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Analytical Heat Transfer

Analytical Heat Transfer

Analytical Heat Transfer explains how to analyze and solve conduction convection and radiation heat transfer problems. It enables students to tackle complex engineering heat transfer problems prevalent in practice. Covering heat transfer in high-speed flows and unsteady highly turbulent flows the book also discusses enhanced heat transfer in channels heat transfer in rotating channels numerical modeling for turbulent flow heat transfer and thermally developing heat transfer in a circular tube. The second edition features new content on Duhamel’s superposition method Green’s function method for transient heat conduction finite-difference method for steady state and transient heat conduction in cylindrical coordinates and laminar mixed convection. It includes two new chapters on laminar-to-turbulent transitional heat transfer and turbulent flow heat transfer enhancement in addition to end-of-chapter problems. The book bridges the gap between basic heat transfer undergraduate courses and advanced heat transfer graduate courses for a single semester of intermediate heat transfer advanced conduction/radiation heat transfer or convection heat transfer. Features: Focuses on analyzing and solving classic heat transfer problems in conduction convection and radiation Covers 2-D and 3-D view factor evaluation combined radiation with conduction and/or convection and gas radiation optically thin and optically thick limits Features updated content and new chapters on mass and heat transfer analogy thermally developing heat transfer in a circular tube laminar-turbulent transitional heat transfer unsteady highly turbulent flows enhanced heat transfer in channels heat transfer in rotating channels and numerical modeling for turbulent flow heat transfer Provides step-by-step mathematical formula derivations analytical solution procedures and demonstration examples Includes end-of-chapter problems with an accompanying Solutions Manual for instructors This book is ideal for undergraduate and graduate students studying basic heat transfer and advanced heat transfer.

GBP 110.00
1

Technology Transfer

Advanced Heat Transfer

Thermal Radiation Heat Transfer

Thermal Radiation Heat Transfer

The seventh edition of this classic text outlines the fundamental physical principles of thermal radiation as well as analytical and numerical techniques for quantifying radiative transfer between surfaces and within participating media. The textbook includes newly expanded sections on surface properties electromagnetic theory scattering and absorption of particles and near-field radiative transfer and emphasizes the broader connections to thermodynamic principles. Sections on inverse analysis and Monte Carlo methods have been enhanced and updated to reflect current research developments along with new material on manufacturing renewable energy climate change building energy efficiency and biomedical applications. Features: Offers full treatment of radiative transfer and radiation exchange in enclosures. Covers properties of surfaces and gaseous media and radiative transfer equation development and solutions. Includes expanded coverage of inverse methods electromagnetic theory Monte Carlo methods and scattering and absorption by particles. Features expanded coverage of near-field radiative transfer theory and applications. Discusses electromagnetic wave theory and how it is applied to thermal radiation transfer. This textbook is ideal for Professors and students involved in first-year or advanced graduate courses/modules in Radiative Heat Transfer in engineering programs. In addition professional engineers scientists and researchers working in heat transfer energy engineering aerospace and nuclear technology will find this an invaluable professional resource. Over 350 surface configuration factors are available online many with online calculation capability. Online appendices provide information on related areas such as combustion radiation in porous media numerical methods and biographies of important figures in the history of the field. A Solutions Manual is available for instructors adopting the text. | Thermal Radiation Heat Transfer

GBP 125.00
1

Heat Transfer A Systematic Learning Approach

Forensic DNA Transfer

Forensic DNA Transfer

Forensic DNA Transfer provides a guide to the recognition and current understanding of DNA transfer in forensic criminal investigations. Increased improvements in technology mean that it is now routinely possible to obtain DNA profiles from non-visible deposits. How or when the DNA in question was deposited may be an issue in the context of the case especially if the donor of the DNA is not in dispute. A DNA profile alone cannot reveal when or how that DNA was deposited at a crime scene nor can it reveal the body matter from which it originated. Issues of transfer associated with activities may be debated—which the traditional discrimination purpose of DNA profiling cannot address. DNA may be everywhere and anywhere—in homes at workplaces during transport and on personal items including clothing. DNA from a person may be on an object they have never contacted or in a room they have never entered. Concepts discussed in the book include non-self DNA on hands through day-to-day activities the prevalence of background DNA in the environment and perhaps on the exhibit the persistence of any DNA transferred and that a DNA result will depend on these variables as well as recovery techniques. Since DNA may be transferred to an exhibit: (a) during the commission of a crime (b) before the crime and/or (c) after the crime through handling examination and testing this book covers various transfer pathways and sources of DNA. Documented cases of inadvertent transfer of DNA resulting in wrongful convictions or the misdirection of criminal investigations are discussed—with an emphasis on contamination mitigation throughout the entire process. Forensic DNA Transfer examines the additional complexity resulting from non-visible deposits of DNA that impact on sampling and testing regimes. The changing understanding of the composition of purported 'touch DNA' deposits from the skin including extracellular DNA transported via body secretions is described. Further the newer focus on interpreting DNA evidence—using activity level propositions and the rationale and associated issues—is also discussed.

GBP 46.99
1

Mammalian Egg Transfer

Intermediate Heat Transfer

Computational Fluid Dynamics and Heat Transfer

Computational Fluid Mechanics and Heat Transfer

Experimental Methods in Heat Transfer and Fluid Mechanics

Transfer Learning through Embedding Spaces

Fundamental Mass Transfer Concepts in Engineering Applications

Policy Transfer and Norm Circulation Towards an Interdisciplinary and Comparative Approach

Information Resources and Technology Transfer Management in Developing Countries

The Transfer Experience A Handbook for Creating a More Equitable and Successful Postsecondary System

Conjugate Problems in Convective Heat Transfer

Conjugate Problems in Convective Heat Transfer

Illustrates Calculations Using Machine and Technological Processes The conjugate heat transfer (CHT) problem addresses the thermal interaction between a body and fluid flowing over or through it. This is an essential consideration in nature and different areas of engineering including mechanics aerospace nuclear engineering biology and meteorology. Advanced conjugate modeling of the heat transfer process is now used extensively in a wide range of applications. Conjugate Problems in Convective Heat Transfer addresses the latest theory methods and applications associated with both analytical and numerical methods of solution CHT problems and their exact and approximate solutions. It demonstrates how the true value of a CHT solution is derived by applying these solutions to contemporary engineering design analysis. Assembling cutting-edge information on modern modeling from more than 200 publications this book presents more than 100 example applications in thermal treatment materials machinery operation and technological processes. Creating a practical review of current CHT development the author includes methods associated with estimating heat transfer particularly that from arbitrary non-isothermal surfaces in both laminar and turbulent flows. Harnesses the Modeling Power of CHT Unique in its consistent compilation and application of current knowledge this book presents advanced CHT analysis as a powerful tool for modeling various device operations and technological processes from relatively simple procedures to complex multistage nonlinear processes.

GBP 59.99
1

Compact Heat Exchangers for Energy Transfer Intensification Low Grade Heat and Fouling Mitigation

Compact Heat Exchangers for Energy Transfer Intensification Low Grade Heat and Fouling Mitigation

Compact Heat Exchangers for Energy Transfer Intensification: Low-Grade Heat and Fouling Mitigation provides theoretical and experimental background on heat transfer intensification in modern heat exchangers. Emphasizing applications in complex heat recovery systems for the process industries this book: Covers various issues related to low-grade heat including waste heat from industry and buildings storage and transport of thermal energy and heat transfer equipment requirements Explains the basic principles terminology and heat transfer aspects of compactness as well as the concept of intensified heat area targets at process integration Pays special attention to the mitigation of fouling in heat exchangers and their systems describing fouling deposition and threshold fouling mechanisms Delivers a thoughtful analysis of the economics of implementation considering energy–capital trade-off capital cost estimation and energy prices Presents illustrative case studies of specific applications in food and chemical production plants Compact Heat Exchangers for Energy Transfer Intensification: Low-Grade Heat and Fouling Mitigation not only highlights key developments in compact heat exchangers but also instills a practical knowledge of the latest process integration and heat transfer enhancement methodologies. | Compact Heat Exchangers for Energy Transfer Intensification Low Grade Heat and Fouling Mitigation

GBP 84.99
1

Mathematical Modelling of Heat Transfer Performance of Heat Exchanger using Nanofluids

Mathematical Modelling of Heat Transfer Performance of Heat Exchanger using Nanofluids

The book presents a detailed discussion of nanomaterials nanofluids and application of nanofluids as a coolant to reduce heat transfer. It presents a detailed approach to the formulation of mathematical modelling applicable to any type of case study with a validation approach and sensitivity and optimization. Covers the aspects of formulation of mathematical modelling with optimization and sensitivity analysis Presents a case study based on heat transfer improvement and performs operations using nanofluids Examines the analysis of experimental data by the formulation of a mathematical model and correlation between input data and output data Illustrates heat transfer improvement of heat exchangers using nanofluids through the mathematical modelling approach Discusses applications of nanofluids in cooling systems This book discusses the aspect of formulation of mathematical modelling with optimization and sensitivity analysis. It further presents a case study based on the heat transfer improvement and performing operations using nanofluids. The text covers sensitivity analysis and analysis from the indices of the model. It also discusses important concepts such as nanomaterials applications of nanomaterials and nanofluids. It will serve as an ideal reference text for senior undergraduate and graduate students in fields including mechanical engineering chemical engineering aerospace engineering industrial engineering and manufacturing engineering. | Mathematical Modelling of Heat Transfer Performance of Heat Exchanger using Nanofluids

GBP 82.99
1

University Technology Transfer The globalization of academic innovation

University Technology Transfer The globalization of academic innovation

Universities have become essential players in the generation of knowledge and innovation. Through the commercialization of technology they have developed the ability to influence regional economic growth. By examining different commercialization models this book analyses technology transfer at universities as part of a national and regional system. It provides insight as to why certain models work better than others and reaffirms that technology transfer programs must be linked to their regional and commercial environments. Using a global perspective on technology commercialization this book divides the discussion between developed and developing counties according to the level of university commercialization capability. Critical cases as well as country reports examine the policies and culture of university involvement in economic development relationships between university and industry and the commercialization of technology first developed at universities. In addition each chapter provides examples from specific universities in each country from a regional national and international comparative perspective. This book includes articles by leading practitioners as well as researchers and will be highly relevant to all those with an interest in innovation studies organizational studies regional economics higher education public policy and business entrepreneurship. | University Technology Transfer The globalization of academic innovation

GBP 39.99
1