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Excellent background in thermal and fluid science, statistical mechanics, numerical analysis, and computational methods including Computational Fluid Dynamics (CFD) and Finite Element Analysis (FEA). Five years’ fluid research experience using computer modeling and simulation.Strong project management skills; completed three NSF (National Science Foundation) projects. Programming skills include C, Fortran, and MATLAB®. Use ANSYS, Fluent, COMSOL, SolidWorks, AutoCAD, OpenFOAM, and Moose.Class Projects / Tools– Used ANSYS-Fluent to analyze pressure loss of shell and tube heat exchanger, flow field, noise of injection jet, and noise level of wind turbine.– Set up, modeled, and analyzed highway traffic using mathematic modeling methodology.– Designed parts, selected materials, assigned manufacture procedure and drafted mechanical drawing for various machine and electronic elements such as gear, hammer, and radio receiver.– Developed multiple CFD, FEA, and MD codes by C language to analyze structure response and flow field.Analytical Skills / ToolsProficient with the following open source and commercial packages– ANSYS, Fluent: modeled and analyzed heat exchanger, wind turbine, injection jet, etc. – SolidWorks: – Matlab: analyzed, processed and presented data, pre-exam computation scheme.– Microsoft Office Suite: Word, Excel, PowerPoint, Outlook.» Potential titles: application engineer, computational research engineer, design engineer, design maintenance engineer, electrochemical engineer, equipment engineer, fluid dynamics engineer, HVAC mechanical design engineer, mechanical design engineer, mechanical engineer, process engineer, product designer, product development engineer, product engineer, project engineer, test engineer, thermodynamics engineer.georgewu8@hotmail.com864-986-2424
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LecturerHuazhong University Of Science And Technology Jun 2016 - Nov 2021Wuhan, Hubei, China -
Research AssistantClemson University Aug 2009 - Aug 2014Clemson, South Carolina– Worked in the Transport Phenomena Laboratory of Advanced Technology.– Research ways to improve energy storage density supercapacitors (SC). They are a promising candidate for the next generation electrical energy storage (instead of batteries).– Conducted computational modeling on energy storage mechanism of electrochemical capacitors (EC) by molecular dynamics (MD) simulation. Analysis led to a model that rationalized the discovery. Benchmarked electrode material selections, and laid… Show more – Worked in the Transport Phenomena Laboratory of Advanced Technology.– Research ways to improve energy storage density supercapacitors (SC). They are a promising candidate for the next generation electrical energy storage (instead of batteries).– Conducted computational modeling on energy storage mechanism of electrochemical capacitors (EC) by molecular dynamics (MD) simulation. Analysis led to a model that rationalized the discovery. Benchmarked electrode material selections, and laid a solid theoretical ground for future engineering (for details see Publication #1).– Optimized the stored energy density by operational condition. Work showed the stored energy can be enhanced four times by varying operation conditions. Developed a design methodology that included design parameters, operational conditions, and material selection for optimized design of energy storage (see Publication #2). Show less -
Visiting Scholar, ChemistryImperial College London Apr 2014 - May 2014London, United Kingdom– The Department of Chemistry at Imperial College is a world-famous institute in aspects of theoretical research on energy storage and nano-materials. Our group excelled at computation modeling and we were invited to perform simulations and validate their theories on the charging of supercapacitors.– Modeled, investigated, and analyzed the charging process of energy storage. First, simulation data supported charging theory. Second, from the analysis of the simulation, found an unexpected 10… Show more – The Department of Chemistry at Imperial College is a world-famous institute in aspects of theoretical research on energy storage and nano-materials. Our group excelled at computation modeling and we were invited to perform simulations and validate their theories on the charging of supercapacitors.– Modeled, investigated, and analyzed the charging process of energy storage. First, simulation data supported charging theory. Second, from the analysis of the simulation, found an unexpected 10 times electrolyte diffusion variation (see Publication #3). Show less -
Research InternOak Ridge National Laboratory Jun 2012 - Aug 2012Oak Ridge, Tennessee– Collaborated with the researchers at ORNL to investigate the thermodynamic properties of SCs; led research on the effect of added solvents into electrolytes to improve the performance of SCs. -
Mechanical Designer – InternShenyang Blower Works Group Corporation May 2008 - Aug 2008Shenyang, Liaoning, China– Assisted the Senior Designer in engineering drafting. Converted parts drawings from ProE to SolidWorks. Verified critical dimensions and material specifications against industry standards.– Became familiar with materials forming processes such as forging, tooling, and quenching. Operated CNC (Computer Numerical Control) lathe and milling machines.
Peng Wu Skills
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Frequently Asked Questions about Peng Wu
What is Peng Wu's role at the current company?
Peng Wu's current role is 讲师.
What is Peng Wu's email address?
Peng Wu's email address is pw****@****son.edu
What is Peng Wu's direct phone number?
Peng Wu's direct phone number is +186465*****
What schools did Peng Wu attend?
Peng Wu attended Clemson University, Huazhong University Of Science And Technology.
What are some of Peng Wu's interests?
Peng Wu has interest in Science And Technology, Children, Environment.
What skills is Peng Wu known for?
Peng Wu has skills like Comsol, Matlab, Experimentation, Simulations, Fluid Mechanics, Numerical Analysis, Heat Transfer, Cfd, Simulink, C, Latex, Finite Element Analysis.
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