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第九期“城市前沿讲堂”——Household Sustainability
Beyond the Green Facade: A Field Experiment on Environmental Narrativesin Fin...
”行业前沿讲堂”第3期——数据治理赋能数字化转型和数据资产化
量子计算+化学小型研讨会
报告题目:
High-resolution Ocean Modelling, Analysis, and Validation Integrated Laboratory and Modelling Study of the Fate of Spilled Oil in Ocean
 报告人:
Youyu Lu & Haibo Niu
Bedford Institute of Oceanography, Fisheries and Oceans Canada
Dalhousie University, Canada
报告时间:
2014-10-21 14:00
报告地点:
清华大学航天航空学院蒙民伟科技大楼北楼N-408室
主办单位:
清华大学航院流体力学研究所
  简介:

学术报告

High-resolution Ocean Modelling, Analysis, and Validation

Youyu Lu(Bedford Institute of Oceanography, Fisheries and Oceans Canada)

Integrated Laboratory and Modelling Study of the Fate of Spilled Oil in Ocean

 
报告摘要A
High-resolution Ocean Modelling, Analysis, and Validation
Youyu Lu (Bedford Institute of Oceanography, Fisheries and Oceans Canada)
A system of ocean and sea-ice forecasting models, based on Nucleus of European Modelling of the Ocean (NEMO), are being developed under major initiatives of Canadian government and universities. Hindcasts of ocean hydrography, circulation and sea-ice in the North Atlantic, Arctic and North Pacific Oceans are produced at high-spatial resolutions. These model results are evaluated with a variety of in situ and satellite ocean observations. The analysis improves understanding of ocean circulation dynamics and reveals challenges in simulating the meso-scale eddy variability.
 
报告摘要B
Integrated Laboratory and Modelling Study of the Fate of Spilled Oil in Ocean
Haibo Niu (Dalhousie University, Canada)
Increasing oil and gas activities lead to increased risk of marine oil spill. The recent example of Deepwater Horizon oil spill has shown that the oil spill is difficult to response and reliable oil spill models are needed to predict the movement, fate and environmental effects of the spilled oil. However, major research gaps exist in oil-mineral-aggregates formation, subsurface blowouts, oil-ice interaction, etc. Due to the lack of data collected at fields, we carry out meso-scale experiments with a 30 m wave tank and obtain various parameters of hydrodynamics and chemical processes. Mathematical descriptions of these processes are developed based on analysis of laboratory data, and are then integrated into existing three-dimensional oil spill models to improve our ability to better predict the fate/transport processes spilled oil in the marine environment.  
 
时间:20141021日下午14:00-17:00
 
 
 
 
 
 
 
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