An Investigation of Turbulent Swirling Flow with Heat Transfer

An Investigation of Turbulent Swirling Flow with Heat Transfer PDF Author: Tae-Hyun Chang
Publisher:
ISBN:
Category : Galerkin methods
Languages : en
Pages : 0

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An Investigation of Turbulent Swirling Flow with Heat Transfer

An Investigation of Turbulent Swirling Flow with Heat Transfer PDF Author: Tae-Hyun Chang
Publisher:
ISBN:
Category : Galerkin methods
Languages : en
Pages : 0

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Book Description


An Investigation of Turbulent Swirling Flow with Heat Transfer

An Investigation of Turbulent Swirling Flow with Heat Transfer PDF Author: Tae-Hyun Chang
Publisher:
ISBN:
Category : Galerkin methods
Languages : en
Pages :

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A Study of Flow and Heat Transfer Characteristics of Turbulent, Swirling Flow with and Without an Abrupt Pipe Expansion

A Study of Flow and Heat Transfer Characteristics of Turbulent, Swirling Flow with and Without an Abrupt Pipe Expansion PDF Author: Michael Joseph Staley
Publisher:
ISBN:
Category : Heat
Languages : en
Pages : 372

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Heat Transfer and Velocity Measurements in Turbulent Swirling Flows Through an Abrupt Axisymmetric Expansion

Heat Transfer and Velocity Measurements in Turbulent Swirling Flows Through an Abrupt Axisymmetric Expansion PDF Author: Paul Allen Dellenback
Publisher:
ISBN:
Category : Heat
Languages : en
Pages : 624

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Heat transfer and friction in turbulent boundary layer of the swirling flow

Heat transfer and friction in turbulent boundary layer of the swirling flow PDF Author: Ė. P. Volčkov
Publisher:
ISBN:
Category :
Languages : en
Pages : 44

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Numerical Prediction of Flow, Heat Transfer, Turbulence and Combustion

Numerical Prediction of Flow, Heat Transfer, Turbulence and Combustion PDF Author: D. Brian Spalding
Publisher: Elsevier
ISBN: 1483160661
Category : Technology & Engineering
Languages : en
Pages : 445

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Book Description
Numerical Prediction of Flow, Heat Transfer, Turbulence and Combustion: Selected Works of Professor D. Brian Spalding focuses on the many contributions of Professor Spalding on thermodynamics. This compilation of his works is done to honor the professor on the occasion of his 60th birthday. Relatively, the works contained in this book are selected to highlight the genius of Professor Spalding in this field of interest. The book presents various research on combustion, heat transfer, turbulence, and flows. His thinking on separated flows paved the way for the multi-dimensional modeling of turbulence. Arguments on the universality of the models of turbulence and the problems that are associated with combustion engineering are clarified. The text notes the importance of combustion science as well as the problems associated with it. Mathematical computations are also presented in determining turbulent flows in different environments, including on curved pipes, curved ducts, and rotating ducts. These calculations are presented to further strengthen the claims of Professor Spalding in this discipline. The book is a great find for those who are interested in studying thermodynamics.

Experimental and Analytical Study of Heat Transfer and Turbulent Flow Field in Tangentially Injected Swirl Flow

Experimental and Analytical Study of Heat Transfer and Turbulent Flow Field in Tangentially Injected Swirl Flow PDF Author: Fengteng Chang
Publisher:
ISBN:
Category : Heat
Languages : en
Pages : 342

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Modeling and Measurement of Turbulent Swirling Flows Through Abrupt Expansions

Modeling and Measurement of Turbulent Swirling Flows Through Abrupt Expansions PDF Author: G. P. Neitzel
Publisher:
ISBN:
Category :
Languages : en
Pages : 114

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Book Description
Contents: A study of sudden expansion pipe flow using an algebraic-stress model of turbulence; Comment on 'The flowfield in a suddenly enlarged combustion chamber'; Turbulent flow prediction in a sudden axisymmetric expansion; Heat transfer to turbulent swirling flow through a sudden axisymmetric expansion; Measurements in turbulent swirling flow through an abrupt axisymmetric expansion. The first three papers describe numerical predictions of the flowfield; The next describes experimental measurements of local convective heat transfer on the tube walls downstream of expansion; and the last describes detailed mean and fluctuating flowfield measurements both upstream and downstream of the expansion including precessing vortex core phenomena.

Turbulent Swirling Flow Downstream of an Abrupt Pipe Expansion -- Modeling and Experimental Measurements

Turbulent Swirling Flow Downstream of an Abrupt Pipe Expansion -- Modeling and Experimental Measurements PDF Author: Darryl E. Metzger
Publisher:
ISBN:
Category :
Languages : en
Pages : 53

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Book Description
This report covers activities during the first year under ONR contract N00014-81-K-0428. The project is a combined experimental and numerical investigation of heat transfer and fluid dynamic characteristics of a turbulent swirling flow in a pipe downstream of a sudden expansion. Local wall heat transfer measurements as well as detailed flowfield measurements utilizing laser-Doppler velocimetry (LDV) techniques are planned for the experiments. Numerical modeling efforts will focus on the development of a code which is efficient enough to be useful for design purposes, while accurately modeling the flow field.

An Experimental Investigation of the Effects of Swirling and Pulsing the Flow Through an Axisymmetric Duct

An Experimental Investigation of the Effects of Swirling and Pulsing the Flow Through an Axisymmetric Duct PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

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Book Description
It is known that the presence of swirl in a flow stream can affect heat and mass transfer rates, and pulsatile flow has important aspects in physiological studies and in non-stready turbulent flows. The investigation consisted of an experimental study of the generation and decay of swirling flow in a duct utilizing a new method of swirl generation, and the measurement of the fluctuations imposed on the steady turbulent flow profile by pulsing the flow in a duct. New results were obtained that gave insight into the effects of swirling and pulsing the flow through an asisymmetric duct.