Data release for Surficial Geology of the Northern San Luis Valley, Saguache, Fremont, Custer, Alamosa, Rio Grande, Conejos, and Costilla Counties, Colorado

The San Luis Valley and associated underlying basin of south-central Colorado and north-central New Mexico is the largest structural and hydrologic basin of the Rio Grande Rift and fluvial system. The surrounding San Juan and Sangre de Cristo Mountains reveal evidence of widespread volcanism and transtensional tectonism beginning in the Oligocene and continuing to the present, as seen in fault displacement of Pleistocene to Holocene deposits along the eastern basin-bounding Sangre de Cristo fault system and fault zones along the western margin of the basin. The San Luis basin can generally be subdivided into northern and southern basins at the structural and physiographic high terrain of the San Luis Hills in the center of the basin, proximal to the Colorado-New Mexico stateline. The northern San Luis Valley can be subdivided into two subbasins at approximately the latitude of the Great Sand Dunes and San Luis Lakes, where the endorheic northern subbasin surface and subsurface flow currently accumulate in a series of playa lakes. To the south of this playa region, the Rio Grande has captured basin hydrology into a through-going fluvial system cutting through the San Luis Hills, carving the Rio Grande gorge, and ultimately flowing into the Gulf of Mexico. This surficial geologic map of the northern San Luis Valley, paired with the Alamosa, CO 1:100,000-scale geologic map (U.S. Geological Survey Scientific Investigations Map 3342) provides new and compiled geologic mapping that characterizes basin deposits and locates the traces of active faults, with the goal to provide geospatial data for future investigations related to western North American neotectonics, Pleistocene paleoclimate, and related geomorphic processes. In addition, present natural and anthropogenic water bodies have been located and updated for hydrologic modeling and water-usage investigations.

Data and Resources

Field Value
accessLevel public
bureauCode {010:12}
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catalog_conformsTo https://project-open-data.cio.gov/v1.1/schema
catalog_describedBy https://project-open-data.cio.gov/v1.1/schema/catalog.json
identifier USGS:5f46b7c182ce4c3d122576e8
metadata_type geospatial
modified 20210621
old-spatial -106.4070, 37.2830, -105.3520, 38.4050
publisher U.S. Geological Survey
publisher_hierarchy Department of the Interior > U.S. Geological Survey
resource-type Dataset
source_datajson_identifier true
source_hash b4081c2b48284de689de5d47bffccbc1d8c34eb0
source_schema_version 1.1
spatial {"type": "Polygon", "coordinates": [[[-106.4070, 37.2830], [-106.4070, 38.4050], [ -105.3520, 38.4050], [ -105.3520, 37.2830], [-106.4070, 37.2830]]]}
theme {geospatial}
Groups
  • AmeriGEOSS
  • National Provider
  • North America
Tags
  • 3he-cosmogenic-nuclide
  • active-fault
  • alamosa
  • alamosa-county
  • alamosa-river
  • amerigeo
  • amerigeoss
  • bishop-tuff
  • blanca-peak
  • bull-lake-age
  • bull-lake-glaciation
  • center
  • chiquita-peak
  • ckan
  • colorado
  • conejos-county
  • conejos-river
  • costilla-county
  • crestone
  • custer-county
  • del-norte
  • early-pleistocene
  • fort-garland
  • fremont-county
  • geo
  • geoss
  • great-sand-dunes
  • greenie-ridge
  • hayden-pass
  • holocene
  • huckleberry-ridge-tuff
  • la-jara-creek
  • la-veta-pass
  • lake-alamosa
  • landslides
  • late-middle-pleistocene
  • late-pleistocene
  • lava-creek-b
  • marine-oxygen-isotope-stage-10
  • marine-oxygen-isotope-stage-11
  • marine-oxygen-isotope-stage-12
  • marine-oxygen-isotope-stage-2
  • marine-oxygen-isotope-stage-5
  • marine-oxygen-isotope-stage-6
  • marine-oxygen-isotope-stage-7
  • marine-oxygen-isotope-stage-8
  • marine-oxygen-isotope-stage-9
  • marine-terrestrial-marine-isotope-correlation
  • medano-creek
  • medano-pass
  • middle-pleistocene
  • middle-pleistocene-glaciation
  • mineral-hot-springs-fault
  • miocene
  • miocene-volcanics
  • moffet
  • monte-vista
  • mosca-pass
  • national
  • neogene
  • neotectonics
  • north-america
  • oligocene
  • orient-iron-mine
  • pinedale-age
  • pinedale-glaciation
  • pleistocene
  • pleistocene-glaciation
  • pleistocene-river-incision
  • pliocene
  • pliocene-volcanics
  • poncha-pass
  • pre-bull-lake-age
  • pre-bull-lake-glaciation
  • quaternary
  • rio-grande
  • rio-grande-county
  • rio-grande-incision
  • rio-grande-rift
  • rocky-mountain-glaciation
  • saguache
  • saguache-county
  • saguache-creek
  • san-juan-mountains
  • san-juan-volcanic-field
  • san-luis-basin
  • san-luis-creek
  • san-luis-lakes
  • san-luis-valley
  • sand-creek
  • sangre-de-cristo-fault
  • sangre-de-cristo-fault-system
  • sangre-de-cristo-mountains
  • santa-fe-group
  • servilleta-basalt
  • soil-carbonate
  • taos-plateau-volcanic-field
  • terrace-reservoir
  • tertiary
  • tusas-mountains
  • united-states
  • usa
  • usgs-5f46b7c182ce4c3d122576e8
  • valley-view-hot-springs
  • villa-grove
  • villa-grove-fault-zone
  • zapata-creek
  • zapata-falls
isopen False
license_id notspecified
license_title License not specified
maintainer Theodore R. Brandt
maintainer_email tbrandt@usgs.gov
metadata_created 2025-11-19T21:04:42.601282
metadata_modified 2025-11-19T21:04:42.601288
notes The San Luis Valley and associated underlying basin of south-central Colorado and north-central New Mexico is the largest structural and hydrologic basin of the Rio Grande Rift and fluvial system. The surrounding San Juan and Sangre de Cristo Mountains reveal evidence of widespread volcanism and transtensional tectonism beginning in the Oligocene and continuing to the present, as seen in fault displacement of Pleistocene to Holocene deposits along the eastern basin-bounding Sangre de Cristo fault system and fault zones along the western margin of the basin. The San Luis basin can generally be subdivided into northern and southern basins at the structural and physiographic high terrain of the San Luis Hills in the center of the basin, proximal to the Colorado-New Mexico stateline. The northern San Luis Valley can be subdivided into two subbasins at approximately the latitude of the Great Sand Dunes and San Luis Lakes, where the endorheic northern subbasin surface and subsurface flow currently accumulate in a series of playa lakes. To the south of this playa region, the Rio Grande has captured basin hydrology into a through-going fluvial system cutting through the San Luis Hills, carving the Rio Grande gorge, and ultimately flowing into the Gulf of Mexico. This surficial geologic map of the northern San Luis Valley, paired with the Alamosa, CO 1:100,000-scale geologic map (U.S. Geological Survey Scientific Investigations Map 3342) provides new and compiled geologic mapping that characterizes basin deposits and locates the traces of active faults, with the goal to provide geospatial data for future investigations related to western North American neotectonics, Pleistocene paleoclimate, and related geomorphic processes. In addition, present natural and anthropogenic water bodies have been located and updated for hydrologic modeling and water-usage investigations.
num_resources 2
num_tags 108
title Data release for Surficial Geology of the Northern San Luis Valley, Saguache, Fremont, Custer, Alamosa, Rio Grande, Conejos, and Costilla Counties, Colorado