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Journal ArticleDOI

Application of the energy-dissipation model of turbulence to the calculation of flow near a spinning disc

Brian Launder, +1 more
- 01 Nov 1974 - 
- Vol. 1, Iss: 2, pp 131-137
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This article is published in Letters in Heat and Mass Transfer.The article was published on 1974-11-01. It has received 2691 citations till now. The article focuses on the topics: K-omega turbulence model & K-epsilon turbulence model.

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Citations
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Solution of a continuous casting of steel benchmark test by a meshless method

TL;DR: In this article, a meshless method was proposed to solve a recently proposed industrial benchmark test (Sarler et al., 2012 [1] ) using a set of macroscopic equations.
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Comparison of Turbulence Modeling Strategies for Indoor Flows

TL;DR: In this article, the effect of inlet turbulence intensity on the flow field is investigated using the constant coefficient large eddy simulation (LES) model with uniform mean inlet conditions at several levels of turbulence intensities, and the results show significant differences between the simulations with laminar inflow conditions and those in which turbulence was introduced at the inlet.
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Computational Fluid Dynamic Analysis of Co-Firing of Palm Kernel Shell and Coal

TL;DR: In this article, the authors used computational fluid dynamics (CFD) to investigate the PKS co-firing of a 300 MWe pulverized coal-fired power plant in terms of thermal behavior of the plant and the CO2, CO, O2, NOx, and SOx produced.

Assessment of closure coefficients for compressible-flow turbulence models

TL;DR: In this article, a critical assessment is made of the closure coefficients used for turbulence length scale in existing models of the transport equation, with reference to the extension of these models to compressible flow.
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Solution of three-dimensional temperature and turbulent velocity field in continuously cast steel billets with electromagnetic stirring by a meshless method

TL;DR: In this paper, a meshless Local Radial Basis Function Collocation Method (LRBFCM) was proposed for solution of 3D turbulent molten steel flow and solidification under the influence of electromagnetic stirring (EMS).
References
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The prediction of laminarization with a two-equation model of turbulence

TL;DR: In this article, the local turbulent viscosity is determined from the solution of transport equations for the turbulence kinetic energy and the energy dissipation rate, and the predicted hydrodynamic and heat-transfer development of the boundary layers is in close agreement with the measured behaviour.
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The calculation of low-Reynolds-number phenomena with a two-equation model of turbulence

TL;DR: In this article, the authors present numerical predictions of various turbulent shear flows in which the structure of the viscous sublayer exerts appreciable influence on the flow, where the turbulence energy and its dissipation rate are calculated by way of transport equations which are solved simultaneously with the conservation equations for the mean flow.
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Heat and mass transfer from rotating cones

TL;DR: In this article, heat transfer by convection from isothermal rotating cones is investigated experimentally by measuring the sublimation rate from naphthalene-coated cones and using the analogy between heat and mass transfer.