17   Artículos

 
en línea
Yiwen Li, Juan Liu, Pengfei Lin, Hailong Liu, Zipeng Yu, Weipeng Zheng and Jinlei Chen    
Marine heatwaves (MHWs) are becoming increasingly frequent and intense around China, impacting marine ecosystems and coastal communities. Accurate forecasting of MHWs is crucial for their management and mitigation. In this study, we assess the forecastin... ver más
Revista: Journal of Marine Science and Engineering    Formato: Electrónico

 
en línea
Huier Mo, Yinghao Qin, Liying Wan, Yu Zhang, Xing Huang, Yi Wang, Jianyong Xing, Qinglong Yu and Xiangyu Wu    
In this study, a global analysis and forecasting system at 1/12° is built for operational oceanography at the National Marine Environmental Forecasting Center (NMEFC) by using the NEMO ocean model (NMEFC-NEMO). First, statistical analysis methods are des... ver más
Revista: Journal of Marine Science and Engineering    Formato: Electrónico

 
en línea
Jairo Andrés Gutiérrez Suárez, Carlos Humberto Galeano Urueña and Alexánder Gómez Mejía    
The use of adaptive meshing strategies to perform cost-effective transient simulations of spray drying processes is evaluated. These simulations are often computationally expensive, given the large differences between the characteristic times of the cent... ver más
Revista: ChemEngineering    Formato: Electrónico

 
en línea
Xin Zhang, Heng Zhang and Jie Li    
A zonal detached eddy simulation (ZDES) method, based on the two-equation k-? SST turbulence model, was employed to predict stall characteristics and capture small-scale vortex structures in the wake region of the main wing under the post-stall condition... ver más
Revista: Aerospace    Formato: Electrónico

 
en línea
Jan Geese, Julian Kimmerl, Marc Nadler and Moustafa Abdel-Maksoud    
The investigation of cavitating trailing vortices emerging from marine propellers is of great interest in the industry. With the help of computational fluid dynamics (CFD), studying the cavitating trailing vortices may be facilitated. However, limitation... ver más
Revista: Journal of Marine Science and Engineering    Formato: Electrónico

 
en línea
Dmitry Stepanov, Vladimir Fomin, Anatoly Gusev and Nikolay Diansky    
The driving mechanisms of mesoscale processes and associated heat transport in the Japan/East Sea (JES) from 1990 to 2010 were examined using eddy-resolving ocean model simulations. The simulated circulation showed correctly reproduced JES major basin-sc... ver más
Revista: Journal of Marine Science and Engineering    Formato: Electrónico

 
en línea
Zhanjie Zhang and Guang J. Zhang    
The scale-aware convective parameterization for high resolution global climate models must satisfy the requirement that the parameterized subgrid convective transport diminishes as the model resolution increases to convection-resolving resolutions. A maj... ver más
Revista: Journal of Marine Science and Engineering    Formato: Electrónico

 
en línea
Yiyun Shi, Xiaohui Liu, Tongya Liu and Dake Chen    
Mesoscale eddies propagate westward in the northwestern Pacific Ocean and interact with the Kuroshio in the vicinity of the western boundary of the ocean. However, the processes affecting the eddy properties and the detailed structure of the eddies when ... ver más
Revista: Journal of Marine Science and Engineering    Formato: Electrónico

 
en línea
Adrian Lungu    
A thorough numerical introspection for assessing the particular issues of large flow separations around a submersible hull by using various turbulence models is described. The generic Defense Advanced Research Projects Agency (DARPA hereafter) Suboff hul... ver más
Revista: Journal of Marine Science and Engineering    Formato: Electrónico

 
en línea
Said Alhaddad, Lynyrd de Wit, Robert Jan Labeur and Wim Uijttewaal    
Breaching flow slides result in a turbidity current running over and directly interacting with the eroding, submarine slope surface, thereby promoting further sediment erosion. The investigation and understanding of this current are crucial, as it is the... ver más
Revista: Journal of Marine Science and Engineering    Formato: Electrónico

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