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22篇 您的检索式:作者名="Erik DICK"
    题名 作者 年代 出处 被引量
1An Arbitrary La- grangian-eulerian Finite-volume Method for the Simulation of Rotary Displacement Pump Flow 显示文摘Kris Riemslagh Jan Vierendeels Erik Dick 2000Applied Numerical Mathematics2000,,32:1
2Flow simulations in rotary volumetric pumps and compressors with the fictitous domain method 显示文摘John Vande Voorde Jan Vierendeels Erik Dick 2004Journal of Computational and Applied Mathematics2004,,168:1
3Biocatalytic conversion of epoxides显示文摘Erik J de V Dick B J 2003Current Opinion in Biotechnology2003,14,:1
4Flow simulations in rotary volumetric pumps and compressors with the fictitious domain method显示文摘John Vande Voorde Jan Vierendeels Erik Dick 2003Journal of Computational and Applied Mathematics2003,,1:1
5A Force-Based Grid Manipulator for ALE Calculations in a Lobe Pump显示文摘In this paper, a time-dependant calculation of flow in a lobe pump is presented. Calculations are performed using the arbitrary Lagrangean Eulerean (ALE) method. A grid manipulator is needed to move the nodes between time steps. The used grid manipulator is based on the pseudo-force idea. This means that each node is fictitiously cormeeted with its 8 neighbours via fictitious springs. The equilibrium of the resulting pseudo spring forces defines the altered position of the nodes. The grid manipulator was coupled with a commercial flow solver and the whole was tested on the flow through a three-lobe lobe pump. Results were obtained for a rotational speed of 460 rpm and incompressible silicon oil as fluid.John Vande Voorde rug.ac.be Jan Vierendeels rug.ac.be Erik Dick rug.ac.be 2003Journal of Thermal Science2003,12,4:1
6An arbitrary Lagrangian–Eulerian finite-volume method for the simulation of rotary displacement pump flow显示文摘Kris Riemslagh Jan Vierendeels Erik Dick 2000Applied Numerical Mathematics2000,,4:1
7Health Effects of Endocrine-Disrupting Chemicals on Wildlife, with Special Reference to the European Situation显示文摘Joseph G. Vos Erik Dybing Helmut A. Greim Ole Ladefoged Claude Lambré Jose V. Tarazona Ingvar Brandt A. Dick Vethaak 2000CRC Critical Reviews in Toxicology2000,,1:1
8Flow simulations in rotary volumetric pumps and compressors with the factitious domain method显示文摘John Vande Voorde Jan Vierendeels Erik Dick 2004Journal of Computational and Applied Mathematics2004,,168:1
9Heat transfer predictions with a cubic κ-ε model for axisymmetric turbulent jets impinging onto a flat plate 显示文摘Bart Merci Erik Dick 2003International Journal of Heat and Mass Transfer2003,46,:1
10The Herbivore-Induced Plant Volatile Methyl Salicylate Negatively Affects Attraction of the Parasitoid Diadegma semiclausum显示文摘Tjeerd A. L. Snoeren Roland Mumm Erik H. Poelman Yue Yang Eran Pichersky Marcel Dicke 2010Journal of Chemical Ecology2010,,5:1
11Contagion as Domino Effect in Global Stock Markets显示文摘Thijs Markwat Erik Kole Dick Van Dijk 2009Journal of Banking&Finance2009,33,11:1
12An evaluation of models for condensation heat transfer on low-finned tubes 显示文摘Octavio Leon Gilbert De Mey Erik Dick 1999Journal of Enhanced Heat Transfer1999,,6:1
13An arbitrary Lagrangian-Eulerian finite-volume method for the simulation of rotary displacement pump ,flow 显示文摘Kris Riemslagh Jan Vierendeels Erik Dick 2000Applied Numerical Mathematics2000,,32:1
14Flow simulations in rotary volumetric pumps and compressors with the fictitous domain method显示文摘John Vande Voorde Jan Vierendeels Erik Dick 2004Journal of Computational and Applied Mathematics2004,,168:1
15Efficient recovery of environmental DNA for expression cloning by indirect extraction methods显示文摘Gabor Esther M de Vries Erik J Jan88en Dick B 2003FEMS Microbial Ecology2003,44,:1
16Heat transfer predictions with a cubic κ-ε model for axisymmetric turbulent jets impinging onto a flat plate显示文摘Bart Merci Erik Dick 2003Heat and Mass Transfer2003,46,:1
17Hybrid RANS/LES of flow and heat transfer in round impinging jets 显示文摘Slawomir Kubackia Erik Dick 2011Inter- national Journal of Heat and Fluid Flow2011,32,3:1
18Novel Strategy for a Cocktail ^sup 18^F-Fluoride and ^sup 18^F-FDG PET/CT Scan for Evaluation of Malignancy: Results of the Pilot-Phase Study显示文摘Iagaru Andrei Mittra Erik Yaghoubi Shahriar S Dick David W Quon Andrew Goris Michael L Gambhir Sanjiv Sam 2009The Journal of Nuclear Medicine2009,,:1
19VLES Modelling with the Renormalization Group显示文摘In a Very-Large-Eddy Simulation (VLES), the filterwidth-wavenumber can be outside the inertial range, and simple subgrid models have to be replaced by more complicated (''RANS-like'') models which can describe the transport of the biggest eddies. One could approach this by using a RANS model in these regions, and modify the lengthscale in the model for the LES-regions. The problem with these approaches is that these models are specifically calibrated for RANS computations, and therefore not suitable to describe inertial range quantities. We investigated the construction of subgfid viscosity and transport equations without any calibrated constants, but these are calculated directly form the Navier-Stokes equation by means of a Renormalization Group (RG) procedure. This leads to filterwidth dependent transport equations and effective viscosity with the right limiting behaviour (DNS and RANS limits).Chris De Langhe rug.ac.be Bart Merci rug.ac.be Koen Lodefier rug.ac.be Erik Dick rug.ac.be 2003Journal of Thermal Science2003,12,4:0
20Transition Modelling with the k-Ω Turbulence Model and an Intermittency Transport Equation显示文摘In gas turbine engines, laminar-turbulent transition occurs. However, generally, the turbulence models to describe such transition results in too early and too short transition. Combining a turbulence model with a description of intermittency, i.e. the fraction of time the flow is turbulent during the transition phase, can improve it. By letting grow the intermittency from zero to unity, start and evolution of transition can be imposed. In this paper, a method where a dynamic equation of intermittency combining with a two-equation k-ωturbulence model is described. This intermittency factor is a premultiplicator of the turbulent viscosity computed by the turbulence model. Following a suggestion by Menter et al.[1], the start of transition is computed based on local variables.Koen LODEFIER Bart MERCI Chris De LANGHE Erik DICK 2004Journal of Thermal Science2004,13,3:0
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