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Theory of Engine Manifold Design

Theory of Engine Manifold Design
Author: Desmond E. Winterbone
Publisher: John Wiley & Sons
Total Pages: 520
Release: 2000
Genre: Science
ISBN:

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This book, together with its companion volume Design Techniques for Engine Manifolds - Wave Action Methods for IC Engines, reports the significant developments that have occurred over the last twenty years and shows how mature the calculation of one-dimensional flow has become. In particular, they show how the application of finite volume techniques results in more accurate simulations than the 'traditional' Method of Characteristics and gives the further benefit of more rapid and more robust calculations. CONTENTS INCLUDE: Introduction Governing equations Numerical methods Future developments in modelling unsteady flows in engine manifolds Simple boundaries at pipe ends Intra-pipe boundary conditions Turbocharging components The application of wave action methods to design and analysis of flow in engines.


Theory of Engine Manifold Design

Theory of Engine Manifold Design
Author: D. E. Winterbone
Publisher:
Total Pages: 476
Release: 2000
Genre: Internal combustion engines
ISBN: 9780768006568

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Design Techniques for Engine Manifolds

Design Techniques for Engine Manifolds
Author: D. E. Winterbone
Publisher: Professional Engineering Publishing
Total Pages: 408
Release: 1999
Genre: Technology & Engineering
ISBN:

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Reports on the significant developments over the past two decades in designing manifolds for internal combustion engines, and shows how mature the calculation of one-dimensional, unsteady flow has become. Particularly describes how many of the limitations of the Method of Characteristics, used to calculate the unsteady flow of the compressible gases in the engine, can be removed by applying finite volume techniques, resulting in more accurate simulations and allowing more rapid and robust calculation. Helps practicing and student engineers understand how wave action in the inlet and exhaust manifolds of reciprocating engines affects the performance of the engine. Distributed in the US by ASME. Annotation copyrighted by Book News, Inc., Portland, OR


Diesel Engine System Design

Diesel Engine System Design
Author: Qianfan Xin
Publisher: Elsevier
Total Pages: 1087
Release: 2011-05-26
Genre: Technology & Engineering
ISBN: 0857090836

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Diesel Engine System Design links everything diesel engineers need to know about engine performance and system design in order for them to master all the essential topics quickly and to solve practical design problems. Based on the author's unique experience in the field, it enables engineers to come up with an appropriate specification at an early stage in the product development cycle. Links everything diesel engineers need to know about engine performance and system design featuring essential topics and techniques to solve practical design problems Focuses on engine performance and system integration including important approaches for modelling and analysis Explores fundamental concepts and generic techniques in diesel engine system design incorporating durability, reliability and optimization theories


Introduction to Modeling and Control of Internal Combustion Engine Systems

Introduction to Modeling and Control of Internal Combustion Engine Systems
Author: Lino Guzzella
Publisher: Springer Science & Business Media
Total Pages: 303
Release: 2013-03-14
Genre: Technology & Engineering
ISBN: 3662080036

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Internal combustion engines still have a potential for substantial improvements, particularly with regard to fuel efficiency and environmental compatibility. These goals can be achieved with help of control systems. Modeling and Control of Internal Combustion Engines (ICE) addresses these issues by offering an introduction to cost-effective model-based control system design for ICE. The primary emphasis is put on the ICE and its auxiliary devices. Mathematical models for these processes are developed in the text and selected feedforward and feedback control problems are discussed. The appendix contains a summary of the most important controller analysis and design methods, and a case study that analyzes a simplified idle-speed control problem. The book is written for students interested in the design of classical and novel ICE control systems.


Mixture Formation in Spark-Ignition Engines

Mixture Formation in Spark-Ignition Engines
Author: Hans Peter Lenz
Publisher: Springer
Total Pages: 417
Release: 2013-11-11
Genre: Technology & Engineering
ISBN: 148992762X

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Twentyfour years have gone by since the publication of K. Lohner and H. Muller's comprehen sive work "Gemischbildung und Verbrennung im Ottomotor" in 1967 [1.1]' Naturally, the field of mixture formation and combustion in the spark-ignition engine has wit nessed great technological advances and many new findings in the intervening years, so that the time seemed ripe for presenting a summary of recent research and developments. There fore, I gladly took up the suggestion of the editors of this series of books, Professor Dr. H. List and Professor Dr. A. Pischinger, to write a book summarizing the present state of the art. A center of activity of the Institute of Internal-Combustion Engines and Automotive Engineering at the Vienna Technical University, which I am heading, is the field of mixture formation -there fore, many new results that have been achieved in this area in collaboration with the respective industry have been included in this volume. The basic principles of combustion are discussed only to that extent which seemect necessary for an understanding of the effects of mixture formation. The focal point of this volume is the mixture formation in spark-ignition engines, covering both the theory and actual design of the mixture formation units and appropriate intake manifolds. Also, the related measurement technology is explained in this work.


Intake Manifold Design for an Air Restricted Engine

Intake Manifold Design for an Air Restricted Engine
Author: David A. Moster
Publisher:
Total Pages: 67
Release: 2012
Genre:
ISBN:

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The purpose of this work was to study the effects that an air restriction has on basic intake manifold design calculations. When designing an intake manifold for a combustion engine, there are several simple methods that engineers have used historically to help determine peak volumetric efficiency per engine rpm. Methods such as Helmholtz Resonator Tuning and Pressure Wave Tuning have been used substantially to determine an engine's operating conditions. However, these methods are flawed for the restricted engine case due to the assumption that there is an unlimited amount of air. Through experimentation of various intake manifold configurations, it is possible to determine how this false assumption affects the results of the design. Examination of each major design parameter of an intake manifold independently compared with the traditional analytical hypothesis is performed to help to determine if these methods can still be used in an air restricted environment. Based on the results from this experimentation, it appears that these calculations can still determine where peak volumetric efficiency is. However, the area around the peak volumetric efficiency is affected significantly.


Design of Racing and High-Performance Engines 1998-2003

Design of Racing and High-Performance Engines 1998-2003
Author: Daniel J Holt
Publisher: SAE International
Total Pages: 570
Release: 2003-08-05
Genre: Technology & Engineering
ISBN: 0768095948

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The 53 technical papers in this book show the improvements and design techniques that researchers have applied to performance and racing engines. They provide an insight into what the engineers consider to be the top improvements needed to advance engine technology; and cover subjects such as: 1) Direct injection; 2) Valve spring advancements; 3) Turbocharging; 4) Variable valve control; 5) Combustion evaluation; and 5) New racing engines.