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Thermal Engineering Research Developments
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Editors: Jovan Evgova and Ognjan Kostadinov
Book Description:
Different thermal engineering calculations can be useful tools to solve complex issues nowadays in thermal equipment design for several industrial applications. In this book, the Boltzmann Transport Equations (BTE) is examined to formulate the transport laws for equilibrium and irreversible thermodynamics. Particular attention is paid to the energetic processes in adsorption phenomena as well as in semiconductors from the view point of irreversible thermodynamics. The problems of heat exchange in laser medium and pump DLAs, as well as the associated thermal stress and thermal strain are also studied to seek the methods for enhancing heat transfer, lowering the device temperature and improving temperature uniformity and reducing thermal stress. The authors of this book also discuss the design, retrofit and the thermal performance analysis of industrial cooling systems. Other chapters include a proposal for a methodology to predict the heat transfer during the cutting process, an analysis of an optimization process for a reverse cycle machine, and numerical results concerning the simulation of semiconductors melts with free capillary surfaces.



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Table of Contents:
Preface

Optimizing Preliminary Design of Industrial Equipment Involving Different Thermal Engineering Calculation Procedures over a Power Plant;pp. 1-83
(J. M. Blanco and F. Peña, Dpto. Máquinas y Motores Térmicos, Escuela Técnica Superior de Ingeniería, Universidad del País Vasco / E.H.U., Bilbao. España)

Study on Adsorption and Thermoelectric Cooling Systems Using Boltzmann Transport Equation Approach;pp. 85-152
(Bidyut Baran Saha, Anutosh Chakrabortym, PhD. Ibrahim I. El-Sharkawy, Kim Choon NG, Interdisciplinary Graduate School of Engineering Sciences, Kyushu University, Fukuoka, Japan and others)

The Heat Transfer, Thermal Stress and Thermal Strain in High-power Solid-state Lasers;pp. 153-204
(Zhigang Li, Xiulan Huai, Institute of Engineering Thermophysics, Chinese Academy of Sciences, Beijing, China, and others)

Thermal and Fluid Dynamics in Jet Flow;pp. 205-243
(Fabio Gori and Ivano Petracci, Department of Mechanical Engineering, University of Rome, Rome, Italy)

Mass and Energy-Capital Conservation Equations for the Time Evolution of Non-Renewable Energy Resources;pp. 245-282
(Fabio Gori, Department of Mechanical Engineering, University of Rome “Tor Vergata”, Rome, Italy)

Advances in Thermal Modeling of Laser Chemical Vapor Deposition and Infiltration;pp. 283-316
(Yuwen Zhang, Department of Mechanical and Aerospace Engineering, University of Missouri, Columbia, MO)

Thermal Analysis of Industrial Cooling Systems;pp. 317-344
(Martín Picón Núñez, Department of Chemical Engineering, University of Guanajuato, Mexico)

Heat Transfer during Cutting Process: Modelling and Prediction Towards Real Time Control;pp. 345-368
(M. Lazard, GIP InSIC Institut Supérieur d'Ingénierie de la Conception, France)

Performance Evaluation of a Conventional and a Double-glass Cover Solar Stills;pp. 369-391
(Sabah A. Abdul-Wahab, Rafiq A. Siddiqui, Ali M. Al-Damkhi, Hilal Al-Hinai, Mechanical & Industrial Engineering Department, College of Engineering, Sultan Qaboos University, Oman, and others)

Transonic and Turbulent Flow around Gas Turbine Blade;pp. 393-405
(S. Djouimaa, Physical Department, Sciences Faculty, University of El Haj Lakhdar, Batna, Algeria)

Optimization of Refrigeration Carnot Cycle Machine. Case Study;pp. 407-427
(Camelia Petre, Michel Feidt, Monica Costea, Stoian Petrescu, LEMTA, University “Henri Poincare” Nancy I, UMR, Cedex France

Numerical Computation of Heat Transfer and Fluid Flow during Floating Crystal Growth of Silicon;pp. 429-447
(R. Younsi, A. Harkati, M. Drir & D. Ouadjaout, Applied Sciences Department, University Of Quebec At Chicoutimi, Canada, and others)

Modeling and Stability Analyses of Natural Circulation Boiler;pp. 449-528
(Walter Heimo, Vienna University of Technology, Institute of Thermodynamics and Energy Conversion, Vienna, Austria)

Index

   Series:
      Mechanical Engineering Theory and Applications
   Binding: Hardcover
   Pub. Date: 2010 2nd Quarter
   Pages: 7 x 10, 539 pp.
   ISBN: 978-1-60741-497-1
   Status: AV
  
Status Code Description
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FP Final Production
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Thermal Engineering Research Developments