
junfeng wang
project engineer
About
In-depth understanding of fluid dynamics and solid mechanics Excellent understanding of the theory of FEA and CFD Hands-on experience with ANSYS and ABAQUS Hands-on experience with Fluent, CFX and STAR-CCM+ Project experience in designing mechanical systems and components Proficient in AutoCAD, Solidworks} Proficient in C/C++, Matlab and FORTRAN
united states
seattle
mechanical or industrial engineering
matlab, simulations, finite element analysis, cfd, research, solidworks, microsoft office, c++, latex, data analysis, c, autocad, fortran, engineering, computational fluid dynamics, powerpoint, ansys
Experience

graduate research assistant
national center for atmospheric research
* Generated and optimized the unstructured grid in Gambit * Developed a novel and powerful compressible high-order unstructured spectral-difference (CHORUS) solver for simulating thermal convection and related fluid dynamics in spherical shells * Parallelized the CHORUS solver using MPI to achieve excellent scalability up to 12,000 CPU cores * Analyzed and visualized the results in IDL and TECPLOT

research assistant
university of southern california
Developed Finite Element Method (FEM) model and coded a program in MATLAB to solve geometrically nonlinear and materially linear problems using the eight node 3-D hexahedron element. Enhanced the capabilities of the program to solve geometrically linear but materially nonlinear elasto-plastic problems. Verified the results in ABAQUS; Established an incompressible model and developed a Fortran program to numerically determine and analyze a steady flow in a two-dimensional cavity based on time-splitting method and Finite Difference method

research assistant
george washington university
* Developed and implemented moving and deforming grid method to perform high-order accurate CFD simulations of an oscillating-wing wind power generator and designed a novel pitch-plunging motion to increase the efficiency by 32.5%; * Developed a Discontinous Galerkin (DG) solver to simulate a crypto-steady supersonic pressure exchange * Intensive engineering experience in designing & modeling using SOLIDWORKS and FEA/CFD analyses using ABAQUS and ANSYS FLUENT;

project engineer
simerics inc.
The first general purpose computational physics software with a fully adaptive architecture. Simerics solves Computational Fluid Dynamics (CFD) problems with advanced multi-physics modules including: fluid flow, turbulence, cavitation, heat transfer, species mixing/reaction, for a wide range of applications.PumpLinx® is a 3D simulation software tool, uniquely suited for the analysis and design of pumps, motors, compressors, propellers, valves, hydraulic systems and other fluid devices with rotating or sliding components. PumpLinx® can be used to improve efficiency, minimize cavitation, control pressure ripple, and reduce noise. PumpLinx®, based on the Simerics general-purpose CFD simulation software, enables the engineer to create a virtual test article and generate flow visualization and engineering output as accurate as a full scale hardware test at a fraction of the time and cost. The code is continually being developed to add new capability for modeling a wide range of equipment. Please call or contact Simerics for a demonstration of the new release.
Education
huazhong university of science and technology
mechanical engineering
university of southern california
mechanical engineering
the george washington university
philosophy
junfeng wang's Contact Information
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