Zimmerman, William
Professor
所属大学: University of Sheffield
所属学院: Department of Chemical and Biological Engineering
邮箱:
w.zimmerman@sheffield.ac.uk
个人主页:
https://www.sheffield.ac.uk/cbe/staff/staffprofiles/wzimmerman#tab00
个人简介
BScEng, MSc, PhD, CEng FIChemE
I'm a graduate of Princeton and Stanford Universities in Chemical Engineering and the author of over 100 scientific publications. Previously I was Director of the MSc in Environmental and Energy Engineering, and a winner in US and UK national competitions of five prestigious fellowships (2005-6 Royal Academy of Engineering Senior Research Fellow, 2000-5 EPSRC Advanced Research Fellow; 1994-99 Royal Academy of Engineering, Zeneca Young Academic Fellow; 1991-93 visiting professorships appointed by the French Ministry of Education at the Littoral University in Dunkirk in 1998 and 2005.
I was interviewed on my algal biofuels work on BBC Radio 4 “Material World with Quentin Cooper”. My Royal Academy of Engineering SRF, entitled “Systems Biology and Chemical Engineering” has laid down a protocol for optimal experimentation for bioreactor model-building via inverse methods. I directed Microfluidics 2003, a workshop at CISM in Udine from which he edited a book on microfluidics, and is the author of two bestselling texts on multiphysics modelling .
研究领域
Energy efficient generation of microbubbles and their applications (particularly biofuels and bioreactors) Plasma microreactors, especially low power consumption generation of ozone Fluid dynamics of helical turbulence and mixing Thin film dynamics and microrheometry Computational modelling with inverse methods
近期论文
William B. Zimmerman, Václav Tesař , H.C. Hemaka Bandulasena, Towards energy efficient nanobubble generation with fluidic oscillation, Curr Opin Colloid Interface Sci (2011), doi:10.1016/j.cocis.2011.01.010 William B. Zimmerman, Mohammad Zandi, H.C. Hemaka Bandulasena, Vaclav Tesarˇ,D. James Gilmour , Kezhen Ying "Design of an airlift loop bioreactor and pilot scales studies with fluidic oscillator induced microbubbles for growth of a microalgae Dunaliella salina" Appl Energy (2011), doi:10.1016/j.apenergy.2011.02.013. H. C. H. Bandulasena, W. B. Zimmerman and J. M. Rees, “Creeping flow analysis of an integrated microfluidic device for rheometry.” Journal of non-Newtonian Fluid Mechanics 165(19-20): 1302-1308, 2010. W.B. Zimmerman, “Electrochemical microfluidics.” Chemical Engineering Science, invited review paper doi:10.1016/j.ces.2010.03.057 , 2010. J. H. Lozano-Parada and W. B. Zimmerman, “The role of kinetics in the design of plasma microreactors.” Chemical Engineering Science 65(17): 4925-4930, 2010.