Advanced multi-physics CFD solutions
Empowering innovation by delivering high-fidelity computational fluid dynamics (CFD) solutions that solve complex problems in heat transfer, two-phase flow, and particle transport. Through precision modelling, industry-aligned expertise, and data-driven insight, we help our clients optimize performance, accelerate development, and reduce risk across thermal and multiphase engineering systems..
Our Services
Heat transfer in e-motors, power electronics, and bearings
We simulate heat generation and dissipation in electric motors, inverters, and bearings to optimize temperature control and ensure long-term reliability. This includes modeling conduction, convection, and radiation across complex assemblies under dynamic loads and transient duty cycles.
Cooling system design for batteries and enclosures
Battery packs and control electronics require tightly regulated thermal environments. We design and analyze air, liquid, or two-phase cooling strategies, ensuring safety and performance under various ambient and operational conditions through predictive CFD tools and multi-physics coupling.
Flow analysis in ducts, inlets, and rotating machinery
Internal flow paths such as ducts, compressors, or ventilation inlets are optimized for pressure drop, velocity distribution, and uniform cooling. We use transient and steady-state simulations to refine flow geometries for better efficiency and noise reduction.
Conjugate heat transfer (CHT), oil-air interaction, and churning losses
Using multiphase models and conjugate heat transfer analysis, we simulate oil-air flows and rotating system losses. This is critical for understanding thermal behavior in bearings and gearboxes, helping reduce parasitic energy losses and manage lubrication under high-speed conditions.
We deliver high-fidelity CFD simulations for critical components such as electric motors, inverters, battery enclosures, and bearings. By modeling detailed heat transfer and fluid flow—including conduction, convection, radiation, and multiphase interactions—we help clients minimize thermal stress, improve cooling performance, and reduce energy loss. Our analysis of ducts, rotating machinery, and lubrication systems supports design iteration, validation, and efficiency improvements across a wide range of industrial and automotive applications.
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We bridge the gap between simulation and reality by designing test rigs for thermal-fluid validation, calibrating models using experimental or field data, and automating CFD workflows for efficiency. Our team supports experimental campaigns with instrumentation planning and validation frameworks. We also offer simulation training in ANSYS Fluent, enabling clients to build internal capabilities and deploy robust, data-driven engineering solutions with confidence.
About
our company
We are committed to providing innovative engineering solutions that drive technological advancements. Our team leverages years of expertise to deliver high-quality, reliable, and sustainable outcomes for a wide range of industries.