EGS Collab Experiment 1: Baseline Cross-well Seismic
As part of the geophysical characterization suite for the first EGS Collab tesbed, here are the baseline cross-well seismic data and resultant models. The campaign seismic data have been organized, concatenated with geometry and compressional (P-) & and shear (S-) wave picks, and submitted as SGY files. P-wave data were collected and analyzed in both 2D and 3D, while S-wave data were collected and analyzed in 2D only. Inversion models are provided as point volumes; the volumes have been culled to include only the points within source/receiver array coverage. The full models space volumes are also included, if relevant. An AGU 2018 poster by Linneman et al. is included that provides visualizations/descriptions of the cross-well seismic characterization method, elastic moduli calculations, and images of model inversion results.
Complete Metadata
| @type | dcat:Dataset |
|---|---|
| accessLevel | public |
| bureauCode |
[
"019:20"
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|
| contactPoint |
{
"fn": "Paul Schwering",
"@type": "vcard:Contact",
"hasEmail": "mailto:pcschwe@sandia.gov"
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|
| dataQuality |
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| description | As part of the geophysical characterization suite for the first EGS Collab tesbed, here are the baseline cross-well seismic data and resultant models. The campaign seismic data have been organized, concatenated with geometry and compressional (P-) & and shear (S-) wave picks, and submitted as SGY files. P-wave data were collected and analyzed in both 2D and 3D, while S-wave data were collected and analyzed in 2D only. Inversion models are provided as point volumes; the volumes have been culled to include only the points within source/receiver array coverage. The full models space volumes are also included, if relevant. An AGU 2018 poster by Linneman et al. is included that provides visualizations/descriptions of the cross-well seismic characterization method, elastic moduli calculations, and images of model inversion results. |
| distribution |
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"mediaType": "application/zip",
"description": "2D Vs, 2D Vp, 3D Vp, and 2D elastic moduli full volume models"
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"title": "P-Wave Data.zip",
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"mediaType": "application/zip",
"description": "SGY files containing P-wave picks "
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"description": "Young's modulus (E) calculation from shear (K) and bulk (u) moduli."
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"description": "3D model of P-wave data"
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{
"@type": "dcat:Distribution",
"title": "Condon Densities.pdf",
"format": "pdf",
"accessURL": "https://gdr.openei.org/files/1121/CondonDensity_Nov2018.pdf",
"mediaType": "application/pdf",
"description": "Borehole dry mass densities for E1-I (depth 150'-155'), E1-OB (depth 85.5'-89.5'), E1-P (depth 175'-177'), E1-PDB (depth 51'-52'), and E1-OB (depth 195'-196')"
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"description": "AGU poster presentation titled "The EGS Collab Hydrofracture Experiment at the Sanford Underground Research Facility - Campaign Cross-Borehole Seismic Characterization" (Linneman et al). The poster provides visualizations/descriptions of the cross-well seismic characterization method, elastic moduli calculations, and images of model inversion results."
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|
| DOI | 10.15121/1497682 |
| identifier | https://data.openei.org/submissions/7270 |
| issued | 2018-04-30T06:00:00Z |
| keyword |
[
"EGS",
"EGS Collab",
"SEGY",
"SURF",
"Sanford Underground Research Facility",
"Youngs",
"baseline",
"borehole",
"bulk",
"calculation",
"collab",
"cross-well",
"data",
"density",
"elastic moduli",
"energy",
"enhanced geothermal system",
"experiment",
"geophysics",
"geothermal",
"hydraulic",
"hydrofracture",
"inversion",
"model",
"moduli",
"modulus",
"p-wave",
"results",
"s-wave",
"seismic",
"sgy",
"shear",
"stimulation",
"velocity",
"visualization"
]
|
| landingPage | https://gdr.openei.org/submissions/1121 |
| license | https://creativecommons.org/licenses/by/4.0/ |
| modified | 2023-10-19T00:29:55Z |
| programCode |
[
"019:006"
]
|
| projectLead | Lauren Boyd |
| projectNumber | EE0032708 |
| projectTitle | EGS Collab |
| publisher |
{
"name": "Sandia National Laboratories",
"@type": "org:Organization"
}
|
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|
| title | EGS Collab Experiment 1: Baseline Cross-well Seismic |