BAROHAN

Engineering
That Performs

Simulation-driven technology for real-world systems

We design

We simulate

We validate

We deliver

About Barohan

Barohan Technologies partners with engineering-driven organizations to deliver simulation-led design, digital validation, and performance-focused technology solutions. Our work sits at the intersection of physics, software, and real industrial constraints.

Your design.
Our validation.

You've built the design. We run the physics. Barohan takes your engineering concepts through rigorous simulation-led validation — so you can move to production with confidence, not guesswork.

01

You bring the design

A concept, a CAD model, or a performance brief. We meet you where you are and assess the problem space.

02

We validate it

Simulation-driven analysis across structural, thermal, and dynamic domains. We test the physics before you test the hardware.

03

You move forward

Validated outputs, clear engineering reports, and design recommendations — ready for production or further iteration.

Simulation & Digital Validation

Physics-accurate models predicting how your system behaves under real operating conditions — before a single prototype is built.

FEACFDThermal analysisDynamic loads

CAE / FEA Engineering

Deep structural and fatigue analysis for complex assemblies. We identify failure modes, optimize geometry, and reduce weight without compromising integrity.

Structural integrityFatigue & fractureTopology optimization

Product Design & Development

Simulation-informed design from concept to validated prototype. We close the loop between engineering intent and physical performance.

Concept developmentDFMPerformance benchmarking

Best-in-class simulation tools,
delivered by Barohan.

As an authorised reseller of DHIO Research & Engineering for North India, we supply, support, and implement specialist simulation software spanning fluids, structures, manufacturing processes, advanced materials, turbomachinery, and beyond.

Fluid & Thermal Systems

Flownex

1D System CFD

System-level thermo-fluid simulation for predicting flow rates, pressures, temperatures, and heat transfer across complete fluid networks. The only software of its kind to hold nuclear accreditation. Used in aerospace, power generation, HVAC, oil & gas, and nuclear industries.

Steady-state & transientCompressible & incompressibleAnsys co-simulationDigital twin
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Particleworks

Meshless CFD

Particle-based CFD using the Moving Particle Simulation (MPS) method for free-surface flows, oil sloshing, lubrication, and multiphase problems. No mesh generation required — import directly from CAD. GPU-accelerated for large-scale industrial simulation.

MPS / LBM / DEM couplingMulti-GPU accelerationFluid-structure interactionAutomotive & aerospace
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Structural, Fatigue & Fracture

FRANC3D

Fracture Mechanics

Advanced 3D crack growth and fracture mechanics simulation developed at Cornell University. Works alongside ANSYS, Abaqus, and NASTRAN to simulate arbitrary, non-planar crack propagation under complex loading histories — predicting fatigue life with industry-leading accuracy.

3D crack growthStress intensity factorsLCF & HCFAerospace & power generation
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ENDURICA CL

Elastomer Fatigue

The world's first and only commercial solver for elastomer and rubber fatigue life prediction. FE-code neutral — compatible with Abaqus, ANSYS, and MSC/MARC. Uses patented critical plane analysis to precisely predict where and when cracks will initiate under multiaxial, variable amplitude loading.

Rubber & elastomersCritical plane analysisRainflow countingAutomotive & sealing
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Manufacturing Process Simulation

AFDEX

Metal Forming

High-accuracy forging and metal forming simulation for cold and hot forming, extrusion, ring rolling, and sheet metal processes. Fully automated adaptive meshing eliminates manual setup. Widely used in automotive, aerospace, shipbuilding, medical device, and electronics manufacturing.

Forging & extrusionDie design optimisationDefect predictionMulti-stage forming
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Z-CAST Pro

Casting Simulation

End-to-end casting process simulation covering filling, solidification, thermal stress, and heat treatment — for ferrous and non-ferrous materials. Supports Sand, GDC, HPDC, LPDC, Tilt, Centrifugal, and Investment Casting. Mesh capacity exceeding 100 million elements on a single licence.

Flow & solidificationThermal stressHeat treatmentAll foundry processes
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DANTE

Heat Treatment

Illuminates the "black box" of heat treatment through component-level modelling of microstructural phase transformations, hardness evolution, distortion, and residual stress. Enables prediction and control of heat treatment outcomes before costly physical trials.

Phase transformationResidual stressDistortion predictionHardness mapping
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Moldex3D

Injection Moulding

The world-leading CAE solution for plastic injection moulding simulation. Predicts fill behaviour, warpage, weld lines, and cooling performance before tooling is cut. Compatible with ANSYS, Abaqus, Nastran, LS-DYNA, and all major CAD platforms.

Flow & pack analysisWarpage predictionCooling optimisationFibre-reinforced plastics
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Materials & Multiscale Simulation

J-OCTA

Multiscale Materials

Integrated multiscale modelling platform for predicting material properties from the atomistic to the micrometre scale — covering polymers, composites, nanocomposites, energy materials, thin films, and life science applications. Combines molecular dynamics, DFT, coarse-grained models, and FEM on a single platform.

Molecular dynamicsDFT & quantum mechanicsPolymer simulationMaterials informatics
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MULTISCALE.SIM

Composite Analysis

Multiscale analysis system for composite and heterogeneous materials including fibre-reinforced plastics, metal matrix composites, honeycomb structures, filler dispersions, and lattice geometries. Predicts macroscopic behaviour directly from microstructural data — eliminating conventional material testing overhead.

HomogenisationLocalisation analysisFRP & MMCVirtual material testing
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Systems Engineering & Turbomachinery

AxSTREAM

Turbomachinery Design

Comprehensive multidisciplinary platform for design, analysis, and optimisation of turbines, compressors, pumps, and fans — across axial, radial, and mixed-flow configurations. Covers the full workflow from conceptual flow path design through rotor dynamics, bearing analysis, and digital twin development. Trusted by 700+ organisations worldwide.

Flow path designRotor dynamicsThermodynamic cyclesAerospace & energy
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PASS SUITE

Piping & Pressure Vessels

Complete software suite for piping stress analysis, pressure vessel design, and hydraulic network simulation — covering pipe stress sizing (START-PROF), equipment assessment (EQUIP), and full hydraulic network analysis (HYDROSYSTEM). Designed to meet international codes and standards.

Pipe stress analysisPressure vessel designHydraulic networksCode compliance
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Optical & Life Science Simulation

ASAP

Materials Modelling

The industry-standard optical engineering software for non-sequential ray tracing and photonic system analysis. Simulates automotive lighting, imaging systems, luminaires, bio-optic instruments, medical devices, displays, and coherent systems with unmatched accuracy and flexibility. Used in 35 countries worldwide.

Non-sequential ray tracingScattering & diffractionAutomotive lightingBio-optics & medical devices
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PRinS3

Life Science Simulation

Simulation software for life science and biomedical engineering applications, enabling virtual testing and performance prediction of medical devices, biological systems, and pharmaceutical components — reducing dependence on costly and time-consuming physical prototyping.

Biomedical devicesPharmaceuticalBiological systemsVirtual testing
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Rigorous by design

Every engagement follows the same disciplined sequence. No shortcuts — because your engineering can't afford them.

01 Problem scoping We define load cases, boundary conditions, material properties, and success criteria together.
02 Model build & meshing High-fidelity FEA/CFD models built from your geometry with validated material libraries.
03 Simulation runs Linear, nonlinear, transient, modal — whatever the physics demands. Iterative until converged.
04 Results & recommendations Clear engineering reports with failure modes identified, design changes recommended, and validation evidence documented.
10×
Cheaper to fix issues in simulation than in hardware
13
Best-in-class software tools across the full simulation spectrum
3
Core engineering disciplines in one integrated team
0
Production surprises when physics is validated early

Let's work together

[email protected]