Improve the efficiency of the triangle tube heat exchanger by optimizing the hydrogen level as a working fluid.
Budget: $750 – $1,500 USD
Project Title
Improve the efficiency of the rectangular tube heat exchanger by optimizing the hydrogen level as a working fluid.
Project Description
3D geometry of the triangle tube heat exchanger will be designed using CFD simulation by optimizing the hydrogen level as a working fluid to improve the efficiency of the heat exchanger. The heat transfer rate, the heat transfer coefficient, efficiency and Rynold’s number will be calculated based on the hydrogen level and investigate the effect of fluid flow and geometrical parameters on the heat transfer rate.
This study requires analysis using ANSYS software, while the candidate is required to be knowledgeable in two courses (Heat Transfer and FEM) to be able to complete the project requirements.
WP2 - The project involves wide-ranging or conflicting technical, engineering and other issues, WP4 - The project involves infrequently encountered issuees
Objectives:
To design a triangle tube model of the heat exchanger using SolidWorks.
To optimize the hydrogen level based on the heat transfer rate, the heat transfer coefficient, efficiency and Rynold’s number of the heat exchanger using CFD simulation.
To compare the heat exchanger parameters of the new optimization level helical tube with the existing study.
Improve the efficiency of the rectangular tube heat exchanger by optimizing the hydrogen level as a working fluid.
Project Description
3D geometry of the triangle tube heat exchanger will be designed using CFD simulation by optimizing the hydrogen level as a working fluid to improve the efficiency of the heat exchanger. The heat transfer rate, the heat transfer coefficient, efficiency and Rynold’s number will be calculated based on the hydrogen level and investigate the effect of fluid flow and geometrical parameters on the heat transfer rate.
This study requires analysis using ANSYS software, while the candidate is required to be knowledgeable in two courses (Heat Transfer and FEM) to be able to complete the project requirements.
WP2 - The project involves wide-ranging or conflicting technical, engineering and other issues, WP4 - The project involves infrequently encountered issuees
Objectives:
To design a triangle tube model of the heat exchanger using SolidWorks.
To optimize the hydrogen level based on the heat transfer rate, the heat transfer coefficient, efficiency and Rynold’s number of the heat exchanger using CFD simulation.
To compare the heat exchanger parameters of the new optimization level helical tube with the existing study.
Related categories:
Mechanical Engineering
Finite Element Analysis
Thermal Analysis
Computational Fluid Dynamics
Ansys