Introduction:- In recent years we have seen a rapid increase in the use of computers for engineers in solving the problems. In the same contrast particularly Computational Fluid Dynamics (CFD) is true subject for the problem solving that involves fluid heat transfer and fluid flow which occur in applications related aerospace, power sector and automobile industry. The various factors that are the reasons for the development of CFD are:-
Question: What is CFD?
CFD is a method adopted to obtain a discrete solution of problems related to fluid in a real world. The discrete solution is a solution obtained by a finite collection of space points and the level of discrete time. CFD is physical quality of any fluid – flow that is having three governing fundamental principles:-
In order to continue the understanding of CFD the person must first understand the fluid dynamics and its governing equation.
The Computational Fluid Dynamics equations can be derived in two stages.
The above two stages are used to solve the algebraic equations which is derived from the governing equations.
Steps in CFD Analysis
Study of motion of the fluid with reference of forces and moments is known as fluid dynamics. In fluid flow there different types of forces occurs in the flow like viscous forces, gravitational forces, pressure forces, surface tension forces, eddy forces (turbulent forces) and different type of other forces.
Fluid dynamics is based upon:
In fluid flow velocity is function of space and time, so the acceleration is the function of space and time. Space component is known as convective acceleration and time component is known as local acceleration. During the ANSYS analysis the above acceleration place an important role and help the engineer to make proper aerodynamic design of the vehicle. This is so because the acceleration and velocity component are responsible for lift and drag of the vehicle. Improper design leads to create serious lift of vehicle and this may results in serious accident. In order to avoid this impact in the absence of physical prototype graphically the prototype is designed and is tested through computer itself by the use of ANSYS and employing Computational Fluid Dynamics theory (Padagannavar P., 2000).
Apart from the above concept some terms need to be described which will helps to validate the whole analysis:-
NOTE:- For the steady flow all three lines are identical i.e. all three line coincides.
To create a computational model of the given box in order to do analyse the box showing its behaviour. .
Applications of CFD:-
Analysis Environment:
Mesh Report
Table 1. Mesh Information for FFF |
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Physics Report
Table 2. Domain Physics for FFF |
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Table 3. Boundary Physics for FFF |
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Results:
Pressure Graphics and animation
Advantages of CFD
After the above analysis we have reached a certain platform in understanding of and appreciation for CFD. CFD is the new “third dimension” in fluid dynamics, equally sharing the stage with the other dimension of pure theory and pure experiment.
The major role of CFD is that of research, a tool to enhance our undersytanding of the basic physical nature of fluid dynamics (Jiyuan T., 2018).
References
H., V. & Malalasekra, 2008. An Introduction to Computational Fluid Dynamics The Finite Volume Method. 2nd ed. Noida: Dorling Kinddersley (India) Pvt. Ltd.
J., B., 2007. Computational Fluid Dynamics: Principles and Applications. Waltham: Hayley Gray.
J., C. J. & M, H. M., 2015. Theoretical and Applied Aerodynamics: and Related Numerical Methods. London: Springer Dordrecht Heidelberg.
Jiyuan T., G.-H. Y. L. C., 2018. Computational Fluid Dynamics: A Practical Approach. 3th ed. Kidlington: Katey Birtcher.
N., D. M., 2008. CFD Applications in the Automotive Industry. 22 january, p. 7.
P., N., 2009. Introduction to Computational Fluid Dynamics. Delhi: Dorling Kindersley (India) Pvt. Ltd..
Padagannavar P., B. M., 2000. Automotive computational fluid dynamics simulation of a car using ANSYS. Melbourne: RMIT.
Ravinder, R. P., 2014. THERMAL AND AIR FLOW ANALYSIS OF SHELTER USING CFD. Hyderabad: Chaitanya Bharathi Institute of Technology,Hyderabad.
Zimmerman, W. B., 2000. Process Modelling and. s.l.:World Scientific Publishing co.Pvt. Ltd.
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