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P F Linden

Showing results (1-10 of 12) with videos related to

Pageof 2
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Indoor Air|December 11, 2008
Particle transport in low-energy ventilation systems. Part 1: theory of steady statesD T Bolster, P F Linden
Royal Society Open Science|October 13, 2020
Displacement ventilation: a viable ventilation strategy for makeshift hospitals and public buildings to contain COVID-19 and other airborne diseasesRajesh K Bhagat, P F Linden
Proceedings. Biological Sciences|May 26, 2004
'Optimal' vortex rings and aquatic propulsion mechanismsP F Linden, J S Turner
Indoor Air|December 11, 2008
Particle transport in low-energy ventilation systems. Part 2: Transients and experimentsD T Bolster, P F Linden
Environmental Fluid Mechanics (Dordrecht, Netherlands : 2001)|January 31, 2020
Detrainment of plumes from vertically distributed sourcesRachael Bonnebaigt, C P Caulfield, P F Linden
Water Science and Technology : a Journal of the International Association on Water Pollution Research|June 8, 2001
Modelling the global efficiency of dissolved air flotationD M Leppinen, S B Dalziel, P F Linden
The Science of the Total Environment|April 16, 2011
Pedestrians' perception of environmental stimuli through field surveys: focus on particulate pollutionMarialena Nikolopoulou, Jan Kleissl, P F Linden, et al.
Proceedings of the National Academy of Sciences of the United States of America|September 27, 2018
Symmetric coalescence of two hydraulic fracturesNiall J O'Keeffe, Zhong Zheng, Herbert E Huppert, et al.
Scientific Reports|January 1, 2020
The transport of liquids in softwood: timber as a model porous mediumH C Burridge, G Wu, T Reynolds, et al.
The Science of the Total Environment|May 6, 2023
Do we need high temporal resolution modelling of exposure in urban areas? A test caseH Woodward, A Schroeder, A de Nazelle, et al.
Pageof 2

Showing results (1-10 of 12) with videos related to

Sort By:
Pageof 2
Indoor Air|December 11, 2008
Particle transport in low-energy ventilation systems. Part 1: theory of steady statesD T Bolster, P F Linden
Royal Society Open Science|October 13, 2020
Displacement ventilation: a viable ventilation strategy for makeshift hospitals and public buildings to contain COVID-19 and other airborne diseasesRajesh K Bhagat, P F Linden
Proceedings. Biological Sciences|May 26, 2004
'Optimal' vortex rings and aquatic propulsion mechanismsP F Linden, J S Turner
Indoor Air|December 11, 2008
Particle transport in low-energy ventilation systems. Part 2: Transients and experimentsD T Bolster, P F Linden
Environmental Fluid Mechanics (Dordrecht, Netherlands : 2001)|January 31, 2020
Detrainment of plumes from vertically distributed sourcesRachael Bonnebaigt, C P Caulfield, P F Linden
Water Science and Technology : a Journal of the International Association on Water Pollution Research|June 8, 2001
Modelling the global efficiency of dissolved air flotationD M Leppinen, S B Dalziel, P F Linden
The Science of the Total Environment|April 16, 2011
Pedestrians' perception of environmental stimuli through field surveys: focus on particulate pollutionMarialena Nikolopoulou, Jan Kleissl, P F Linden, et al.
Proceedings of the National Academy of Sciences of the United States of America|September 27, 2018
Symmetric coalescence of two hydraulic fracturesNiall J O'Keeffe, Zhong Zheng, Herbert E Huppert, et al.
Scientific Reports|January 1, 2020
The transport of liquids in softwood: timber as a model porous mediumH C Burridge, G Wu, T Reynolds, et al.
The Science of the Total Environment|May 6, 2023
Do we need high temporal resolution modelling of exposure in urban areas? A test caseH Woodward, A Schroeder, A de Nazelle, et al.
Pageof 2