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Heat Transfer and Thermodynamic Modeling

Heat Transfer and Thermodynamic Modeling PDF Author: Ėnergeticheskiĭ institut im. G.M. Krzhizhanovskogo
Publisher:
ISBN:
Category : Dimensional analysis
Languages : en
Pages : 592

Book Description


Heat Transfer and Thermodynamic Modeling

Heat Transfer and Thermodynamic Modeling PDF Author: Ėnergeticheskiĭ institut im. G.M. Krzhizhanovskogo
Publisher:
ISBN:
Category : Dimensional analysis
Languages : en
Pages : 592

Book Description


Heat Transfer and Thermodynamic Modeling

Heat Transfer and Thermodynamic Modeling PDF Author: Gleb Maksimilianovich Krzhizhanovskiĭ
Publisher:
ISBN:
Category : Heat
Languages : en
Pages : 554

Book Description


Modeling and Approximation in Heat Transfer

Modeling and Approximation in Heat Transfer PDF Author: Leon R. Glicksman
Publisher: Cambridge University Press
ISBN: 1107012171
Category : Mathematics
Languages : en
Pages : 245

Book Description
This book describes the approach to engineering solutions through simplified modeling of important physical features and approximating their behavior. Students will have greater facility in breaking down complex engineering systems into simplified thermal models that allow essential features of their performance to be assessed and modified.

Measurements, Mechanisms, and Models of Heat Transport

Measurements, Mechanisms, and Models of Heat Transport PDF Author: Anne M. Hofmeister
Publisher: Elsevier
ISBN: 0128099828
Category : Science
Languages : en
Pages : 441

Book Description
Measurements, Mechanisms, and Models of Heat Transport offers an interdisciplinary approach to the dynamic response of matter to energy input. Using a combination of fundamental principles of physics, recent developments in measuring time-dependent heat conduction, and analytical mathematics, this timely reference summarizes the relative advantages of currently used methods, and remediates flaws in modern models and their historical precursors. Geophysicists, physical chemists, and engineers will find the book to be a valuable resource for its discussions of radiative transfer models and the kinetic theory of gas, amended to account for atomic collisions being inelastic. This book is a prelude to a companion volume on the thermal state, formation, and evolution of planets. Covering both microscopic and mesoscopic phenomena of heat transport, Measurements, Mechanisms, and Models of Heat Transport offers both the fundamental knowledge and up-to-date measurements and models to encourage further improvem Combines state-of-the-art measurements with core principles to lead to a better understanding of heat conduction and of radiative diffusion, and how these processes are linked Focuses on macroscopic models of heat transport and the underlying physical principles, providing the tools needed to solve many different problems in heat transport Connects thermodynamics with behavior of light in revising the kinetic theory of gas, which underlies all models of heat transport, and uses such links to re-derive formulae for blackbody emissions Explores all states of matter, with an emphasis on crystalline and amorphous solids

Advances in the Modelling of Thermodynamic Systems

Advances in the Modelling of Thermodynamic Systems PDF Author: Essefi, Elhoucine
Publisher: IGI Global
ISBN: 1799888037
Category : Science
Languages : en
Pages : 309

Book Description
Thermodynamics is a common field of study involving many different specialties including physics, chemistry, geology, and cosmology. Thermodynamics is incredibly useful for manmade industrial processes related to material studies, renewable energy, and more. It is essential for professionals to stay current with the developments in thermodynamic systems, as thermodynamics proves vital for understanding natural macroprocesses related to geology, areology, and cosmology. Advances in the Modelling of Thermodynamic Systems discusses the recent advances in modeling of thermodynamic systems as well as the state-of-the-art manmade industrial processes and natural processes taking place on Earth and beyond. It reveals an interdisciplinary vision of thermodynamics from the minuscule to the immense. Covering topics such as entropy generation, linear modeling, and statistical analysis, this premier reference source is an essential resource for engineers, chemists, physicists, mechanics, geologists, cosmologists, students and educators of higher education, libraries, researchers, and academicians.

Modelling of Convective Heat and Mass Transfer in Nanofluids with and Without Boiling and Condensation

Modelling of Convective Heat and Mass Transfer in Nanofluids with and Without Boiling and Condensation PDF Author: Andriy A. Avramenko
Publisher:
ISBN: 9783030950828
Category :
Languages : en
Pages : 0

Book Description
This book presents step-by-step description of the use of Lie group analysis to find symmetry forms and similarity solutions for single- and two-phase laminar and turbulent flows of nanofluids. It outlines novel and unique analytical solutions validated via comparisons with experimental data. The main part of the book is devoted to analytical modeling of film condensation of still and moving vapor with nanoparticles, stable film boiling of nanofluids, instantaneous unsteady boiling and condensation of nano- and ordinary fluids and clarification and quantification of instability conditions in the vapor layer, as well as centrifugal and Dean instability in nanofluids. It was demonstrated that such complex phenomena can be successfully simulated using the proposed approaches validated via reliable experiments. The book is intended for scientists, engineers, graduate and undergraduate students specializing in the area of engineering thermodynamics, heat and mass transfer and energy systems.

The Mathematics of Thermal Modeling

The Mathematics of Thermal Modeling PDF Author: John Michael Dowden
Publisher: CRC Press
ISBN: 1420035622
Category : Mathematics
Languages : en
Pages : 305

Book Description
The use of lasers for various applications in materials processing has grown rapidly in recent years. Lasers are by nature particularly well suited to automation, but to ensure repeatability and reliability, the engineers employing them must not simply rely on numerical analysis software. They must have a firm grasp on the physical principles invol

Heat Transfer Modeling

Heat Transfer Modeling PDF Author: George Sidebotham
Publisher: Springer
ISBN: 3319145142
Category : Science
Languages : en
Pages : 524

Book Description
This innovative text emphasizes a "less-is-more" approach to modeling complicated systems such as heat transfer by treating them first as "1-node lumped models" that yield simple closed-form solutions. The author develops numerical techniques for students to obtain more detail, but also trains them to use the techniques only when simpler approaches fail. Covering all essential methods offered in traditional texts, but with a different order, Professor Sidebotham stresses inductive thinking and problem solving as well as a constructive understanding of modern, computer-based practice. Readers learn to develop their own code in the context of the material, rather than just how to use packaged software, offering a deeper, intrinsic grasp behind models of heat transfer. Developed from over twenty-five years of lecture notes to teach students of mechanical and chemical engineering at The Cooper Union for the Advancement of Science and Art, the book is ideal for students and practitioners across engineering disciplines seeking a solid understanding of heat transfer. This book also: · Adopts a novel inductive pedagogy where commonly understood examples are introduced early and theory is developed to explain and predict readily recognized phenomena · Introduces new techniques as needed to address specific problems, in contrast to traditional texts’ use of a deductive approach, where abstract general principles lead to specific examples · Elucidates readers’ understanding of the "heat transfer takes time" idea—transient analysis applications are introduced first and steady-state methods are shown to be a limiting case of those applications · Focuses on basic numerical methods rather than analytical methods of solving partial differential equations, largely obsolete in light of modern computer power · Maximizes readers’ insights to heat transfer modeling by framing theory as an engineering design tool, not as a pure science, as has been done in traditional textbooks · Integrates practical use of spreadsheets for calculations and provides many tips for their use throughout the text examples

Fluid Mechanics and Heat Transfer

Fluid Mechanics and Heat Transfer PDF Author: Kaveh Hariri Asli
Publisher: CRC Press
ISBN: 1498707696
Category : Science
Languages : en
Pages : 246

Book Description
This valuable new book focuses on new methods and techniques in fluid mechanics and heat transfer in mechanical engineering. The book includes the research of the authors on the development of optimal mathematical models and also uses modern computer technology and mathematical methods for the analysis of nonlinear dynamic processes.It covers techn

Entropy Generation Minimization

Entropy Generation Minimization PDF Author: Adrian Bejan
Publisher: CRC Press
ISBN: 9780849396519
Category : Science
Languages : en
Pages : 400

Book Description
This book presents the diverse and rapidly expanding field of Entropy Generation Minimization (EGM), the method of thermodynamic optimization of real devices. The underlying principles of the EGM method - also referred to as "thermodynamic optimization," "thermodynamic design," and "finite time thermodynamics" - are thoroughly discussed, and the method's applications to real devices are clearly illustrated. The EGM field has experienced tremendous growth during the 1980s and 1990s. This book places EGM's growth in perspective by reviewing both sides of the field - engineering and physics. Special emphasis is given to chronology and to the relationship between the more recent work and the pioneering work that outlined the method and the field. Entropy Generation Minimization combines the fundamental principles of thermodynamics, heat transfer, and fluid mechanics. EGM applies these principles to the modeling and optimization of real systems and processes that are characterized by finite size and finite time constraints, and are limited by heat and mass transfer and fluid flow irreversibilities. Entropy Generation Minimization provides a straightforward presentation of the principles of the EGM method, and features examples that elucidate concepts and identify recent EGM advances in engineering and physics. Modern advances include the optimization of storage by melting and solidification; heat exchanger design; power from hot-dry-rock deposits; the on & off operation of defrosting refrigerators and power plants with fouled heat exchangers; the production of ice and other solids; the maximization of power output in simple power plant models with heat transfer irreversibilities; the minimization of refrigerator power input in simple models; and the optimal collection and use of solar energy.