Soot Formation Analysis Within the Combusion Chamber of Diesel Engines by Optical Fibers

Soot Formation Analysis Within the Combusion Chamber of Diesel Engines by Optical Fibers PDF Author: J. Dresden-Rausch
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

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Soot Formation Analysis Within the Combusion Chamber of Diesel Engines by Optical Fibers

Soot Formation Analysis Within the Combusion Chamber of Diesel Engines by Optical Fibers PDF Author: J. Dresden-Rausch
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

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Investigation of Soot Processes in an Optical Diesel Engine

Investigation of Soot Processes in an Optical Diesel Engine PDF Author: Barbara Menkiel
Publisher:
ISBN:
Category :
Languages : en
Pages :

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This study is dedicated to investigation of soot formed during combustion in diesel engine. Measurements were performed in a high speed direct injection optical diesel engine. Initially soot particle size, size distribution and soot volume fraction were investigated using time resolved laser induced incandescence (TR-LII) technique. For this study standard diesel fuel was used and measurements were performed for various injection timing and two different engine loads. Investigation showed that TR-LII is a powerful tool that can be used for characterization of in-cylinder soot in the engines. Subsequently TR-LII technique was developed to measure in-cylinder soot in two dimensional plane (planar laser induced incandescence PLII) and technique was combined with high speed imaging to investigate soot processes for ultra-low sulfur diesel (ULSD) and bio-fuel (RME). Two injection strategies of single and double injection were applied during these measurements. A high speed imaging technique was used to study the soot formation and oxidation during the combustion process within the cylinder and PLII was applied later in the stroke to study qualitatively the relative amount of un-oxidised soot that was left in the combustion chamber. In addition to PLII, TR-LII technique was used simultaneously to explore crank angle resolved variation of primary soot particle size and their size distribution during the expansion stroke. The same measurements were repeated for fuels with different composition investigating the relationship between the fuel properties and soot emission. Finally mathematical model for soot particle size and distribution width was modified by introducing assumption of multi-lognormal in-cylinder soot particle size distribution.

Numerical and Experimental Investigation of Water Introduction Into DI Diesel Engine Combustion

Numerical and Experimental Investigation of Water Introduction Into DI Diesel Engine Combustion PDF Author: Peter Eckert
Publisher: Logos Verlag Berlin GmbH
ISBN: 3832519513
Category : Technology & Engineering
Languages : en
Pages : 152

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Im vorliegenden Band 3/2008 berichtet Herr Eckert uber die Ergebnisse aus Untersuchungen zur Partikel- und Stickoxidminimierung bei Dieselmotoren durch Wassereinbringung. Das primare Ziel ist dabei die innermotorische Reduzierung der thermischen Stickoxidbildung. Es sind unterschiedliche Methoden der wassereinbringung in den dieselmotorischen Verbrennungsprozess moglich; beispielsweise die Einspritzung von Wasser in das Ansaugsystem, eine direkte Einspritzung von Wasser in den Brennraum sowie die Wassereinbringung mit Diesel- Wasser Emulsionen. Diese Massnahmen sind unter anderem bei dieselmotoren, die zumindest teilweise mit Schwerol betrieben werden, besonders interessant, da dort klassische Methoden zur Schadstoffreduktion, wie z.B. Abgasruckfuhrung oder Abgasnachbehandlung, nur mit erheblichem Aufwand eingesetzt werden konnen.

Experimental Investigations on Particle Number Emissions from GDI Engines

Experimental Investigations on Particle Number Emissions from GDI Engines PDF Author: Markus Bertsch
Publisher: Logos Verlag Berlin GmbH
ISBN: 3832544038
Category : Technology & Engineering
Languages : en
Pages : 170

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This thesis discusses experimental investigations to reduce particle number emissions from gasoline engines with direct injection. Measures on a single cylinder research engine with combined usage of a particle number measurement system, a particle size distribution measurement system as well as optical diagnostics and thermodynamic analysis enable an in-depth assessment of particle formation and oxidation. Therefore, numerous optical diagnostic techniques for spray visualisation (Mie-scattering, High-Speed PIV) and soot detection (High-Speed-Imaging, Fiber optical diagnostics) are deployed. Two injectors with different hydraulic flows but identical spray-targeting are characterised and compared by measurements in a pressurised chamber. The operation at higher engine load and low engine speed is in the focus of the experimental work at the engine test bench. Thereby, the low flow velocities in the combustion chamber, caused by the low engine speed, as well as the large amount of fuel injected are major challenges for the mixture formation process. A substantial part of the thesis thus focusses on the detailed analysis of the mixture formation process, which is consisting of fuel injection, interaction of the in-cylinder charge motion with the fuel injected and the fuel properties. Measures for the optimisation of the mixture formation process and the minimisation of the particle number emissions are analysed and evaluated. The charge motion is manipulated by the impression of a directed flow, the variation of the valve timings and valve open curve. The injection process is influenced by a reduction of the hydraulic flow of the injector and an increase of the injection pressure up to 50 MPa. The investigations show fundamental effects and potentials of different variation parameters concerning their emissions reduction potential at the exemplary operation at high engine load. Due to the simultaneous analysis of the in-cylinder charge motion and a thermodynamic analysis, the results can be transferred to different engines.

Diesel Engine Processes

Diesel Engine Processes PDF Author: Teoman Uzkan
Publisher: American Society of Mechanical Engineers
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 116

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Formation Process of Soluble Organic Fraction in the Combustion Chamber of IDI Diesel Engines

Formation Process of Soluble Organic Fraction in the Combustion Chamber of IDI Diesel Engines PDF Author: Yasuhiro Fujiwara
Publisher:
ISBN:
Category : Diesel motor
Languages : en
Pages : 7

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Soot Particle Size and Number Density Measurements in a Direct Injection Diesel Engine Using Light Scattering, Radiation, and Extinction

Soot Particle Size and Number Density Measurements in a Direct Injection Diesel Engine Using Light Scattering, Radiation, and Extinction PDF Author: Dale Reif Tree
Publisher:
ISBN:
Category :
Languages : en
Pages : 452

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Engine Combustion Instrumentation and Diagnostics

Engine Combustion Instrumentation and Diagnostics PDF Author: Hua Zhao
Publisher: SAE International
ISBN: 0768006651
Category : Technology & Engineering
Languages : en
Pages : 854

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Book Description
This book provides a complete description of instrumentation and in-cylinder measurement techniques for internal combustion engines. Written primarily for researchers and engineers involved in advanced research and development of internal combustion engines, the book provides an introduction to the instrumentation and experimental techniques, with particular emphasis on diagnostic techniques for in-cylinder measurements.

Proceedings of the ... Spring Technical Conference of the ASME Internal Combustion Engine Division

Proceedings of the ... Spring Technical Conference of the ASME Internal Combustion Engine Division PDF Author: American Society of Mechanical Engineers. Internal Combustion Engine Division. Spring Technical Conference
Publisher:
ISBN:
Category : Internal combustion engines
Languages : en
Pages : 746

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Combustion Engines Development

Combustion Engines Development PDF Author: Günter P. Merker
Publisher: Springer Science & Business Media
ISBN: 3642140947
Category : Technology & Engineering
Languages : en
Pages : 660

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Book Description
Combustion Engines Development nowadays is based on simulation, not only of the transient reaction of vehicles or of the complete driveshaft, but also of the highly unsteady processes in the carburation process and the combustion chamber of an engine. Different physical and chemical approaches are described to show the potentials and limits of the models used for simulation.