Hot Test Studies in a Spark Ignited Vortex Combustion Chamber

Hot tests are performed in a vortex combustion chamber using gaseous oxygen and gaseous hydrogen as the propellants by varying their mixture ratios, and nozzle throat diameter. The combustion is initiated in the combustion chamber using spark ignition. The oxidiser is injected tangentially at the af...

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Main Authors: Rajesh Thalappil Naduvilethil, Sarvoththama Jothi Thurvas Jegathjothi, Jayachandran Thankappan
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2018-12-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/9508
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spelling doaj-6cb12f3230ae4353ab988c083a9c81062021-02-16T21:11:02ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162018-12-017110.3303/CET1871225Hot Test Studies in a Spark Ignited Vortex Combustion ChamberRajesh Thalappil NaduvilethilSarvoththama Jothi Thurvas JegathjothiJayachandran ThankappanHot tests are performed in a vortex combustion chamber using gaseous oxygen and gaseous hydrogen as the propellants by varying their mixture ratios, and nozzle throat diameter. The combustion is initiated in the combustion chamber using spark ignition. The oxidiser is injected tangentially at the aft end of the combustion chamber thus generating a bi-directional co-spinning vortex. Cold flow tests with real propellants are carried to estimate the pressure developed in the combustor. The temperature at the skin surface of vortex combustor is estimated from experiments. Test results indicate that the surface temperature is not above 305 K thus indicating the fact that combustion is confined to the inner core. The chamber pressure is found to be increasing with the increase of injection pressure. The reduction in throat diameter resulted in the increase in the chamber pressure.https://www.cetjournal.it/index.php/cet/article/view/9508
collection DOAJ
language English
format Article
sources DOAJ
author Rajesh Thalappil Naduvilethil
Sarvoththama Jothi Thurvas Jegathjothi
Jayachandran Thankappan
spellingShingle Rajesh Thalappil Naduvilethil
Sarvoththama Jothi Thurvas Jegathjothi
Jayachandran Thankappan
Hot Test Studies in a Spark Ignited Vortex Combustion Chamber
Chemical Engineering Transactions
author_facet Rajesh Thalappil Naduvilethil
Sarvoththama Jothi Thurvas Jegathjothi
Jayachandran Thankappan
author_sort Rajesh Thalappil Naduvilethil
title Hot Test Studies in a Spark Ignited Vortex Combustion Chamber
title_short Hot Test Studies in a Spark Ignited Vortex Combustion Chamber
title_full Hot Test Studies in a Spark Ignited Vortex Combustion Chamber
title_fullStr Hot Test Studies in a Spark Ignited Vortex Combustion Chamber
title_full_unstemmed Hot Test Studies in a Spark Ignited Vortex Combustion Chamber
title_sort hot test studies in a spark ignited vortex combustion chamber
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2018-12-01
description Hot tests are performed in a vortex combustion chamber using gaseous oxygen and gaseous hydrogen as the propellants by varying their mixture ratios, and nozzle throat diameter. The combustion is initiated in the combustion chamber using spark ignition. The oxidiser is injected tangentially at the aft end of the combustion chamber thus generating a bi-directional co-spinning vortex. Cold flow tests with real propellants are carried to estimate the pressure developed in the combustor. The temperature at the skin surface of vortex combustor is estimated from experiments. Test results indicate that the surface temperature is not above 305 K thus indicating the fact that combustion is confined to the inner core. The chamber pressure is found to be increasing with the increase of injection pressure. The reduction in throat diameter resulted in the increase in the chamber pressure.
url https://www.cetjournal.it/index.php/cet/article/view/9508
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AT jayachandranthankappan hotteststudiesinasparkignitedvortexcombustionchamber
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