Studies of Biodiesel Surrogates Using Novel Shock Tube Techniques

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (884 download)

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Book Synopsis Studies of Biodiesel Surrogates Using Novel Shock Tube Techniques by : Matthew Frederick Campbell

Download or read book Studies of Biodiesel Surrogates Using Novel Shock Tube Techniques written by Matthew Frederick Campbell and published by . This book was released on 2014 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: In light of the finite supply of fossil fuels, concerns about the impact of combustion engine emissions, and increasing efficiency requirements for on-road vehicles, a search has begun for alternative energy resources. Such fuels would ideally have characteristics such as a high energy density, lower pollutant (hydrocarbon, soot, nitrogen oxide, etc.) emissions, domestic origins, and high miscibility with comparable existing fuels. With the possible exception of lower nitrogen oxide emissions, biodiesel fuel realizes all of these qualities and as such has become a leading candidate to blend with, supplement, or in some cases replace traditional fossil diesel fuel. To facilitate such changes in fuel stock, a comprehensive understanding of biodiesel oxidation chemistry is needed. In the work described herein, the Stanford University Aerosol Shock Tube (AST) was used to measure ignition delay times for six biodiesel surrogate molecules (called Fatty Acid Methyl Esters, or FAMEs) as large as methyl oleate (C19H36O2) at high temperatures (1100-1350 K), moderate pressures (3.5 and 7 atm), and both lean and rich equivalence ratios. This facility was able to make gas-phase measurements of these very-low-vapor-pressure fuels by loading the fuel as a spatially uniform mixture of fuel droplets suspended in an oxidizer/diluent gas blend; the droplets rapidly evaporated behind the incident shock wave. Temperatures behind both incident and reflected shock waves were calculated using a computer code that accounted for the enthalpy loss by the gas as the aerosol droplets changed phase. Moreover, a Fourier Transform InfraRed (FTIR) spectrometer was used to measure the spectra of eleven FAMEs, allowing quantitative fuel measurements during shock experiments. In addition to these aerosol-based experiments, novel shock tube techniques have been developed. The first involves confining the reactive test gas mixture to a small section of the tube using a sliding gate valve (called Constrained Reaction Volume (CRV) experimentation), thus enabling the measurement of ignition chemistry under constant-pressure conditions. The second involves expanding available shock tube test times by filling a low-sound-speed gas near the driver section end cap (called staged driver gas filling) to allow moderate-temperature, low-pressure oxidation experiments. Using these techniques, ignition delay times and time histories of intermediate/product species and temperature were measured during n-heptane (C7H16) oxidation at low temperatures (650-800 K) under constant-pressure conditions near 6.5 atm. The results revealed that many existing biodiesel kinetic mechanisms either under- or over-predict high-temperature ignition times for large biodiesel surrogates; subsequent modifications to high-temperature thermochemistry of biodiesel molecules resulted in more realistic fuel unimolecular decomposition rates and significantly better agreement between model and experiment. Measurements of FAME spectra showed that the absorption cross sections of saturated molecules at 3.39 microns, corresponding to the monochromatic output of a helium-neon (HeNe) laser, can be extrapolated using a simple relationship based on the number of C-H bonds in the molecule. CRV experimentation was shown to almost completely eliminate the pressure changes associated with both first and second stage ignition events during Negative Temperature Coefficient (NTC) region n-heptane oxidation. Comparisons between model and experiment indicated that at low temperatures, constant enthalpy-pressure (H-P) constraints are more appropriate for zero-dimensional shock tube simulations than constant internal energy-volume (U-V) constraints. Finally, the staged driver filling technique was found to increase shock tube test times by approximately 20%, while reducing necessary driver helium consumption by up to about 85%.

Spray Ignition Experiments for Biodiesel Surrogates

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ISBN 13 :
Total Pages : 80 pages
Book Rating : 4.:/5 (115 download)

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Book Synopsis Spray Ignition Experiments for Biodiesel Surrogates by : Carson Hotard

Download or read book Spray Ignition Experiments for Biodiesel Surrogates written by Carson Hotard and published by . This book was released on 2016 with total page 80 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Shock Tube Measurements of Oxygenated Fuel Combustion Using Laser Absorption Spectroscopy

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (847 download)

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Book Synopsis Shock Tube Measurements of Oxygenated Fuel Combustion Using Laser Absorption Spectroscopy by : King Yiu Lam

Download or read book Shock Tube Measurements of Oxygenated Fuel Combustion Using Laser Absorption Spectroscopy written by King Yiu Lam and published by . This book was released on 2013 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: In the current engine development, fuel reformulation is considered as one of the potential strategies to improve fuel efficiency, reduce petroleum consumption, and minimize pollutant formation. Oxygenated fuels can be used as neat fuels or additives in spark-ignition and diesel engines to allow for more complete combustion. To understand the influence of oxygenated fuels on engine performance, accurate comprehensive kinetic mechanisms, which can consist of hundreds to thousands of elementary reactions, are needed to describe the chemistry of the combustion events, such as autoignition and pollutant formation. The primary objective of the research presented in this dissertation is to provide reliable experimental kinetic targets, such as ignition delay times, species time histories, and direct reaction rate constant measurements, using shock tube and laser absorption techniques in order to evaluate and refine the existing kinetic mechanisms for two different types of oxygenated fuels (i.e., ketones and methyl esters) and to reexamine the kinetics of the H2 + OH reaction. The topics of this work are mainly divided into three sections: (1) H2 + OH kinetics, (2) ketone combustion chemistry, and (3) methyl ester + OH kinetics. The reaction of OH with molecular hydrogen (H2) H2 + OH → H2O + H (1) is an important chain-propagating reaction in all combustion systems, particularly in hydrogen combustion, and its direct rate constant measurements are discussed in the first part of this dissertation. The rate constant for reaction (1) was measured behind reflected shock waves over the temperature range of 902-1518 K at pressures of 1.15-1.52 atm. OH radicals were produced by rapid thermal decomposition of tert-butyl hydroperoxide (TBHP) at high temperatures, and were monitored using the narrow-linewidth ring dye laser absorption of the well-characterized R1(5) line in the OH A--X (0, 0) band near 306.69 nm. Consequently, this work aims to report the rate constant for reaction (1) with a much lower experimental scatter and overall uncertainty (as compared to the data available in the literature). Ketones are important to a variety of modern combustion processes. They are widely used as fuel tracers in planar laser-induced fluorescence (PLIF) imaging of combustion processes due to their physical similarity to gasoline surrogate components. Additionally, they are often formed as intermediate products during oxidation of large oxygenated fuels, such as alcohols and methyl esters. In the second part of this dissertation, the combustion characteristics of acetone (CH3COCH3), 2-butanone (C2H5COCH3), and 3-pentanone (C2H5COC2H5) are discussed in the context of the reflected shock wave experiments. These experiments were performed using different laser absorption methods to monitor species concentration time histories (i.e., ketones, CH3, CO, C2H4, CH4, OH, and H2O) over the temperature range of 1100-1650 K at pressures near 1.6 atm. These speciation data were then compared with the simulations from the detailed mechanisms of Pichon et al. (2009) and Serinyel et al. (2010). Consequently, the overall rate constants for the thermal decomposition reactions of acetone, 2-butanone, and 3-pentanone CH3COCH3 (+ M) → CH3 + CH3CO (+ M) (2) C2H5COCH3 (+ M) → Products (+ M) (3) C2H5COC2H5 (+ M) → Products (+ M) (4) were inferred by matching the species profiles with the simulations from the detailed mechanisms at pressures near 1.6 atm. In addition, an O-atom balance analysis from the speciation data revealed the absence of a methyl ketene removal pathway in the original models. Furthermore, the overall rate constants for the reactions of OH with a series of ketones CH3COCH3 + OH → CH3COCH2 + H2O (5) C2H5COCH3 + OH → Products (6) C2H5COC2H5 + OH → Products (7) C3H7COCH3 + OH → Products (8) were determined using UV laser absorption of OH over the temperature range of 870-1360 K at pressures of 1-2 atm. These measurements included the first direct high-temperature measurements of the overall rate constants for reactions (6)-(8), and were compared with the theoretical calculations from Zhou et al. (2011) and the estimates using the structure-activity relationship (SAR) (1995). Biodiesel, which consists of fatty acid methyl esters (FAMES), is a promising alternative to fossil fuels. The four simplest methyl esters include methyl formate (CH3OCHO), methyl acetate (CH3OC(O)CH3), methyl propanoate (CH3OC(O)C2H5), and methyl butanoate (CH3OC(O)C3H7), and their combustion chemistry is a building block for the chemistry of large methyl esters. In the third part of this dissertation, the rate constant measurements for the reactions of OH with four small methyl esters are discussed: CH3OCHO + OH → Products (9) CH3OC(O)CH3 + OH → Products (10) CH3OC(O)C2H5 + OH → Products (11) CH3OC(O)C3H7 + OH → Products (12) These reactions were studied behind reflected shock waves using UV laser absorption of OH over 876-1371 K at pressures near 1.5 atm. This study presented the first direct high-temperature rate constant measurements of reactions (9)-(12). These measurements were also compared with the estimated values from different detailed mechanisms and from the structure-activity relationship (SAR).

Comprehensive Biotechnology

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Publisher : Newnes
ISBN 13 : 0080885047
Total Pages : 5304 pages
Book Rating : 4.0/5 (88 download)

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Book Synopsis Comprehensive Biotechnology by :

Download or read book Comprehensive Biotechnology written by and published by Newnes. This book was released on 2011-08-26 with total page 5304 pages. Available in PDF, EPUB and Kindle. Book excerpt: The second edition of Comprehensive Biotechnology, Six Volume Set continues the tradition of the first inclusive work on this dynamic field with up-to-date and essential entries on the principles and practice of biotechnology. The integration of the latest relevant science and industry practice with fundamental biotechnology concepts is presented with entries from internationally recognized world leaders in their given fields. With two volumes covering basic fundamentals, and four volumes of applications, from environmental biotechnology and safety to medical biotechnology and healthcare, this work serves the needs of newcomers as well as established experts combining the latest relevant science and industry practice in a manageable format. It is a multi-authored work, written by experts and vetted by a prestigious advisory board and group of volume editors who are biotechnology innovators and educators with international influence. All six volumes are published at the same time, not as a series; this is not a conventional encyclopedia but a symbiotic integration of brief articles on established topics and longer chapters on new emerging areas. Hyperlinks provide sources of extensive additional related information; material authored and edited by world-renown experts in all aspects of the broad multidisciplinary field of biotechnology Scope and nature of the work are vetted by a prestigious International Advisory Board including three Nobel laureates Each article carries a glossary and a professional summary of the authors indicating their appropriate credentials An extensive index for the entire publication gives a complete list of the many topics treated in the increasingly expanding field

Mid-infrared Laser Diagnostics for Chemical Kinetics Study of Oxygenates

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ISBN 13 :
Total Pages : pages
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Book Synopsis Mid-infrared Laser Diagnostics for Chemical Kinetics Study of Oxygenates by : Wei Ren

Download or read book Mid-infrared Laser Diagnostics for Chemical Kinetics Study of Oxygenates written by Wei Ren and published by . This book was released on 2013 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Biofuels are classified as renewable because the carbon present in the vegetable oil or animal fat feedstocks originates from carbon dioxide already present in the atmosphere. One of the current focuses on biofuel-based combustion research is the design of advanced energy conversion devices using complex reaction mechanisms. The development of these mechanisms requires a large experimental database to ensure accuracy of computational predictions. Infrared laser-absorption diagnostics are widely used in combustion research for fast, sensitive, and non-intrusive measurements of species concentration, temperature, and pressure. This thesis explores three new areas of laser diagnostic research: (a) mid-infrared diagnostics, (b) sensing in multiphase flows, and (c) applications to shock tube chemical kinetics. A novel distributed-feedback quantum-cascade laser (DFB-QCL) near 4.7 um was investigated to develop a new mid-infrared absorption sensor for in situ measurements of carbon monoxide (CO) and temperature in combustion gases. The laser provides convenient access to the stronger vibrational bands of CO than was possible previously, enabling ppm-level detectivity with an optical path length of 10 cm at high temperatures between 1000-2000 K. Wavelength modulation spectroscopy with 1f-normalized 2f detection (WMS-2f/1f) of CO2 was developed for accurate temperature sensing in multiphase combustion flows. In this method, two tunable diode lasers with wavelengths near 2.7 um were used to measure time-varying gas temperature during the evaporation of shock-heated fuel aerosols. These recently developed mid-IR laser absorption diagnostics were then applied in studying the thermal decomposition of oxygenates (biofuel surrogates) by measuring species concentration time-histories behind reflected shock waves. In a particular study of methyl formate (the simplest biodiesel surrogate), the reaction rate constants of methyl formate unimolecular decomposition were measured using the mid-IR CO absorption behind reflected shock waves. Detailed comparisons of the measured methanol and CO time-histories with the model predictions were made. Sensitivity and reaction pathway analyses for these oxygenated fuel components were performed, leading to rate recommendations with improved model performance.

Chemical Engineering Progress

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ISBN 13 :
Total Pages : 558 pages
Book Rating : 4.:/5 (318 download)

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Book Synopsis Chemical Engineering Progress by :

Download or read book Chemical Engineering Progress written by and published by . This book was released on 2007 with total page 558 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Biofuels

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Publisher : Springer
ISBN 13 : 9811037914
Total Pages : 249 pages
Book Rating : 4.8/5 (11 download)

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Book Synopsis Biofuels by : Avinash Kumar Agarwal

Download or read book Biofuels written by Avinash Kumar Agarwal and published by Springer. This book was released on 2017-02-28 with total page 249 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book is intended to serve as a compendium on the state-of-the-art research in the field of biofuels. The book includes chapters on different aspects of biofuels from renowned international experts in the field. The book looks at current research on all aspects of biofuels from raw materials to production techniques. It also includes chapters on analysis of performance of biofuels, particularly biodiesel, in engines. The book incorporates case studies that provide insights into the performance of biofuels in applications such as automotive engines and diesel generators. The contents of the book will be useful to graduate students and researchers working on all aspects of biofuels. The book will also be of use to professionals and policymakers interested in biofuels.

Test Time in Low Pressure Shock Tubes

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ISBN 13 :
Total Pages : 86 pages
Book Rating : 4.E/5 ( download)

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Book Synopsis Test Time in Low Pressure Shock Tubes by : Aerospace Corporation

Download or read book Test Time in Low Pressure Shock Tubes written by Aerospace Corporation and published by . This book was released on 1962 with total page 86 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Mathematical Modelling of Gas-Phase Complex Reaction Systems: Pyrolysis and Combustion

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Publisher : Elsevier
ISBN 13 : 0128195797
Total Pages : 1034 pages
Book Rating : 4.1/5 (281 download)

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Book Synopsis Mathematical Modelling of Gas-Phase Complex Reaction Systems: Pyrolysis and Combustion by :

Download or read book Mathematical Modelling of Gas-Phase Complex Reaction Systems: Pyrolysis and Combustion written by and published by Elsevier. This book was released on 2019-06-21 with total page 1034 pages. Available in PDF, EPUB and Kindle. Book excerpt: Mathematical Modelling of Gas-Phase Complex Reaction Systems: Pyrolysis and Combustion, Volume 45, gives an overview of the different steps involved in the development and application of detailed kinetic mechanisms, mainly relating to pyrolysis and combustion processes. The book is divided into two parts that cover the chemistry and kinetic models and then the numerical and statistical methods. It offers a comprehensive coverage of the theory and tools needed, along with the steps necessary for practical and industrial applications. Details thermochemical properties and "ab initio" calculations of elementary reaction rates Details kinetic mechanisms of pyrolysis and combustion processes Explains experimental data for improving reaction models and for kinetic mechanisms assessment Describes surrogate fuels and molecular reconstruction of hydrocarbon liquid mixtures Describes pollutant formation in combustion systems Solves and validates the kinetic mechanisms using numerical and statistical methods Outlines optimal design of industrial burners and optimization and dynamic control of pyrolysis furnaces Outlines large eddy simulation of turbulent reacting flows

Characterization and Properties of Petroleum Fractions

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Publisher : ASTM International
ISBN 13 : 9780803133617
Total Pages : 425 pages
Book Rating : 4.1/5 (336 download)

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Book Synopsis Characterization and Properties of Petroleum Fractions by : M. R. Riazi

Download or read book Characterization and Properties of Petroleum Fractions written by M. R. Riazi and published by ASTM International. This book was released on 2005 with total page 425 pages. Available in PDF, EPUB and Kindle. Book excerpt: The last three chapters of this book deal with application of methods presented in previous chapters to estimate various thermodynamic, physical, and transport properties of petroleum fractions. In this chapter, various methods for prediction of physical and thermodynamic properties of pure hydrocarbons and their mixtures, petroleum fractions, crude oils, natural gases, and reservoir fluids are presented. As it was discussed in Chapters 5 and 6, properties of gases may be estimated more accurately than properties of liquids. Theoretical methods of Chapters 5 and 6 for estimation of thermophysical properties generally can be applied to both liquids and gases; however, more accurate properties can be predicted through empirical correlations particularly developed for liquids. When these correlations are developed with some theoretical basis, they are more accurate and have wider range of applications. In this chapter some of these semitheoretical correlations are presented. Methods presented in Chapters 5 and 6 can be used to estimate properties such as density, enthalpy, heat capacity, heat of vaporization, and vapor pressure. Characterization methods of Chapters 2-4 are used to determine the input parameters needed for various predictive methods. One important part of this chapter is prediction of vapor pressure that is needed for vapor-liquid equilibrium calculations of Chapter 9.

Cleaner Combustion

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Publisher : Springer Science & Business Media
ISBN 13 : 1447153073
Total Pages : 657 pages
Book Rating : 4.4/5 (471 download)

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Book Synopsis Cleaner Combustion by : Frédérique Battin-Leclerc

Download or read book Cleaner Combustion written by Frédérique Battin-Leclerc and published by Springer Science & Business Media. This book was released on 2013-09-06 with total page 657 pages. Available in PDF, EPUB and Kindle. Book excerpt: This overview compiles the on-going research in Europe to enlarge and deepen the understanding of the reaction mechanisms and pathways associated with the combustion of an increased range of fuels. Focus is given to the formation of a large number of hazardous minor pollutants and the inability of current combustion models to predict the formation of minor products such as alkenes, dienes, aromatics, aldehydes and soot nano-particles which have a deleterious impact on both the environment and on human health. Cleaner Combustion describes, at a fundamental level, the reactive chemistry of minor pollutants within extensively validated detailed mechanisms for traditional fuels, but also innovative surrogates, describing the complex chemistry of new environmentally important bio-fuels. Divided into five sections, a broad yet detailed coverage of related research is provided. Beginning with the development of detailed kinetic mechanisms, chapters go on to explore techniques to obtain reliable experimental data, soot and polycyclic aromatic hydrocarbons, mechanism reduction and uncertainty analysis, and elementary reactions. This comprehensive coverage of current research provides a solid foundation for researchers, managers, policy makers and industry operators working in or developing this innovative and globally relevant field.

Soot Formation in Combustion

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Publisher : Springer Science & Business Media
ISBN 13 : 3642851673
Total Pages : 595 pages
Book Rating : 4.6/5 (428 download)

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Book Synopsis Soot Formation in Combustion by : Henning Bockhorn

Download or read book Soot Formation in Combustion written by Henning Bockhorn and published by Springer Science & Business Media. This book was released on 2013-03-08 with total page 595 pages. Available in PDF, EPUB and Kindle. Book excerpt: Soot Formation in Combustion represents an up-to-date overview. The contributions trace back to the 1991 Heidelberg symposium entitled "Mechanism and Models of Soot Formation" and have all been reedited by Prof. Bockhorn in close contact with the original authors. The book gives an easy introduction to the field for newcomers, and provides detailed treatments for the specialists. The following list of contents illustrates the topics under review:

Biofuels

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Publisher : Springer Science & Business Media
ISBN 13 : 1848820119
Total Pages : 343 pages
Book Rating : 4.8/5 (488 download)

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Book Synopsis Biofuels by : Ayhan Demirbas

Download or read book Biofuels written by Ayhan Demirbas and published by Springer Science & Business Media. This book was released on 2008-11-14 with total page 343 pages. Available in PDF, EPUB and Kindle. Book excerpt: Biofuel is a renewable energy source produced from natural materials. The benefits of biofuels over traditional petroleum fuels include greater energy security, reduced environmental impact, foreign exchange savings, and socioeconomic issues related to the rural sector. The most common biofuels are produced from classic food crops that require high-quality agricultural land for growth. However, bioethanol can be produced from plentiful, domestic, cellulosic biomass resources such as herbaceous and woody plants, agricultural and forestry residues, and a large portion of municipal and industrial solid waste streams. There is also a growing interest in the use of vegetable oils for making biodiesel. “Biofuels: Securing the Planet’s Future Energy Needs” discusses the production of transportation fuels from biomass (such as wood, straw and even household waste) by Fischer-Tropsch synthesis. The book is an important text for students and researchers in energy engineering, as well as professional fuel engineers.

Fundamentals of Gas Particle Flow

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Publisher : Elsevier
ISBN 13 : 0444601821
Total Pages : 157 pages
Book Rating : 4.4/5 (446 download)

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Book Synopsis Fundamentals of Gas Particle Flow by : G Rudinger

Download or read book Fundamentals of Gas Particle Flow written by G Rudinger and published by Elsevier. This book was released on 2012-12-02 with total page 157 pages. Available in PDF, EPUB and Kindle. Book excerpt: Fundamentals of Gas-Particle Flow is an edited, updated, and expanded version of a number of lectures presented on the "Gas-Solid Suspensions course organized by the von Karman Institute for Fluid Dynamics. Materials presented in this book are mostly analytical in nature, but some experimental techniques are included. The book focuses on relaxation processes, including the viscous drag of single particles, drag in gas-particles flow, gas-particle heat transfer, equilibrium, and frozen flow. It also discusses the dynamics of single particles, such as particles in an arbitrary flow, in a rotating gas, in a Prandtl-Meyer expansion, and in an oscillating flow. The remaining chapters of the book deal with the thermodynamics of gas-particle mixtures, steady flow through ducts, pressure waves, gas-particle jets, boundary layer, and momentum transfer. The experimental techniques included in this book present the powder feeders, the instrumentation on particle flow rate, velocity, concentration and temperature, and the measurement of the particle drag coefficient in a shock tube.

The Biodiesel Handbook

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Publisher : Elsevier
ISBN 13 : 0983507260
Total Pages : 516 pages
Book Rating : 4.9/5 (835 download)

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Book Synopsis The Biodiesel Handbook by : Gerhard Knothe

Download or read book The Biodiesel Handbook written by Gerhard Knothe and published by Elsevier. This book was released on 2015-08-13 with total page 516 pages. Available in PDF, EPUB and Kindle. Book excerpt: The second edition of this invaluable handbook covers converting vegetable oils, animal fats, and used oils into biodiesel fuel. The Biodiesel Handbook delivers solutions to issues associated with biodiesel feedstocks, production issues, quality control, viscosity, stability, applications, emissions, and other environmental impacts, as well as the status of the biodiesel industry worldwide. - Incorporates the major research and other developments in the world of biodiesel in a comprehensive and practical format - Includes reference materials and tables on biodiesel standards, unit conversions, and technical details in four appendices - Presents details on other uses of biodiesel and other alternative diesel fuels from oils and fats

HCCI and CAI Engines for the Automotive Industry

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Publisher : CRC Press
ISBN 13 :
Total Pages : 562 pages
Book Rating : 4.F/5 ( download)

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Book Synopsis HCCI and CAI Engines for the Automotive Industry by : Hua Zhao

Download or read book HCCI and CAI Engines for the Automotive Industry written by Hua Zhao and published by CRC Press. This book was released on 2007-09-10 with total page 562 pages. Available in PDF, EPUB and Kindle. Book excerpt: Homogeneous charge compression ignition (HCCI)/controlled auto-ignition (CAI) has emerged as one of the most promising engine technologies with the potential to combine fuel efficiency and improved emissions performance, offering reduced nitrous oxides and particulate matter alongside efficiency comparable with modern diesel engines. Despite the considerable advantages, its operational range is rather limited and controlling the combustion (timing of ignition and rate of energy release) is still an area of on-going research. Commercial applications are, however, close to reality. HCCI a.

The Yaws Handbook of Vapor Pressure

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Publisher : Gulf Professional Publishing
ISBN 13 : 012803002X
Total Pages : 336 pages
Book Rating : 4.1/5 (28 download)

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Book Synopsis The Yaws Handbook of Vapor Pressure by : Carl L. Yaws

Download or read book The Yaws Handbook of Vapor Pressure written by Carl L. Yaws and published by Gulf Professional Publishing. This book was released on 2015-03-12 with total page 336 pages. Available in PDF, EPUB and Kindle. Book excerpt: Increased to include over 25,000 organic and inorganic compounds, The Yaws Handbook of Vapor Pressure: Antoine Coefficients, Second Edition delivers the most comprehensive and practical database source for today's petrochemical. Understanding antoine coefficients for vapor pressure leads to numerous critical engineering applications such as pure components in storage vessels, pressure relief valve design, flammability limits at the refinery, as well as environmental emissions from exposed liquids, making data to efficiently calculate these daily challenges a fundamental need. Written by the world's leading authority on chemical and petrochemical data, The Yaws Handbook of Vapor Pressure simplifies the guesswork for the engineer and reinforces the credibility of the engineer's calculations with a single trust-worthy source. This data book is a must-have for the engineer's library bookshelf. - Increase compound coverage from 8,200 to over 25,000 organic and inorganic compounds, including sulfur and hydrocarbons - Solve process design questions quickly from a single reliable data source - Locate answers easily for multiple petrochemical related questions such as bubble point, dew point temperatures, and vapor-liquid equilibrium