Xi Zhao, Ph.D.
Affiliations: | 2000 | University of Michigan, Ann Arbor, Ann Arbor, MI |
Area:
Mechanical Engineering, Marine and Ocean EngineeringGoogle:
"Xi Zhao"Parents
Sign in to add mentorNickolas Vlahopoulos | grad student | 2000 | University of Michigan | |
(A basic development of a hybrid finite element method for mid -frequency computations of structural vibrations.) |
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Publications
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Jiaqiang E, Peng Q, Zhao X, et al. (2017) Numerical investigation on the combustion characteristics of non-premixed hydrogen-air in a novel micro-combustor Applied Thermal Engineering. 110: 665-677 |
Verma SK, Verma R, Li N, et al. (2016) Fabrication and band engineering of Cu-doped CdSe |
Wu X, Zhao B, Wang L, et al. (2016) Hydrophobic PVDF/graphene hybrid membrane for CO |
Ren L, Mao M, Li Y, et al. (2016) Novel photothermocatalytic synergetic effect leads to high catalytic activity and excellent durability of anatase TiO |
Zhao X, Vlahopoulos N. (2004) A basic hybrid finite element formulation for mid-frequency analysis of beams connected at an arbitrary angle Journal of Sound and Vibration. 269: 135-164 |
Zhao X, Vlahopoulos N. (2001) Mid-frequency vibration analysis of systems containing one type of energy based on a hybrid finite element formulation Sae Technical Papers |
Zhao X, Vlahopoulos N. (2000) Investigation of power flow in the midfrequency range for systems of colinear beams based on a hybrid finite‐element formulation The Journal of the Acoustical Society of America. 107: 2883-2883 |
Zhao X, Vlahopoulos N. (2000) Hybrid finite element formulation for mid-frequency analysis of systems with excitation applied on short members Journal of Sound and Vibration. 237: 181-202 |
Zhao X, Vlahopoulos N. (2000) An investigation of power flow in the mid-frequency range for systems of co-linear beams based on a hybrid finite element formulation American Society of Mechanical Engineers, Noise Control and Acoustics Division (Publication) Nca. 27: 81-87 |
Vlahopoulos N, Zhao X. (1999) Basic development of hybrid finite element method for midfrequency structural vibrations Aiaa Journal. 37: 1495-1505 |