Thermodynamic Analysis Of Combustion Engines
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Author |
: Ashley S. Campbell |
Publisher |
: John Wiley & Sons |
Total Pages |
: 388 |
Release |
: 1979-03-15 |
ISBN-10 |
: UCSD:31822011246311 |
ISBN-13 |
: |
Rating |
: 4/5 (11 Downloads) |
Synopsis Thermodynamic Analysis of Combustion Engines by : Ashley S. Campbell
Intended for a second course in thermodynamics. Explains in detail how the analysis of each engine system can be formulated for a computer program. Examines all present day engines which operate on the internal combustion system, including gas turbines, two-stroke and four-stroke internal combustion engines, both Otto and Diesel cycles, liquid propellant rockets, free piston engines, and powders in guns. Includes chemical equilibrium, explaining how equilibrium compositions in multireaction systems can be calculated. Uses SI units exclusively.
Author |
: Richard Stone |
Publisher |
: Bloomsbury Publishing |
Total Pages |
: 516 |
Release |
: 2017-09-16 |
ISBN-10 |
: 9781137028297 |
ISBN-13 |
: 1137028297 |
Rating |
: 4/5 (97 Downloads) |
Synopsis Introduction to Internal Combustion Engines by : Richard Stone
Now in its fourth edition, this textbook remains the indispensable text to guide readers through automotive or mechanical engineering, both at university and beyond. Thoroughly updated, clear, comprehensive and well-illustrated, with a wealth of worked examples and problems, its combination of theory and applied practice aids in the understanding of internal combustion engines, from thermodynamics and combustion to fluid mechanics and materials science. This textbook is aimed at third year undergraduate or postgraduate students on mechanical or automotive engineering degrees. New to this Edition: - Fully updated for changes in technology in this fast-moving area - New material on direct injection spark engines, supercharging and renewable fuels - Solutions manual online for lecturers
Author |
: Jerald A. Caton |
Publisher |
: John Wiley & Sons |
Total Pages |
: 381 |
Release |
: 2015-12-14 |
ISBN-10 |
: 9781119037569 |
ISBN-13 |
: 1119037565 |
Rating |
: 4/5 (69 Downloads) |
Synopsis An Introduction to Thermodynamic Cycle Simulations for Internal Combustion Engines by : Jerald A. Caton
This book provides an introduction to basic thermodynamic engine cycle simulations, and provides a substantial set of results. Key features includes comprehensive and detailed documentation of the mathematical foundations and solutions required for thermodynamic engine cycle simulations. The book includes a thorough presentation of results based on the second law of thermodynamics as well as results for advanced, high efficiency engines. Case studies that illustrate the use of engine cycle simulations are also provided.
Author |
: Colin R. Ferguson |
Publisher |
: John Wiley & Sons |
Total Pages |
: 477 |
Release |
: 2015-07-01 |
ISBN-10 |
: 9781118926376 |
ISBN-13 |
: 1118926374 |
Rating |
: 4/5 (76 Downloads) |
Synopsis Internal Combustion Engines by : Colin R. Ferguson
Since the publication of the Second Edition in 2001, there have been considerable advances and developments in the field of internal combustion engines. These include the increased importance of biofuels, new internal combustion processes, more stringent emissions requirements and characterization, and more detailed engine performance modeling, instrumentation, and control. There have also been changes in the instructional methodologies used in the applied thermal sciences that require inclusion in a new edition. These methodologies suggest that an increased focus on applications, examples, problem-based learning, and computation will have a positive effect on learning of the material, both at the novice student, and practicing engineer level. This Third Edition mirrors its predecessor with additional tables, illustrations, photographs, examples, and problems/solutions. All of the software is ‘open source’, so that readers can see how the computations are performed. In addition to additional java applets, there is companion Matlab code, which has become a default computational tool in most mechanical engineering programs.
Author |
: Jamil Ghojel |
Publisher |
: John Wiley & Sons |
Total Pages |
: 534 |
Release |
: 2020-04-20 |
ISBN-10 |
: 9781119548768 |
ISBN-13 |
: 1119548764 |
Rating |
: 4/5 (68 Downloads) |
Synopsis Fundamentals of Heat Engines by : Jamil Ghojel
Summarizes the analysis and design of today’s gas heat engine cycles This book offers readers comprehensive coverage of heat engine cycles. From ideal (theoretical) cycles to practical cycles and real cycles, it gradually increases in degree of complexity so that newcomers can learn and advance at a logical pace, and so instructors can tailor their courses toward each class level. To facilitate the transition from one type of cycle to another, it offers readers additional material covering fundamental engineering science principles in mechanics, fluid mechanics, thermodynamics, and thermochemistry. Fundamentals of Heat Engines: Reciprocating and Gas Turbine Internal-Combustion Engines begins with a review of some fundamental principles of engineering science, before covering a wide range of topics on thermochemistry. It next discusses theoretical aspects of the reciprocating piston engine, starting with simple air-standard cycles, followed by theoretical cycles of forced induction engines, and ending with more realistic cycles that can be used to predict engine performance as a first approximation. Lastly, the book looks at gas turbines and covers cycles with gradually increasing complexity to end with realistic engine design-point and off-design calculations methods. Covers two main heat engines in one single reference Teaches heat engine fundamentals as well as advanced topics Includes comprehensive thermodynamic and thermochemistry data Offers customizable content to suit beginner or advanced undergraduate courses and entry-level postgraduate studies in automotive, mechanical, and aerospace degrees Provides representative problems at the end of most chapters, along with a detailed example of piston-engine design-point calculations Features case studies of design-point calculations of gas turbine engines in two chapters Fundamentals of Heat Engines can be adopted for mechanical, aerospace, and automotive engineering courses at different levels and will also benefit engineering professionals in those fields and beyond.
Author |
: George Alfred Goodenough |
Publisher |
: |
Total Pages |
: 638 |
Release |
: 1927 |
ISBN-10 |
: IND:30000099762522 |
ISBN-13 |
: |
Rating |
: 4/5 (22 Downloads) |
Synopsis A Thermodynamic Analysis of Internal Combustion Engine Cycles by : George Alfred Goodenough
Author |
: D. Winterbone |
Publisher |
: Butterworth-Heinemann |
Total Pages |
: 399 |
Release |
: 1996-11-01 |
ISBN-10 |
: 9780080523361 |
ISBN-13 |
: 0080523366 |
Rating |
: 4/5 (61 Downloads) |
Synopsis Advanced Thermodynamics for Engineers by : D. Winterbone
Although the basic theories of thermodynamics are adequately covered by a number of existing texts, there is little literature that addresses more advanced topics. In this comprehensive work the author redresses this balance, drawing on his twenty-five years of experience of teaching thermodynamics at undergraduate and postgraduate level, to produce a definitive text to cover thoroughly, advanced syllabuses. The book introduces the basic concepts which apply over the whole range of new technologies, considering: a new approach to cycles, enabling their irreversibility to be taken into account; a detailed study of combustion to show how the chemical energy in a fuel is converted into thermal energy and emissions; an analysis of fuel cells to give an understanding of the direct conversion of chemical energy to electrical power; a detailed study of property relationships to enable more sophisticated analyses to be made of both high and low temperature plant and irreversible thermodynamics, whose principles might hold a key to new ways of efficiently covering energy to power (e.g. solar energy, fuel cells). Worked examples are included in most of the chapters, followed by exercises with solutions. By developing thermodynamics from an explicitly equilibrium perspective, showing how all systems attempt to reach a state of equilibrium, and the effects of these systems when they cannot, the result is an unparalleled insight into the more advanced considerations when converting any form of energy into power, that will prove invaluable to students and professional engineers of all disciplines.
Author |
: John B. Heywood |
Publisher |
: McGraw-Hill Education |
Total Pages |
: 930 |
Release |
: 1988 |
ISBN-10 |
: 0071004998 |
ISBN-13 |
: 9780071004992 |
Rating |
: 4/5 (98 Downloads) |
Synopsis Internal Combustion Engine Fundamentals by : John B. Heywood
This text, by a leading authority in the field, presents a fundamental and factual development of the science and engineering underlying the design of combustion engines and turbines. An extensive illustration program supports the concepts and theories discussed.
Author |
: Irvin Glassman |
Publisher |
: Academic Press |
Total Pages |
: 775 |
Release |
: 2014-12-02 |
ISBN-10 |
: 9780124115552 |
ISBN-13 |
: 0124115551 |
Rating |
: 4/5 (52 Downloads) |
Synopsis Combustion by : Irvin Glassman
Throughout its previous four editions, Combustion has made a very complex subject both enjoyable and understandable to its student readers and a pleasure for instructors to teach. With its clearly articulated physical and chemical processes of flame combustion and smooth, logical transitions to engineering applications, this new edition continues that tradition. Greatly expanded end-of-chapter problem sets and new areas of combustion engineering applications make it even easier for students to grasp the significance of combustion to a wide range of engineering practice, from transportation to energy generation to environmental impacts. Combustion engineering is the study of rapid energy and mass transfer usually through the common physical phenomena of flame oxidation. It covers the physics and chemistry of this process and the engineering applications—including power generation in internal combustion automobile engines and gas turbine engines. Renewed concerns about energy efficiency and fuel costs, along with continued concerns over toxic and particulate emissions, make this a crucial area of engineering. - New chapter on new combustion concepts and technologies, including discussion on nanotechnology as related to combustion, as well as microgravity combustion, microcombustion, and catalytic combustion—all interrelated and discussed by considering scaling issues (e.g., length and time scales) - New information on sensitivity analysis of reaction mechanisms and generation and application of reduced mechanisms - Expanded coverage of turbulent reactive flows to better illustrate real-world applications - Important new sections on stabilization of diffusion flames—for the first time, the concept of triple flames will be introduced and discussed in the context of diffusion flame stabilization
Author |
: Constantine D. Rakopoulos |
Publisher |
: Springer Science & Business Media |
Total Pages |
: 408 |
Release |
: 2009-03-10 |
ISBN-10 |
: 9781848823754 |
ISBN-13 |
: 1848823754 |
Rating |
: 4/5 (54 Downloads) |
Synopsis Diesel Engine Transient Operation by : Constantine D. Rakopoulos
Traditionally, the study of internal combustion engines operation has focused on the steady-state performance. However, the daily driving schedule of automotive and truck engines is inherently related to unsteady conditions. In fact, only a very small portion of a vehicle’s operating pattern is true steady-state, e. g. , when cruising on a motorway. Moreover, the most critical conditions encountered by industrial or marine engines are met during transients too. Unfortunately, the transient operation of turbocharged diesel engines has been associated with slow acceleration rate, hence poor driveability, and overshoot in particulate, gaseous and noise emissions. Despite the relatively large number of published papers, this very important subject has been treated in the past scarcely and only segmentally as regards reference books. Merely two chapters, one in the book Turbocharging the Internal Combustion Engine by N. Watson and M. S. Janota (McMillan Press, 1982) and another one written by D. E. Winterbone in the book The Thermodynamics and Gas Dynamics of Internal Combustion Engines, Vol. II edited by J. H. Horlock and D. E. Winterbone (Clarendon Press, 1986) are dedicated to transient operation. Both books, now out of print, were published a long time ago. Then, it seems reasonable to try to expand on these pioneering works, taking into account the recent technological advances and particularly the global concern about environmental pollution, which has intensified the research on transient (diesel) engine operation, typically through the Transient Cycles certification of new vehicles.