Numerical Simulation Of Buoyancy Induced Flows In Sealed Rotating Cavities
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Publisher
Begellhouse
Reference8 articles.
1. Arakawa, A., 1966, Computational design for long-term numerical integration of the equations of fluid motion: two-dimensional incompressible flow. Part 1., Journal of Computational Physics, 1, pp. 119-143.
2. Bohn, D., Deuker, E., Edmunds, R. & Gorzelitz, V., 1995, Experimental and theoretical investigations of heat transfer in closed gas-filled rotating annuli, Journal of Turbomachinery, 117, pp.175-183.
3. Bohn, D., Deuker, E., Edmunds, R. & Gorzelitz, V., 1994, Flow pattern and heat transfer in a closed rotating annulus, Journal of Turbomachinery, 116, pp. 542-547.
4. Farthing, P.R., Long, C.A., Owen, J.M. & Pincombe, J.R., 1992, Rotating cavity with axial throughflow of cooling air: flow structure, Journal of Turbomachinery, 114, pp. 237-246.
5. Ong, C.L. & Owen, J.M., 1991, Prediction of heat transfer in a rotating cavity with radial outflow, Journal of Turbomachinery, 113, pp.115-122.
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