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Old   September 21, 2016, 21:18
Default Flow, thermal, electrical, shape optimization
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Evan Yares
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Looking for a consultant to work with us on developing a simulation process for electrochemical machining.

This is a multiphysics problem, involving 3D multi-phase flow, thermal and electrical fields, and mesh shape optimization. The physics/math are well defined, and good results can be achieved with minimal coupling. It may even be possible to initially use uncoupled electromagnetic and CFD solvers, to get useful approximations.

Our goal is to develop a repeatable simulation process, for the optimization of process parameters and electrode geometry. While it would be possible to build this on commercial codes (COMSOL, ANSYS and CD-Adapco are capable enough), our preference would be to take an open source approach, both for cost and for adaptability. Elmer, OpenFoam, FEATool, CalculiX, and SU2 are all practical options.
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Old   September 30, 2016, 06:59
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Prakhar Agarwal
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You can contact me at ruzivo.tech@gmail.com so that we can disucss this further. My preferred choice of software would be OpenFOAM, but I am also open to other software.
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Old   October 21, 2016, 11:19
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Adarsh Tiwari
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Hi Evan,

Greetings from Workshopwale Team!!

In this project we can help you with OpenFOAM. Please send more details to adarsh@workshopwale.com.
We have a proven track record of completing the projects well within deadlines in all our businesses including CAD, CFD, CAE, web-design, digital Marketing and Special Purpose Machines.

You can see our profile at: http://workshopwale.com/
Awaiting a quick response from your end.
Regards,
Workshopwale Team!!
KBAT Technologies

Quote:
Originally Posted by evanyares View Post
Looking for a consultant to work with us on developing a simulation process for electrochemical machining.

This is a multiphysics problem, involving 3D multi-phase flow, thermal and electrical fields, and mesh shape optimization. The physics/math are well defined, and good results can be achieved with minimal coupling. It may even be possible to initially use uncoupled electromagnetic and CFD solvers, to get useful approximations.

Our goal is to develop a repeatable simulation process, for the optimization of process parameters and electrode geometry. While it would be possible to build this on commercial codes (COMSOL, ANSYS and CD-Adapco are capable enough), our preference would be to take an open source approach, both for cost and for adaptability. Elmer, OpenFoam, FEATool, CalculiX, and SU2 are all practical options.
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