packs for electric vehicles which involves: - Conceptualising different thermal management strategies for battery packs based upon thermal behavior of lithium-ion battery chemistry. - Conceptualising different structural support systems for battery packs - Using Autodesk Inventor to 3D model the systems - Using Ansys Fluent to test the active liquid-based cooling system - Using Ansys Static Structural, Ansys Explicit Dynamics, and Ansys Random Vibration to analyses various structural failure modes. - Optimizing mechanical designs for size, weight, durability, and cost. - Reviewing and modifying the battery packs for homologation based on ARAI's standards such as AIS 038, AIS 048, and other Indian and international standards. - Using manufacturing techniques such as 3D printing, laser cutting, CNC milling, TIG welding, etc. to build the prototype. Note: This company doesn't exist anymore. But it was registered under startup India: https://www.startupindia.gov.in/content/sih/en/profile.Startup.5947da16e4b08c3959326e49.html

Criollo Automobiles

Mechanical Engineering Intern

Criollo Automobiles

2018-6 - 2018-8 · 3 mos

New Delhi Area, India

Education

Motilal Nehru National Institute Of Technology

Motilal Nehru National Institute Of Technology

LinkedIn

Mechanical Engineering

2014 - 2018 · 4 yrs

Worked for SAE Supra team 2015 Worked as editor at Srijan- Official magazine of MNNIT Allahabad

Shwetank Verma's Contact Information

Email

******@***.com

Phone

(**) *** ****

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