Introduction
As a current student at KHN Royal Institute of Technology & TU Delft, presently doing Engineering Mechanics, Fluid Mechanics Track, I have always had a passion for knowing more about fluid flow and doing a few experiments in the field. The comprehension of liquid flow has turned into an essential area of research given its significance in numerous human exercises. The investigation of fluid flow is common in multiple fields, for example, material science, science, medicine, natural sciences, vitality, barometrical stream process that impacts that climate and the atmosphere, et cetera. Numerous mechanical procedures are governed by the conditions of liquid flow thus its examination is essential. Numerical recreations of fluid flow are diminishing the value of extremely costly trial tests. Dynamic liquid elements are additionally vital in understanding physical procedures at all scales (Klapp & Medina, 2014). Something else that spurs me into concentrate this field is on account of liquid mechanics is a standout amongst the most significant territories of fruitful utilization of arithmetic. It can be considered as one of the branches of connected science. Albeit smooth movement is concerned in the two gas and fluids, as the two are liquids, I manage the flow of fluids when all is said in done, and water specifically (Rahman, 2010). The hypothesis of liquid mechanics has developed so extensively as of late that investigation of the mechanics of liquid is imperative in various parts of our good living (Matiur Rahman).I want to pursue my Ph.D. studies at KHN Royal Institute of Technology & TU Delft, due to its high reputation in research. My academic interest is studying Control of Shock Wave Boundary Layer Interactions. I know the processes undergone during the experimental of the Control of Shock Wave Boundary Layer Interactions. In numerous applications, the shock waves instigate separation and result in substantial precarious impacts. In these two settings, it is proposed to utilize vortices created by the rod for the connection control (International Symposium on Shock Waves et al., 2017). This streamwise vortices generation method is useful because it allows applying a simple process of switching it on and off. Such a vortex generator can be built in MEMS technology, and the application in the external flows seems to be much more comfortable than the fluidic jests which need tubes for the air supply (Gabi Ben-Dor, Oren Sadot, and Over Igra).
Despite all that knowledge in the liquid flow, I have had educational experiences that are related to this course I am applying to pursue. I have been a student at Jilin University, studying Thermal Energy and Power Engineering. I am also currently doing Engineering Mechanics, Fluid Mechanics Track, and they all are related to fluid flow. More so, I have experiences that are associated with this field. I have done research on Project of Wave Motion and Hydrodynamic Stability, investigated Tollmien, which involves switching waves in a boundary layer flow over a NACA008. I have also researched on Project of Wind Energy Aerodynamics, as well as a CDF project with Flow Control using Fluent, among many other investigations.Conclusion
Upon completing my Ph.D. degree, there are many objectives I want to pursue. But before that, I know that I have to gain all the skills and knowledge necessary to pursue my dream career. I do believe that I am an intelligent student, with a passion for Engineering, who is always willing to learn new things, flexible, hardworking and a cooperative student. If given a chance to pursue my Ph.D., I assure you that I will make you proud.
References
International Symposium on Shock Waves, Ben-Dor, G., Sadot, O., Igra, O., International Symposium on Shock Waves, & ISSW. (2017). 30th International Symposium on Shock Waves:: ISSW30. Cham: Springer.
In Klapp, J., & In Medina, A. (2014). Experimental and computational fluid mechanics.
Rahman, M. (2010). Mechanics of real fluids. Southampton: WIT.
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