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Investigating the effect of oil spills
on the environment and public health.
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Shuolin Xiao

University of Houston

Department of Mechanical Engineering

N207 Engineering Building 1
Houston, TX  77204  

sxiao5@uh.edu

Project List:

Transport and fate of oil in the upper ocean: Studying and modeling multi-scale physical dispersion mechanisms and remediation strategies using Large Eddy Simulation

Year 6-8 Investigator Grants (RFP-V)Role: Graduate Student - PhD Level

Publications & Presentations:

Journal Articles - 2

2020

Peng, C., Xiao, S., & Yang, D. (2020). Large‐Eddy Simulation Model for the Effect of Gas Bubble Dissolution on the Dynamics of Hydrocarbon Plume from Deep‐Water Blowout. Journal of Geophysical Research: Oceans, 125(6).
Xiao, S., & Yang, D. (2020). Effect of oil plumes on upper-ocean radiative transfer — A numerical study. Ocean Modelling, 145, 101522.

Conference Presentations - 6

2019

Xiao, S. Y., & D (2019). Eulerian large eddy simulations of bubble-driven plume with finite bubble void fraction. In Gulf of Mexico Oil Spill & Ecosystem Science Conference 2019

2018

Xiao, S. Y., & D (2018). Large eddy simulation of bubble-driven plume with finite bubble void fraction. In 71st Annual Meeting of the APS Division of Fluid Dynamics
Xiao, S. Y., & D (2018). Numerical study of the variation of upper-ocean light field induced by oil plumes. In Gulf of Mexico Oil Spill & Ecosystem Science Conference 2018
Yang, D. P., C.; Xiao, S. C., B.; Aiyer, A. C., & M.; Meneveau, C. (2018). Recent development on large-eddy simulation of oceanic hydrocarbon plume dispersion. In The 8th International Symposium on Environmental Hydraulics

2017

Xiao, S. Y., & D (2017). Numerical simulation of ocean surface oil plume dispersion and its impact on upper-ocean light field. In 70th Annual Meeting of the APS Division of Fluid Dynamics
Yang, D. X., S.; Chen, B. C., & M.; Meneveau, C. (2017). Large-eddy simulation study of oil/gas plumes in stratified fluid with cross current. In 70th Annual Meeting of the APS Division of Fluid Dynamics