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Second Law Aspects of Thermal Design

Second Law Aspects of Thermal Design PDF Author: Adrian Bejan
Publisher:
ISBN:
Category : Entropy
Languages : en
Pages : 114

Book Description


Second Law Aspects of Thermal Design

Second Law Aspects of Thermal Design PDF Author: Adrian Bejan
Publisher:
ISBN:
Category : Entropy
Languages : en
Pages : 114

Book Description


Second Law Aspects of Thermal Design

Second Law Aspects of Thermal Design PDF Author: American Society of Mechanical Engineers
Publisher:
ISBN:
Category : Heat engineering
Languages : en
Pages : 99

Book Description


Second Law Aspects of Thermal Design

Second Law Aspects of Thermal Design PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Second Law Aspects of Thermal Design

Second Law Aspects of Thermal Design PDF Author: A. Bejan
Publisher:
ISBN: 9789994323449
Category :
Languages : en
Pages :

Book Description


Second law aspects of thermal design : presented at the 22nd National Heat Transfer Conference and exhibition Niagara Falls, New York, August 5 - 8, 1984

Second law aspects of thermal design : presented at the 22nd National Heat Transfer Conference and exhibition Niagara Falls, New York, August 5 - 8, 1984 PDF Author: National Heat Transfer Conference
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Second Law Aspects of Thermal Design

Second Law Aspects of Thermal Design PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Thermal Design and Optimization

Thermal Design and Optimization PDF Author: Adrian Bejan
Publisher: John Wiley & Sons
ISBN: 9780471584674
Category : Technology & Engineering
Languages : en
Pages : 562

Book Description
A comprehensive and rigorous introduction to thermal system designfrom a contemporary perspective Thermal Design and Optimization offers readers a lucid introductionto the latest methodologies for the design of thermal systems andemphasizes engineering economics, system simulation, andoptimization methods. The methods of exergy analysis, entropygeneration minimization, and thermoeconomics are incorporated in anevolutionary manner. This book is one of the few sources available that addresses therecommendations of the Accreditation Board for Engineering andTechnology for new courses in design engineering. Intended forclassroom use as well as self-study, the text provides a review offundamental concepts, extensive reference lists, end-of-chapterproblem sets, helpful appendices, and a comprehensive case studythat is followed throughout the text. Contents include: * Introduction to Thermal System Design * Thermodynamics, Modeling, and Design Analysis * Exergy Analysis * Heat Transfer, Modeling, and Design Analysis * Applications with Heat and Fluid Flow * Applications with Thermodynamics and Heat and Fluid Flow * Economic Analysis * Thermoeconomic Analysis and Evaluation * Thermoeconomic Optimization Thermal Design and Optimization offers engineering students,practicing engineers, and technical managers a comprehensive andrigorous introduction to thermal system design and optimizationfrom a distinctly contemporary perspective. Unlike traditionalbooks that are largely oriented toward design analysis andcomponents, this forward-thinking book aligns itself with anincreasing number of active designers who believe that moreeffective, system-oriented design methods are needed. Thermal Design and Optimization offers a lucid presentation ofthermodynamics, heat transfer, and fluid mechanics as they areapplied to the design of thermal systems. This book broadens thescope of engineering design by placing a strong emphasis onengineering economics, system simulation, and optimizationtechniques. Opening with a concise review of fundamentals, itdevelops design methods within a framework of industrialapplications that gradually increase in complexity. Theseapplications include, among others, power generation by large andsmall systems, and cryogenic systems for the manufacturing,chemical, and food processing industries. This unique book draws on the best contemporary thinking aboutdesign and design methodology, including discussions of concurrentdesign and quality function deployment. Recent developments basedon the second law of thermodynamics are also included, especiallythe use of exergy analysis, entropy generation minimization, andthermoeconomics. To demonstrate the application of important designprinciples introduced, a single case study involving the design ofa cogeneration system is followed throughout the book. In addition, Thermal Design and Optimization is one of the best newsources available for meeting the recommendations of theAccreditation Board for Engineering and Technology for more designemphasis in engineering curricula. Supported by extensive reference lists, end-of-chapter problemsets, and helpful appendices, this is a superb text for both theclassroom and self-study, and for use in industrial design,development, and research. A detailed solutions manual is availablefrom the publisher.

Second Law Analysis of Thermal Systems

Second Law Analysis of Thermal Systems PDF Author: Michael J. Moran
Publisher:
ISBN:
Category : Fluid dynamics
Languages : en
Pages : 226

Book Description


Handbook of Applied Thermal Design

Handbook of Applied Thermal Design PDF Author: Eric C. Guyer
Publisher: CRC Press
ISBN: 9781560328117
Category : Technology & Engineering
Languages : en
Pages : 710

Book Description
Gives a foundation to the four principle facets of thermal design: heat transfer analysis, materials performance, heating and cooling technology, and instrumentation and control. The focus is on providing practical thermal design and development guidance across the spectrum of problem analysis, material applications, equipment specification, and sensor and control selection.

Compact Heat Exchangers

Compact Heat Exchangers PDF Author: J.E. Hesselgreaves
Publisher: Elsevier
ISBN: 0080529542
Category : Technology & Engineering
Languages : en
Pages : 417

Book Description
This book presents the ideas and industrial concepts in compact heat exchanger technology that have been developed in the last 10 years or so. Historically, the development and application of compact heat exchangers and their surfaces has taken place in a piecemeal fashion in a number of rather unrelated areas, principally those of the automotive and prime mover, aerospace, cryogenic and refrigeration sectors. Much detailed technology, familiar in one sector, progressed only slowly over the boundary into another sector. This compartmentalisation was a feature both of the user industries themselves, and also of the supplier, or manufacturing industries. These barriers are now breaking down, with valuable cross-fertilisation taking place. One of the industrial sectors that is waking up to the challenges of compact heat exchangers is that broadly defined as the process sector. If there is a bias in the book, it is towards this sector. Here, in many cases, the technical challenges are severe, since high pressures and temperatures are often involved, and working fluids can be corrosive, reactive or toxic. The opportunities, however, are correspondingly high, since compacts can offer a combination of lower capital or installed cost, lower temperature differences (and hence running costs), and lower inventory. In some cases they give the opportunity for a radical re-think of the process design, by the introduction of process intensification (PI) concepts such as combining process elements in one unit. An example of this is reaction and heat exchange, which offers, among other advantages, significantly lower by-product production.To stimulate future research, the author includes coverage of hitherto neglected approaches, such as that of the Second Law (of Thermodynamics), pioneered by Bejan and co- workers. The justification for this is that there is increasing interest in life-cycle and sustainable approaches to industrial activity as a whole, often involving exergy (Second Law) analysis. Heat exchangers, being fundamental components of energy and process systems, are both savers and spenders of exergy, according to interpretation.