Parametric Study of Boiling Heat Transfer in Porous Media

Parametric Study of Boiling Heat Transfer in Porous Media PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 11

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Book Description
Detailed numerical modeling and parametric variation studies were conducted on boiling heat transfer processes in porous deposits with emphasis on applications associated with light water nuclear power reactor systems. The processes of boiling heat transfer in the porous corrosion deposits typically involve phase changes in finite volumetric regions in the porous media. The study examined such processes in two porous media configurations, without chimneys (homogeneous porous structures) and with chimneys (heterogeneous porous structures). A 1-D model and a 2-D model were developed to simulate two-phase flows with phase changes, without dry-out, inside the porous media for both structural configurations. For closure of the governing equations, an empirical correlation of the evaporation rate for phase changes inside the porous media was introduced. In addition, numerical algorithms were developed to solve the coupled nonlinear equations of mass, momentum, energy, capillary pressure, and evaporation rate. The distributions of temperature, thermodynamic saturation, liquid pressure, vapor pressure, liquid velocity, and vapor velocity were predicted. Furthermore, the effects of heat flux, system pressure, porosity, particle diameter, chimney population density, chimney radius, and crud thickness on the all superheat, critical heat flux, and minimum saturation were examined. The predictions were found to be in good agreement with the available experimental results.

Parametric Study of Boiling Heat Transfer in Porous Media

Parametric Study of Boiling Heat Transfer in Porous Media PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 11

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Book Description
Detailed numerical modeling and parametric variation studies were conducted on boiling heat transfer processes in porous deposits with emphasis on applications associated with light water nuclear power reactor systems. The processes of boiling heat transfer in the porous corrosion deposits typically involve phase changes in finite volumetric regions in the porous media. The study examined such processes in two porous media configurations, without chimneys (homogeneous porous structures) and with chimneys (heterogeneous porous structures). A 1-D model and a 2-D model were developed to simulate two-phase flows with phase changes, without dry-out, inside the porous media for both structural configurations. For closure of the governing equations, an empirical correlation of the evaporation rate for phase changes inside the porous media was introduced. In addition, numerical algorithms were developed to solve the coupled nonlinear equations of mass, momentum, energy, capillary pressure, and evaporation rate. The distributions of temperature, thermodynamic saturation, liquid pressure, vapor pressure, liquid velocity, and vapor velocity were predicted. Furthermore, the effects of heat flux, system pressure, porosity, particle diameter, chimney population density, chimney radius, and crud thickness on the all superheat, critical heat flux, and minimum saturation were examined. The predictions were found to be in good agreement with the available experimental results.

A Parametric Study of Boiling Heat Transfer in Horizontal Tube Bundles

A Parametric Study of Boiling Heat Transfer in Horizontal Tube Bundles PDF Author: Juei-Tsuen Hsu
Publisher:
ISBN:
Category : Heat
Languages : en
Pages : 720

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Book Description


Handbook of Porous Media

Handbook of Porous Media PDF Author: Kambiz Vafai
Publisher: CRC Press
ISBN: 9780824788865
Category : Science
Languages : en
Pages : 936

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Book Description
"Presents the most important and up-to-date research related to heat transfer in porous media, focusing on practical applications of the latest studies to engineering products and procedures. Includes theoretical models of fluid flow, capillary effects, application of fractal and percolation characterizing porous materials, multiphase flow and heat transfer, turbulent flow and heat transfer, improved measurement and flow visualization techniques, and enhanced design correlations."

Handbook of Porous Media

Handbook of Porous Media PDF Author: Kambiz Vafai
Publisher: CRC Press
ISBN: 0824741501
Category : Science
Languages : en
Pages : 927

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Book Description
"Presents the most important and up-to-date research related to heat transfer in porous media, focusing on practical applications of the latest studies to engineering products and procedures. Includes theoretical models of fluid flow, capillary effects, application of fractal and percolation characterizing porous materials, multiphase flow and heat transfer, turbulent flow and heat transfer, improved measurement and flow visualization techniques, and enhanced design correlations."

Design and Testing of Experimental Apparatus for Investigation of Boiling Heat Transfer in Porous Media

Design and Testing of Experimental Apparatus for Investigation of Boiling Heat Transfer in Porous Media PDF Author: Nancy Jean Yost
Publisher:
ISBN:
Category : Heat
Languages : en
Pages : 170

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Book Description


A Study of Boiling and Convection in Fluid-saturated Porous Media

A Study of Boiling and Convection in Fluid-saturated Porous Media PDF Author: Prashant Kumar Tewari
Publisher:
ISBN:
Category : Heat
Languages : en
Pages : 364

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Book Description


Essentials of Heat and Fluid Flow in Porous Media

Essentials of Heat and Fluid Flow in Porous Media PDF Author: Arunn Narasimhan
Publisher: Springer Nature
ISBN: 3030998657
Category : Technology & Engineering
Languages : en
Pages : 256

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Book Description
This textbook provides a general overview of porous media flow, and introduces various theoretical tools to characterize and predict the flow. It has been written for graduate and advanced graduate students in various engineering disciplines. It includes the topics such as fluid flow, conduction, convection, and radiation in porous media as well as porous medium aspects of biological systems. The concepts are supported by numerous solved examples to aid self-learning in students. The textbook also contains illustrated diagrams for better understanding of the concepts. This textbook will be useful for the core course of "Flow through Porous media" for graduate and advanced graduate students in various engineering disciplines. This textbook will also serve as a refresher course for researchers who are engaged in research related to porous media flow.

Boiling Heat Transfer

Boiling Heat Transfer PDF Author: R.T. Lahey Jr.
Publisher: Elsevier
ISBN: 1483291383
Category : Technology & Engineering
Languages : en
Pages : 629

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Book Description
This volume covers the modern developments in boiling heat transfer and two-phase flow, and is intended to provide industrial, government and academic researchers with state-of-the-art research findings in the area of multiphase flow and heat transfer technology. Special attention is given to technology transfer, indicating how recent significant results may be used for practical applications. The chapters give detailed technical material that will be useful to engineers and scientists who work in the field of multiphase flow and heat transfer. The authors of all chapters are members of the CMR at Rensselaer, a research centre specializing in the state-of-the-art in multiphase science.

Proceedings of the ASME/JSME ... International Conference on Nuclear Engineering

Proceedings of the ASME/JSME ... International Conference on Nuclear Engineering PDF Author:
Publisher:
ISBN:
Category : Nuclear engineering
Languages : en
Pages : 542

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Book Description


Flow Boiling in Expanding Microchannels

Flow Boiling in Expanding Microchannels PDF Author: Tamanna Alam
Publisher: Springer
ISBN: 3319550322
Category : Science
Languages : en
Pages : 89

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Book Description
This Brief presents an up to date summary of details of the flow boiling heat transfer, pressure drop and instability characteristics; two phase flow patterns of expanding microchannels. Results obtained from the different expanding microscale geometries are presented for comparison and addition to that, comparison with literatures is also performed. Finally, parametric studies are performed and presented in the brief. The findings from this study could help in understanding the complex microscale flow boiling behavior and aid in the design and implementation of reliable compact heat sinks for practical applications.