Last edited by Mozuru
Friday, August 7, 2020 | History

4 edition of Heat transfer and fluid flow in rotating coolant channels found in the catalog.

Heat transfer and fluid flow in rotating coolant channels

by W. David Morris

  • 230 Want to read
  • 34 Currently reading

Published by Research Studies Press in Chichester, New York .
Written in English

    Subjects:
  • Turbomachines -- Fluid dynamics.,
  • Turbomachines -- Cooling.,
  • Heat -- Transmission.

  • Edition Notes

    StatementW. David Morris.
    SeriesMechanical engineering research studies ;, 2
    Classifications
    LC ClassificationsTJ267 .M67 1981
    The Physical Object
    Paginationxv, 228 p. :
    Number of Pages228
    ID Numbers
    Open LibraryOL3046172M
    ISBN 100471101214
    LC Control Number82139168

    In the cooling channels, the rib turbulators could strengthen the wall heat transfer, meanwhile, the flow resistance is lifted which is adverse to the channel downstream cooling. Therefore, heat transfer improvement and friction penalty are the two most important indices to evaluate the performance of rib by: 3. The book's editors and their team of expert contributors discuss many core themes, including advanced heat transfer fluids and boundary layer analysis, physics of fluid motion and viscous flow, thermodynamics and transport phenomena, alongside key methods of analysis such as the Merk-Chao-Fagbenle method.

      Heat Transfer and Fluid Flow Data Books Details The Data Books were developed by the General Electric Company's Research and Development Center specifically to help design engineers, who lacked heat transfer or fluid flow backgrounds, tackle the .   Fluid flow inside a rectangular channel, that consisting of 6 pipes, in each pipe the fluid temperature is different, This tutorial will help to understand t.

    After all, the general influence of rotation on the heat transfer characteristics has to be known. By the results of flow field and heat transfer measurements, the impact of rotation and the additional influence of Taylor-vortex formation on the heat transfer characteristics in annular channels with axial throughflow will be by: A computational study was performed for the flow and heat transfer in rotating coolant passages with two legs connected with a U-bend. The dimensionless flow conditions and the rotational speed.


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Heat transfer and fluid flow in rotating coolant channels by W. David Morris Download PDF EPUB FB2

Heat transfer and fluid flow in rotating coolant channels (Mechanical engineering research studies) [Morris, W. David] on *FREE* shipping on qualifying offers. Heat transfer and fluid flow in rotating coolant channels (Mechanical engineering research studies)Cited by: Topics covered include: Basic Equations; Laminar flow over a single disc; Turbulent flow over a single disc; Heat transfer from a single disc; Rotor-stator systems with no superposed flow; Rotor-stator systems with a superposed flow; Heat transfer in rotor-stator systems; and Sealing rotor-stator systems: The ingress Problem.}, doi = {}, journal = {}, number =, volume =, place = {United States}.

Fluid Mech. (), vol.pp. Pranted in &eat Britain REVIEWS Heat Transfer and Fluid Flow in Rotating Coolant Channels. By W. MORRIS. Advances in Heat Transfer, Vol. Edited by J. HARTNETT and T. IRVINE, Power Condenser Heat Transfer Technology.

Additional Physical Format: Online version: Morris, W. David (William David). Heat transfer and fluid flow in rotating coolant channels. Chichester ; New York: Research Studies Press, © Title: Heat Transfer and Fluid Flow in Rotating Coolant Channels.

By W. M ORRIS. Research Studies Press/Wiley, pp. £ Advances in Heat Transfer. The flow field and heat transfer inside an internal cooling channel of gas turbine blade has been numerically investigated under static and rotating conditions. The objective of the. Overall Heat Transfer Coefficient Convection Heat Transfer Summary RADIANT HEAT TRANSFER Thermal Radiation Black Body Radiation Emissivity Radiation Configuration Factor Summary HEAT EXCHANGERS Heat Exchangers Parallel and Counter-Flow Designs Non-Regenerative Heat Exchanger Regenerative Heat Exchanger Cooling Towers Log Mean Temperature Difference Application to Heat Exchangers Overall Heat Transfer Coefficient Summary BOILING HEAT TRANSFER.

Closure to Discussion of “Heat Transfer in Rotating Rectangular Cooling Channels (AR=4) With Dimples” (, ASME J. Turbomach.,p. ) J. Turbomach (July, ) Fluid Flow and Heat Transfer in Rotating Curved Duct at High Rotation and Density RatiosCited by: Rotation effects on heat transfer, pressure drop, and thermal performance in a smooth square U-duct have been experimentally investigated.

The Reynolds number ranges f to 70, and the highest Rotation number reaches to The density ratio Cited by: There is an elementary equation from basic thermodynamics that states that the rate of heat transfer (Q) equals the mass flow rate (M) times a Constant (the specific heat of water) times the Delta T (fluid temp out minus fluid temp in): Q = M x C x Delta T.

In other words, the rate of heat transfer is directly proportional to mass flow rate. The book treats the problem of single- and two-phase heat transfer in micro-channels. We consider the effect of wall roughness on energy dissipation, axial heat conduction, operating parameters corresponding to stable and unstable flow and steady and unsteady flow with distinct interface.

THERMODYNAMICS, HEAT TRANSFER, AND FLUID FLOW Rev. 0 HT. The information contained in this handbook is by no means all encompassing.

An attempt to present the entire subject of thermodynamics, heat transfer, and fluid flow would be impractical.

However, the Thermodynamics, Heat Transfer, and Fluid Flow handbook doesFile Size: KB. Heat transfer and flow characteristics of U-shaped cooling channels with novel wavy ribs under stationary and rotating conditions International Journal of Heat and Mass Transfer, Vol.

Local heat transfer of vortex cooling with multiple tangential nozzles in a gas turbine blade leading edge cooling passageCited by: Modelling of Convective Heat and Mass Transfer in Rotating Flows Igor V.

Shevchuk (auth.) This monograph presents results of the analytical and numerical modeling of convective heat and mass transfer in different rotating flows caused by (i) system rotation, (ii) swirl flows due to swirl generators, and (iii) surface curvature in turns and bends.

() Numerical simulation of fluid flow and heat transfer in rotating channels using parallel lattice Boltzmann method.

International Journal of Heat and Mass TransferOnline publication date: 1-DecCited by: 5. Prediction of fluid flow and heat transfer inside internal cooling channels that rotate at high rotation number and high wall heat flux is the main focus of this study.

convective heat and mass transfer in rotating disk systems. Heat and Mass Transfer in Rotating Flows heat transfer and fluid flow in a square channel rotating in a parallel-mode has been.

Nonboiling Heat Transfer and Friction of Air/Water Mist Flow in a Square Duct With Orthogonal Ribs 1 August | Journal of Thermal Science and Engineering Applications, Vol.

9, No. 4 Heat transfer measurement in a rotating cooling channel with staggered and inline pin-fin arrays using liquid crystal and stroboscopyCited by: 4. This book’s multidisciplinary coverage will give engineers, scientists, researchers and graduate students in the areas of heat, mass, fluid flow and transfer a thorough understanding of the technicalities, methods and applications of boundary layers, with a unified approach to energy, climate change and a sustainable future.

Determine axial variation of: (1) Mean fluid temperature (2) Heat transfer coefficient (3) Surface temperature. Hydrodynamic and Thermal Regions: General Features. xFluid enters with uniform velocity and temperature.

In this study, the flow field and heat transfer characteristics of a straight rectangular rotating channel with channel orientation of 45° and various discrete rib configurations were numerically studied for a fixed Re number of 10, and a range of Ro numbers from 0 to Compared with continuous rib case, the discrete rib case was found to obviously enhance heat transfer on the leading by: 7.Siegel analyzed laminar heat transfer in a tube rotating about an axis perpendicular to the tube axis for a flow that is either radially outward from the axis of rotation or radially inwards to the axis of rotation.

The flow considered is fully developed, with uniform heat addition at the tube wall.Influence of the angle of attack of the fluid at the inlet to the pipe was discussed and it was shown that heat transfer can be significantly increased near the pipe inlet.

In addition to that changing a circular pipe with an elliptical pipe was investigated in two ways: fixing the same hydraulic diameter or the same equivalent by: