Spatial and time resolved determination of the vibrational temperature in ignition sparks by variation of the dwell time

Abstract The ignition process initiates the combustion in spark-ignition engines. Therefore, understanding the ignition process is an important aspect in developing more efficient combustion engines. In this thesis, the vibrational temperature of an ignition spark in air under atmospheric pressure a...

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Main Authors: Tobias Michler, Olaf Toedter, Thomas Koch
Format: Article
Language:English
Published: Springer 2020-06-01
Series:SN Applied Sciences
Subjects:
Online Access:https://doi.org/10.1007/s42452-020-3104-6
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spelling doaj-831cea61bb634727b7ae73c07934c7f72021-07-04T11:18:07ZengSpringerSN Applied Sciences2523-39632523-39712020-06-012711310.1007/s42452-020-3104-6Spatial and time resolved determination of the vibrational temperature in ignition sparks by variation of the dwell timeTobias Michler0Olaf Toedter1Thomas Koch2Karlsruhe Institute of TechnologyKarlsruhe Institute of TechnologyKarlsruhe Institute of TechnologyAbstract The ignition process initiates the combustion in spark-ignition engines. Therefore, understanding the ignition process is an important aspect in developing more efficient combustion engines. In this thesis, the vibrational temperature of an ignition spark in air under atmospheric pressure and room temperature is observed in spatial and temporal resolution. The temperature is determined by comparing simulated spectra with the measured spectra of the second positive system of N2 between 360 and 381 nm. Changing the dwell time had no significant effect on the vibrational temperature of the three spark phases. In the breakdown the vibrational temperature is about 3300 K. The vibrational temperature of the following arc discharge is in the range of 3750 K to 4350 K. The glow discharge is divided into the negative glow and the positive column. Both show similar vibration temperatures in the range of 3500 K to 3900 K.https://doi.org/10.1007/s42452-020-3104-6Ignition systemVibrational temperatureDwell timeBreakdownArc dischargeGlow discharge
collection DOAJ
language English
format Article
sources DOAJ
author Tobias Michler
Olaf Toedter
Thomas Koch
spellingShingle Tobias Michler
Olaf Toedter
Thomas Koch
Spatial and time resolved determination of the vibrational temperature in ignition sparks by variation of the dwell time
SN Applied Sciences
Ignition system
Vibrational temperature
Dwell time
Breakdown
Arc discharge
Glow discharge
author_facet Tobias Michler
Olaf Toedter
Thomas Koch
author_sort Tobias Michler
title Spatial and time resolved determination of the vibrational temperature in ignition sparks by variation of the dwell time
title_short Spatial and time resolved determination of the vibrational temperature in ignition sparks by variation of the dwell time
title_full Spatial and time resolved determination of the vibrational temperature in ignition sparks by variation of the dwell time
title_fullStr Spatial and time resolved determination of the vibrational temperature in ignition sparks by variation of the dwell time
title_full_unstemmed Spatial and time resolved determination of the vibrational temperature in ignition sparks by variation of the dwell time
title_sort spatial and time resolved determination of the vibrational temperature in ignition sparks by variation of the dwell time
publisher Springer
series SN Applied Sciences
issn 2523-3963
2523-3971
publishDate 2020-06-01
description Abstract The ignition process initiates the combustion in spark-ignition engines. Therefore, understanding the ignition process is an important aspect in developing more efficient combustion engines. In this thesis, the vibrational temperature of an ignition spark in air under atmospheric pressure and room temperature is observed in spatial and temporal resolution. The temperature is determined by comparing simulated spectra with the measured spectra of the second positive system of N2 between 360 and 381 nm. Changing the dwell time had no significant effect on the vibrational temperature of the three spark phases. In the breakdown the vibrational temperature is about 3300 K. The vibrational temperature of the following arc discharge is in the range of 3750 K to 4350 K. The glow discharge is divided into the negative glow and the positive column. Both show similar vibration temperatures in the range of 3500 K to 3900 K.
topic Ignition system
Vibrational temperature
Dwell time
Breakdown
Arc discharge
Glow discharge
url https://doi.org/10.1007/s42452-020-3104-6
work_keys_str_mv AT tobiasmichler spatialandtimeresolveddeterminationofthevibrationaltemperatureinignitionsparksbyvariationofthedwelltime
AT olaftoedter spatialandtimeresolveddeterminationofthevibrationaltemperatureinignitionsparksbyvariationofthedwelltime
AT thomaskoch spatialandtimeresolveddeterminationofthevibrationaltemperatureinignitionsparksbyvariationofthedwelltime
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