The following projects are based on fvm. This list shows the latest innovative projects which can be built by students to develop hands-on experience in areas related to/ using fvm.
Analytical solutions give exact solutions that can be used to study the behavior of the system with varying properties. Unfortunately, very few practical systems lead to analytical solutions, and again the use of analytical solutions is of limited use because of its difficulty. That’s why we use a numerical approach to make a close answer to practical result with ease and convenience. Recently there is a lot of research going on in this field. Doing a project in this field will give you an advantage over others. In this project, you are going to write your own code to solve a one-dimensional nozzle problem using numerical approach and you have to find out the properties of fluid flowing through the nozzle along its length.
Solving differential equations are always been challenging for engineers. This is because there is a lot of variants to differential equations and also the complexity of these equations varies with respect to a number of variables involved and order of the equation. A differential equation which describes a physical problem is very complex and cannot be solved by an analytical approach. So, studying numerical methods is important for an engineer. In this project, you will learn the Finite Difference Method (Numerical Method) by solving a Linear Convection equation.
Finite Volume Method is one of the popular numerical methods used by engineers, mathematicians around the world for solving complex differential equations. This is because it has the characteristics to produce accurate and stable solutions. So, studying the finite volume method is important for an engineer. In this project, you will learn how the Finite Volume Method (Numerical Method) is implemented to solve the differential equation by solving a fluid flow problem using Burger equation.
It is expensive to use physical experiments to get essential engineering data for designing is quite expensive. Getting engineering data of a fluid in motion, using Computational Fluid Dynamics (CFD) Simulations are relatively inexpensive. Costs are likely to be decreased as computational power has increased. So, using numerical methods to solve various flow problems is effective. In this project, you are going to solve a one-dimensional problem of interacting blast waves using the Finite Volume Method (FVM).
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