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  • Search: subject:"CFD (Computational Fluid Dynamics)"
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CFD (computational fluid dynamics) 4 CFD (Computational Fluid Dynamics) 2 BTE (brake thermal efficiency) 1 CNG (compressed natural gas) and H2 (hydrogen) 1 CWC (Circulating Water Channel) 1 Calcination process 1 Cement cyclone 1 Dual-fuel engine 1 EGM (Entropy Generation Minimization) 1 Entropy 1 Gas injector orientation 1 LES (large eddy simulation) 1 Mixture formation 1 Numerical modelling 1 Oil spill 1 Renewable energy 1 Solar heat-exchanger 1 Submarine pipeline 1 Swirling flow 1 TCP (Tidal Current Power) 1 Thermal convection 1 Turbine design 1 VOF (volume of fluid) 1 aerodynamic power output 1 inter-turbine spacing 1 layout 1 offshore wind farm 1
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Undetermined 5 Free 1
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Article 6
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Undetermined 6
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Ashhab, Moh'd Sami 1 Chintala, Venkateswarlu 1 Choi, Nak Joon 1 Duić, Neven 1 Giangaspero, Giorgio 1 Jeong, Jong Hyun 1 Jo, Chul hee 1 Kim, Kyung Chun 1 Lee, Kang hee 1 Lin, Pengzhi 1 Mikulčić, Hrvoje 1 Nam, Sang Hyun 1 Pan, Qian 1 Rho, Yu ho 1 Sciubba, Enrico 1 Subramanian, K.A. 1 Vujanović, Milan 1 Yim, Jin young 1 Zhu, Hongjun 1
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Energy 4 Energies 1 Renewable Energy 1
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RePEc 6
Showing 1 - 6 of 6
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CFD Study on Aerodynamic Power Output Changes with Inter-Turbine Spacing Variation for a 6 MW Offshore Wind Farm
Choi, Nak Joon; Nam, Sang Hyun; Jeong, Jong Hyun; Kim, … - In: Energies 7 (2014) 11, pp. 7483-7498
This study examined the aerodynamic power output change of wind turbines with inter-turbine spacing variation for a 6 MW wind farm composed of three sets of 2 MW wind turbines using computational fluid dynamics (CFD). The wind farm layout design is becoming increasingly important as the use of...
Persistent link: https://www.econbiz.de/10011075170
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A CFD (computational fluid dynamic) simulation for oil leakage from damaged submarine pipeline
Zhu, Hongjun; Lin, Pengzhi; Pan, Qian - In: Energy 64 (2014) C, pp. 887-899
The objective of the present paper is to study the oil flows from damaged submarine pipelines with different leak sizes. CFD (computational fluid dynamic) simulations with FLUENT software are carried out to investigate the process of oil spill from submarine pipeline to free surface. Effects of...
Persistent link: https://www.econbiz.de/10010811503
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Large eddy simulation of a two-phase reacting swirl flow inside a cement cyclone
Mikulčić, Hrvoje; Vujanović, Milan; Ashhab, Moh'd Sami; … - In: Energy 75 (2014) C, pp. 89-96
This work presents a numerical study of the highly swirled gas–solid flow inside a cement cyclone. The computational fluid dynamics – CFD simulation for continuum fluid flow and heat exchange was used for the investigation. The Eulearian–Lagrangian approach was used to describe the...
Persistent link: https://www.econbiz.de/10011054882
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A CFD (computational fluid dynamics) study for optimization of gas injector orientation for performance improvement of a dual-fuel diesel engine
Chintala, Venkateswarlu; Subramanian, K.A. - In: Energy 57 (2013) C, pp. 709-721
A CFD (computational fluid dynamics) study was conducted on a diesel engine (7.4kW) under dual-fuel mode (diesel …
Persistent link: https://www.econbiz.de/10011053483
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Application of the entropy generation minimization method to a solar heat exchanger: A pseudo-optimization design process based on the analysis of the local entropy generation maps
Giangaspero, Giorgio; Sciubba, Enrico - In: Energy 58 (2013) C, pp. 52-65
friction. Different geometries (pins, fins and others) are analysed with a commercial CFD (Computational Fluid Dynamics) code …
Persistent link: https://www.econbiz.de/10011056061
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Performance of horizontal axis tidal current turbine by blade configuration
Jo, Chul hee; Yim, Jin young; Lee, Kang hee; Rho, Yu ho - In: Renewable Energy 42 (2012) C, pp. 195-206
The west and south coastal region of Korea has very strong tidal current speeds and therefore accommodates many suitable sites for the application of TCP (Tidal Current Power). The maximum current speed recorded in the south is up to 6.5 m/s. Unlike other renewable energy sources, TCP is an...
Persistent link: https://www.econbiz.de/10011046042
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