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Feb 9, 2022 -
Experiments of Premixed Gas Explosion in a 1-meter Channel Partly Filled with 18650 Cell Geometry
Comma Separated Values - 111.0 MB -
MD5: 608fb54f921f7eedffd4eb5007114369
19_MHe_P206_T00042.csv |
Feb 9, 2022 -
Experiments of Premixed Gas Explosion in a 1-meter Channel Partly Filled with 18650 Cell Geometry
Comma Separated Values - 111.0 MB -
MD5: 351bf3fd275e0c09ffacca96d503b4f3
19_MHe_P206_T00043.csv |
Feb 9, 2022 -
Experiments of Premixed Gas Explosion in a 1-meter Channel Partly Filled with 18650 Cell Geometry
Comma Separated Values - 5.5 KB -
MD5: 0e19b3a7fecd2c3e144126d4784dd491
ListOfExperiments.csv |
Feb 9, 2022 -
Experiments of Premixed Gas Explosion in a 1-meter Channel Partly Filled with 18650 Cell Geometry
Plain Text - 1.3 KB -
MD5: dd68ec314d0e80752fd1bec0f6b797db
ReadMe.txt |
Jan 25, 2022
Lach, Agnieszka Weronika; Gaathaug Andre Vagner, 2022, "Hydrogen safety: Pressure Peaking Phenomena-unignited releases", https://doi.org/10.23642/USN.17932439, DataverseNO, V1
DATASET MIGRATED FROM FIGSHARE: The aim of this study was to validate a model for predicting overpressure arising from accidental hydrogen releases in areas with limited ventilation. Experiments were performed in a large-scale setup that included a steel-reinforced container of volume 14.9 m3 and variable ventilation areas and mass flow rates. The... |
MS Word - 17.8 KB -
MD5: afdab417756bb52ef4295db801c73451
File handling guide.docx |
MS Excel Spreadsheet - 59.5 KB -
MD5: f7b41a7944c3f31395ae530867f892bc
HTE242USN00002CONC190621.xlsx |
MS Excel Spreadsheet - 59.5 KB -
MD5: df862f376dffa4c5512ec427ae27f06e
HTE242USN00003CON190621.xlsx |
MS Excel Spreadsheet - 523.1 KB -
MD5: 06f0336afa5f8d2336a0ee3f98ccef8f
HTE242USN00006CON190621.xlsx |
MS Excel Spreadsheet - 1.1 MB -
MD5: 72bed07b6140c12c97f9a68faf2679b7
HTE242USN00007CON190621.xlsx |
