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Computation Fluid Dynamics - CFD

Aerodynamic Analysis
Airflow Optimization
VOF-MultiPhase Analysis
Thermal Managment
Computation Fluid Dynamics - CFD

Finite Element Analysis - FEA

Fatigue & Durability Testing
Fluid-Structure Interaction
Structural Analysis
Stress Analysis
Finite Element Analysis - FEA

Computation Fluid Dynamics-CAD

3D Product Design
Reverse Engineering
Mechanical Part Design
Sheet Metal Design
Computation Fluid Dynamics-CAD
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Premium engineering expertise delivering unmatched value for every client

Computational Fluid Dynamics (CFD)
2D/3D Modeling & Rendering (CAD)
Finite Element Analysis (FEA)
Our More Services
Computational Airflow Analysis for Optimized Design Efficiency
Case StudiesCase Studies

Detailing of our products

FEA Analysis to Enhancing Stiffness and Fatigue Life of Rubber-to-Metal Bonded Parts

FEA Analysis to Enhancing Stiffness and Fatigue Life of Rubber-to-Metal Bonded Parts

Bony Polymers, a trusted manufacturer of precision rubber-to-metal bonded parts in India, approached us to improve the performance of a critical side bumper assembly. The goal was to increase the component’s static stiffness to 0.7 kN/mm for a displacement range of 5–10 mm, while also ensuring that the part could reliably withstand at least 600,000 load cycles.

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FEA Analysis to Enhancing Stiffness and Fatigue Life of Rubber-to-Metal Bonded Parts
CFD Analysis and Airflow Optimization for Industrial Dehydrator System

CFD Analysis and Airflow Optimization for Industrial Dehydrator System

Commercial Dehydrators America approached us to investigate a critical airflow issue within their industrial dehydrator system. The dehydrator, consisting of 50 stacked drying trays, was experiencing non-uniform airflow at a design speed of 1 meter per second. Despite a seemingly adequate system layout, the airflow was disturbed, non-laminar, and inconsistent

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CFD Analysis and Airflow Optimization for Industrial Dehydrator System
Design Optimizing and CFD Analysis for Radial Vortex Flow Controls Device (VFC)

Design Optimizing and CFD Analysis for Radial Vortex Flow Controls Device (VFC)

SuDS Enviro Ltd engaged us to design and simulate a set of Radial Vortex Flow Control (VFC) devices that control stormwater flows using a purely hydraulic mechanism—without moving parts, power, or complex control systems. These devices needed to manage both low and high flow conditions, enabling unrestricted flow at low volumes and inducing vortex-driven throttling during peak flows.

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Design Optimizing and CFD Analysis for Radial Vortex Flow Controls Device (VFC)
CFD Design optimization to achieve self-sustaining combustion in a micro gas turbine

CFD Design optimization to achieve self-sustaining combustion in a micro gas turbine

This project focused on a micro gas turbine engine designed to generate 50 kg of thrust. While the hardware was successfully assembled and could be spun up to 13,500 RPM using an external starter motor, the engine consistently failed to sustain combustion once the starter was disengaged. The RPM would quickly fall to 6,500 and then the engine would shut down entirely, clearly indicating a failure in transitioning to self-sustained combustion.

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CFD Design optimization to achieve self-sustaining combustion in a micro gas turbine
Client Reviews Background
TestimonialsTestimonials

What Our Clients Says

Verify our reviews

I worked with Muhammad on a classic acoustic topic, trying to develop one project related to my bussiness. He rewied my work, that we shared, improved it, fixed bugs and errors and clearly explained his work. I apreciated the clarity of the workflow proposed and its implementation. He was available and present in spite of our time offset. Also, it was my first time

Serrena Allen

Serrena Allen

It was an absolute pleasure to work with Muhammad! He had excellent communication throughout the process, ensuring everything was clear and addressing any questions quickly. His understanding and flexibility made working together very easy. The work was delivered earlier than expected and of high quality. Would definitely recommend.

Elliot Tucker

Elliot Tucker

Solvo Engineers did an excellent job on our CFD project for airflow optimization in a dust catcher device. They carefully analyzed the design, improved efficiency by addressing critical flow issues, and clearly explained every step of their process. Their expertise and responsiveness made collaboration very smooth and effective.

Patrick M.

Patrick M.
Solvo’s Premium WorkflowSolvo’s Premium Workflow

Our Customer Simulation Process

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Step 1
Consultation
Requirements Specification
Step 3
Resource Allocation
Simulation Roadmap
Step 7
CAD & Mesh
Pre & Post Processing
Step 8
Verification Protocals
Validation Testing
Step 5
Comprehensive Reporting
Final Delivery
Step 6
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