Keyword search (4,164 papers available)

"Han M" Authored Publications:

Title Authors PubMed ID
1 The legality of weight discrimination in Canada: an environmental scan of case law and the limits of Canadian legislation Nutter S; Waugh R; McEachran E; Toor A; Shelley J; Alberga AS; Forhan M; Kirk SF; Nagpal TS; Patton I; Ramos Salas X; Russell-Mayhew S; 41029703
SOH
2 Elucidating the size distribution of p‑Phenylenediamine-Derived quinones in atmospheric particles Xia K; Qin M; Han M; Zhang X; Wu X; Liu M; Liu S; Wang X; Liu W; Xie Z; Yuan R; Liu Q; 39978217
CHEMBIOCHEM
3 Numerical simulation of multiphase oil behaviors in ice-covered nearshore water Raznahan M; Li SS; Wang Z; Boufadel M; Geng X; An C; 36095968
ENCS
4 Restrained eating and alcohol use: Testing drinking to cope and impulsivity as moderators Corran C; Khan M; Gallant S; Shalev U; O' Connor RM; 35471931
CONCORDIA
5 Mapping changes in the obesity stigma discourse through Obesity Canada: a content analysis Kirk SF; Forhan M; Yusuf J; Chance A; Burke K; Blinn N; Quirke S; Salas XR; Alberga A; Russell-Mayhew S; 35071667
HKAP
6 Multiphase CFD simulation of the nearshore spilled oil behaviors Raznahan M; An C; Li SS; Geng X; Boufadel M; 34284211
ENCS
7 L’obésité chez l’adulte : ligne directrice de pratique clinique. Wharton S, Lau DCW, Vallis M, Sharma AM, Biertho L, Campbell-Scherer D, Adamo K, Alberga A, Bell R, BoulĂ© N, Boyling E, Brown J, Calam B, Clarke C, Crowshoe L, Divalentino D, Forhan M, Freedhoff Y, Gagner M, Glazer S, Grand C, Green M, Hahn M, Hawa R, Henderson R, Hong D, Hung P, Janssen I, Jacklin K, Johnson-Stoklossa C, Kemp A, Kirk S, Kuk J, Langlois MF, Lear S, McInnes A, Macklin D, Naji L, Manjoo P, Morin MP, Nerenberg K, Patton I, Pedersen S, Pereira L, Piccinini-Vallis H, Poddar M, Poirier P, Prud 33288515
HKAP
8 Weight bias and health care utilization: a scoping review. Alberga AS, Edache IY, Forhan M, Russell-Mayhew S 32800008
HKAP
9 Obesity in adults: a clinical practice guideline. Wharton S, Lau DCW, Vallis M, Sharma AM, Biertho L, Campbell-Scherer D, Adamo K, Alberga A, Bell R, Boulé N, Boyling E, Brown J, Calam B, Clarke C, Crowshoe L, Divalentino D, Forhan M, Freedhoff Y, Gagner M, Glazer S, Grand C, Green M, Hahn M, Hawa R, Henderson R, Hong D, Hung P, Janssen I, Jacklin K, Johnson-Stoklossa C, Kemp A, Kirk S, Kuk J, Langlois MF, Lear S, McInnes A, Macklin D, Naji L, Manjoo P, Morin MP, Nerenberg K, Patton I, Pedersen S, Pereira L, Piccinini-Vallis H, Poddar M, Poirier P, Prud 32753461
HKAP
10 Design and Investigation of Modern UWB-MIMO Antenna with Optimized Isolation. Irshad Khan M, Khattak MI, Rahman SU, Qazi AB, Telba AA, Sebak A 32326120
ENCS
11 Addressing weight bias and discrimination: moving beyond raising awareness to creating change. Ramos Salas X, Alberga AS, Cameron E, Estey L, Forhan M, Kirk SFL, Russell-Mayhew S, Sharma AM 28994243
HKAP

 

Title:Multiphase CFD simulation of the nearshore spilled oil behaviors
Authors:Raznahan MAn CLi SSGeng XBoufadel M
Link:https://pubmed.ncbi.nlm.nih.gov/34284211/
DOI:10.1016/j.envpol.2021.117730
Publication:Environmental pollution (Barking, Essex : 1987)
Keywords:CFDFate and transport of oilNearshoreOil spillStokes second order theory
PMID:34284211 Category: Date Added:2021-07-21
Dept Affiliation: ENCS
1 Department of Building, Civil and Environmental Engineering, Concordia University, Montreal, QC, H3G 1M8, Canada.
2 Department of Building, Civil and Environmental Engineering, Concordia University, Montreal, QC, H3G 1M8, Canada. Electronic address: chunjiang.an@concordia.ca.
3 Center for Natural Resources, Department of Civil and Environmental Engineering, New Jersey Institute of Technology, Newark, NJ, 07102, United States.

Description:

Oil spills are a serious environmental problem. To better support risk assessment and pollution control for oil spills, a good understanding of oil transport in the environment is required. This study focused on the numerical simulation of the nearshore oil behaviors based on computational fluid dynamics. Based on the Navier-Stokes momentum equations for an incompressible viscous fluid and volume of fluid (VOF) method, a 3D numerical model of three-phase transient flow was developed. The wave number, averaged flow velocity and oil properties would affect the oil spread extent and the oil volume fraction. The higher the averaged flow velocity and wave number, the lower the oil concentration, and the faster the horizontal movement of the oil. The spilled oil may move to contact the seafloor by increasing the averaged flow velocity at the inlet boundary. Through increasing the wave number, the oil would stay near the water surface. In the nearshore, where the wave is the main seawater motion, the oil containment boom should be set preferentially to the direction of wave transmission for oil cleaning. This study shows that by doubling the wave number and increasing the averaged flow velocity (ten times) at the same time, the maximum oil volume fraction would be reduced by around 32%. Finally, the water temperature had no significant impact on the oil migration, and the impact of evaporation should be considered in the simulation.





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