Hansong Tang
Professor
Building
Steinman Hall
Office
127
Phone
212-650-8006
Fax
212- 650-6965
Website

Hansong Tang
Profile
Education
- Ph.D., 2001, Environmental Fluid Mechanics, Georgia Inst. Tech.
- D.Sc., 1993, Computational Mathematics, Peking Univ.
- BS 1983, Mechanical/Electric Eng.; MS 1986, Computational Hydrodynamics, Wuhan Univ. of Hydraulic and Electrical Eng.
Courses Taught
Data analysis (CE264)
Fluid mechanics (CE350)
Numerical method and simulation in fluid (CEG9700)
Modeling of surface water quality (CEG7300)
Environmental water resource (CE451)
Analytical methods (H1000)
Research Interests
Environmental Fluid mechanics. Computational physics. Numerical algorithms
Publications
- Z. M. Chen, X. H. Xia, H. S. Tang, S. C. Li, and Y. Deng. 鈥淓mergy based ecological assessment of constructed wetland for municipal wastewater treatment: methodology and application to the Beijing Wetland鈥. Journal of Environmental Informatics. 2010, in press.
- L. Zeng, G. Q. Chen, H. S. Tang, and Z. Wu, 鈥淓nvironmental dispersion in wetland flow鈥, Comm. Non-linear Sciences & Numerical Simulations, 2010, in press.
- H. S. Tang, T. R. Keen, and Khanbilvardi, 鈥淎 model-coupling framework for nearshore waves, currents, sediment transport, and seabed morphology鈥, Comm. Non-linear Sciences & Numerical Simulations, 14(2009), 2935-2947.
- H. S. Tang and T. R. Keen, 鈥淎nalytical model for temperature response of channel flows with time-dependent thermal discharge and boundary heating鈥, ASCE J. Hydr. Eng,, 135(2009), 327-339.
- H. S. Tang, J. Paik, F. Sotiropoulos, and T. Khangaokar. 鈥淭hree-dimensional CFD modeling of thermal discharge from multports鈥, ASCE J. Hydr. Eng,, 134(2008), 1210-1224.
- H. S. Tang and D. M. Kalyon, 鈥淒evelopment of flow instabilities during Tube flow of Concentrated Suspensions with non-colloidal Particles鈥, J. Rheology, 52(2008), 1069-1090.
- H. S. Tang and D. M. Kalyon, 鈥淯nsteady circular tube flow of compressible polymetric liquids subject to pressure-dependent wall slip鈥, J. Rheology, 52(2008), 507-525. J. Rheology, 52(2008), 1069-1090.
- H. S. Tang and F. Sotiropoulos, 鈥淔ractional step artificial compressibility method for Navier-Stokes equations鈥, Computers & Fluids. 36, 2007, 974-986.
- D. M. Kalyon and H. S. Tang, 鈥淚nverse problem solution of squeeze flow for parameters of generalized Newtonian fluid and wall slip鈥, J. Non-Newtonian Fluid Mech., 143, 2007, 133-140
- H. S. Tang, 鈥淪tudy on a grid interface algorithm for solutions of incompressible Navier-Stokes equations鈥, Computers & Fluids. 35, 2006, 1372-1383.
- D. M. Kalyon, H. S. Tang, and B. Karuv, 鈥淪queeze flow rheometry for rheological characterization of energetic formulations鈥, J. Energetic Materials, 24, 2006, 215-222
- Z. K. Zhang, H. S. Tang, 鈥淣umerical simulation of vortex flow over delta wing with trailing edge jet at high angle of attack鈥, Int. J. Numer. Meth. Eng., 59, 2004, 2047-2063
- H. S. Tang and D. M. Kalyon, 鈥淓stimation of parameter of Hershel-Bulkley fluid subject to wall slip by combination of squeeze and capillary flow viscometers鈥, Rheol. Acta, 2004, 43, 80-88
- H. S. Tang, C. Jones, and F. Sotiropoulos, 鈥淎n overset grid method for 3D unsteady incompressible flows鈥, J. Comput. Phys., 191, 2003, 567-600
- Z. K. Zhang, H. S. Tang, and J. B. Jia, 鈥淣umerical investigation of trailing edge jet effects on flows around delta wing using Navier-Stokes equations, ACTA Aerodynamics Sinica, 18,2000, 484-489
- H. S. Tang and T. Zhou, 鈥淥n nonconservative algorithms for grid interfaces鈥, SIAM J. Numer. Anal., 37, 1999, 173-193
- H. S. Tang and F. Sotiropoulos, 鈥淎 second-order Godunov method for wave problems in coupled solid-water-gas systems鈥, J. Comput. Phys., 1999, 151, p790-815
- H. S. Tang, 鈥淎 second-order Godunov scheme for wave and fracture problems in hydro-elesto-plastic body鈥, Math Numerica Sinica, 21, 1999, 225-236
- H. S. Tang, D. L. Zhang, and C. H. Lee, 鈥淢onotonicity preserving CIP schemes for convection equations鈥, J. Hydrodynamics, ser. A, 12, 1997, 181-187
- H. S. Tang, D. L. Zhang, and C. H. Lee, 鈥淎nalysis and modification on CIP method for hyperbolic equations鈥, Comput. Fluid Dyn. J., 6, 1997, 227-236
- H. S. Tang, 鈥淣umerical prediction of cavitation phenomenon in water shock tube鈥, J. Hydrodynamics, ser. A, 12, 1997, 175-180
- H. S. Tang and D. Huang, 鈥淎 second-order accurate capturing scheme for 1D inviscid flows of gas and water with vacuum zones鈥, J. Comput. Phys, 128, 1996, 301-318
- H. S. Tang and C. H. Lee, 鈥淥n consistency of conservative algorithms for internal interfaces in calculations of inviscid flows by zonal method鈥, Chin. J. Comput. Phys., 13, 1996, p445-453
- H. S. Tang, D. L. Zhang, and C. H. Lee, 鈥淐omments on algorithms for grid interfaces in simulating Euler flows鈥, Comm. Nonlinear Science and Numerical Simulation, 1, 1996, 50-54
- X. S. Xu and H. S. Tang, 鈥淎 general solution for the Stokes flows around axis-symmetrical body鈥, Transaction of Changsha Comm. Inst., 9, 1993, 57-63
- X. Lu and H. S. Tang, 鈥淎 primary study on mathematical modeling of sediment transport in a river section with two patterns鈥,Transaction of Changsha Comm. Inst., 8, 1992, 69-77
- H. S. Tang, S. C. Wang, Y. Z. Pong, and W. L. Hou, 鈥淓xperimental study on the regularity of water head loss in unsteady pipe flow鈥,Transaction of Changsha Comm. Inst., 5, 1989, 95-100
- H. S. Tang, 鈥淎n upwind method for Navier-Stokes equations鈥, Transaction of Changsha Comm. Inst., 4, 1988, 73-81
- H. S. Tang, 鈥淔inite element analysis of heated jets into shallow waters鈥, Transaction of Changsha Comm. Inst., 3, 1987, 85-92