Ashruf Syed

Mechanical Engineer II - Predictive Modeling And Simulations Group

Chennai, Tamil Nadu, India
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Summary

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Senior
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Top School
Ashruf Syed is a Mechanical Engineer II in the Predictive Modeling and Simulations Group at Johnson Controls with a decade of experience bridging academic research and industry applications in fluid mechanics, turbulence, and combustion. Currently completing doctoral work at IIT Madras after earning both B.Tech and advanced degrees there, he blends deep theoretical knowledge with hands-on simulation and predictive modeling skills. His background suggests strong capability in translating complex CFD and turbulence research into practical solutions for industrial systems. Based in Chennai, he brings a researcher’s rigor to engineering problems, often favoring data-driven modeling and simulation validation. An under-the-radar strength is his sustained commitment to long-form academic inquiry alongside applied engineering—positioning him to tackle both foundational questions and delivery-focused challenges.
code10 years of coding experience
bookIndian Institute of Technology Madras
bookIntermediate, Mathematics, Physics & Chemistry, Intermediate, Mathematics, Physics & Chemistry at Narayana Junior College, Kadapa
bookSSC, SSC at Sai Baba English Medium High School, Kadapa
bookSt. Joseph's English Medium High School, Kadapa
languagesUrdu, Telugu, Hindi, English, French, Arabic
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Github Skills (1)

latex1

Github contributions (4)

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ashrufsyed/iitm_thesis

Jan 2020 - Sep 2021

Contributions:59 commits, 49 pushes, 36 branches in 1 year 8 months
ashrufsyed/fireFoam-dev-1

Aug 2020 - Aug 2020

FireFOAM is a CFD code for modeling fire suppression based on the OpenFOAM-dev version of OpenFOAM (R) http://www.openfoam.org. OpenFOAM (R) is a general purpose open source CFD toolbox written in C++. It utilizes the finite volume method on arbitrarily unstructured meshes, and is highly scalable on massively parallel computers. For more information about OpenFOAM, please refer to http://www.openfoam.org. For more information about FireFOAM and research related to fire modeling at FM Global, please see the FM Global Fire Modeling website (http://www.fmglobal.com/modeling) and the Open CFD fire modeling website. (http://sites.google.com/site/firemodelingworkshop). FM Global is releasing this development version code WITHOUT ANY WARRANTY. No support will be provided. Disclaimer: By visiting this Web site, you fully acknowledge acceptance of GitHub's Terms of Use and agree that use of this Web site is at your sole risk and that the content and services are provided “as is” and “as available.” FM Global does not own, endorse or assume responsibility for any content posted on this Web site.
Contributions:1 push in 1 day
finite-volumeweb-siteriskcomputersrefer
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Ashruf Syed - Mechanical Engineer II - Predictive Modeling And Simulations Group