I would like to ask for your help in simulating the processes in a circulating fluidized bed boiler in the ANSYS Fluent. I want to personally do the work in order to understand the principles. Your help is a consultation for me. You provide me with a PDF tutorial file that describes "click here, type in the value here", for example.
The task is as follows: to take a high-rating journal initial article related to the topic of modeling of boilers with a circulating fluidized bed. Then repeat it and get the same result. This will be stage 1 (Fluent ANSYS Fluent).
Then proceed to stage 2 (main stage).
Task: to check how the composition of the fuel affects the emissions of nitrogen oxides. It will be necessary to take two different fuels (coal №1 and coal №2) and using the Euler-Lagrange method to obtain contour distribution graphs (temperature, velocity, pressure and components - nitrogen oxides, carbon dioxide).
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Hello I'm Mohamed Saeed mechanical engineer with high experience in ANSYS. I have checked your job description and I'm ready to help you in your project
Hi. Thank you for your post. I understand your work requirements precisely. I'm holding the mouse now and it starts when the assignment is bided. I am an expert with 10+ years experience of Hand-drawn style illustr Daha Fazla
Hi. Linpo36. I am a professional in CFD. I had worked with you for CFB boiler. I have many experiences in CFD CFB simulation. We can discuss details via chat. I wait for you now. Thanks.
I am mechanical [login to view URL] is enough. I have had experiences: -Solidworks -Autodesk Inventor -Autocad Mechanical -Solidcam -Catia -ANSYS -Comsol
Hello I'm karan. I have done a lot of similar work and deem myself able to complete your work with best quality and in least [login to view URL] see my sample work, please send me a message. Thanks.
would you be interested in using openfoam instead of fluent, openfoam is industrial grade opensource and could help you to reduce your license cost. If you are interested I would be very happy to work with you