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Characterization of flow field and combustion dynamics in a novel pressurized side-wall quenching burner using highspeed PIV/OH-PLIF measurements

dc.contributor.author Johe, Pascal
dc.contributor.author Steinhausen, Matthias
dc.contributor.author Zentgraf, Florian
dc.contributor.author Greifenstein, Max
dc.contributor.author Hasse, Christian
dc.contributor.author Dreizler, Andreas
dc.date.accessioned 2022-01-03T15:02:13Z
dc.date.available 2022-01-03T15:02:13Z
dc.date.created 2021-05
dc.date.issued 2022-01-03
dc.description Digital version of the figures in publication (insert link here) de_DE
dc.identifier.uri https://tudatalib.ulb.tu-darmstadt.de/handle/tudatalib/3369
dc.rights.licenseCC-BY-NC-4.0 (https://creativecommons.org/licenses/by-nc/4.0)
dc.subject Flame-wall interaction de_DE
dc.subject Pressurized combustion de_DE
dc.subject Turbulence de_DE
dc.subject Side-wall quenching de_DE
dc.subject.classification 4.21-02
dc.subject.classification 4.22-02
dc.subject.classification 4.22-03
dc.subject.ddc 620
dc.subject.ddc 660
dc.title Characterization of flow field and combustion dynamics in a novel pressurized side-wall quenching burner using highspeed PIV/OH-PLIF measurements de_DE
dc.type Dataset de_DE
dcterms.accessRights openAccess
person.identifier.orcid #PLACEHOLDER_PARENT_METADATA_VALUE#
person.identifier.orcid #PLACEHOLDER_PARENT_METADATA_VALUE#
person.identifier.orcid #PLACEHOLDER_PARENT_METADATA_VALUE#
person.identifier.orcid #PLACEHOLDER_PARENT_METADATA_VALUE#
person.identifier.orcid #PLACEHOLDER_PARENT_METADATA_VALUE#
person.identifier.orcid 0000-0001-5803-7947
tuda.history.classification Version=2020-2024;403-02 Technische Chemie
tuda.history.classification Version=2020-2024;404-02 Technische Thermodynamik
tuda.history.classification Version=2020-2024;404-03 Strömungsmechanik
tuda.unit TUDa

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Fig5.mat(Inflow boundary conditions characterized by: wall-normal profiles of mean normalized velocities (a, e), normalized RMS of fluctuations (b ,d, f, h) and turbulence intensities (c, g) in the non-reacting flow derived from 500 samples (in each operating case) recorded at 50 Hz repetition rate. Streamwise components in a – d, wall-normal components in e – h. Profiles at x=30mm.)31.37 KBUnknown data format Download
Fig6.mat(Isolines (dashed lines) of the averaged, streamwise velocity component ux overlaid with streamlines (solid lines with arrows) of the non-reacting flow for (a) the 1 bar and (b) the 3 bar operating case obtained from 500 samples (in each case) recorded at 50 Hz repetition rate.)319.71 KBUnknown data format Download
Fig7.mat(Wall-normal profiles of mean normalized velocities (a), normalized RMS of fluctuations (b). Normalized u+(y+)profiles of the turbulent boundary layer (c). Profiles at xc=0mm in the non-reacting flow derived from 500 Samples recorded at 50 Hz.)7.64 KBUnknown data format Download
Fig8.matIsolines (dashed lines) of the averaged, streamwise velocity component ux overlaid with streamlines (solid lines) of the reacting flow for (a) the 1 bar and (b) the 3 bar operating case obtained from 1000 samples (in each case) recorded at 50 Hz repetition rate.319.15 KBUnknown data format Download
Fig9.matWall-normal profiles of mean normalized velocities (a), normalized RMS of fluctuations (b) x_c=0 mm in the reacting flow4.69 KBUnknown data format Download
Fig11.matFlame front statistics of the 1 bar (a•) and 3 bar operating case (b•). Flame brush (•2) derived from 1000 samples (in each operating case) recorded at 50 Hz repetition rate. Wall-normal (•3 - •6) and wall-parallel (•1) distributions of normalized frequencies derived from several regions (highlighted as white dashed rectangles) within the flame brush.70.5 KBUnknown data format Download
Fig12.matSensitivity analysis of flame front detection algorithm by means of flame front statistics for the 3 bar case. Wall-normal distributions of normalized fre-quencies based on detected flame fronts using a low threshold of either 0.0 or 0.5.1.18 KBUnknown data format Download