Glacier National Park Stream Ecological Integrity (SEI) 2007-2019 status and trend report project.
Schweiger B. Glacier National Park Stream Ecological Integrity (SEI) 2007-2019 status and trend report project.. 2007-2019. National Park Service
Project contains the reports and data packages used in the Glacier National Park Streams Ecological Integrity (SEI) status and trend report (2007 - 2019). Generalized SEI monitoring objectives include the following: 1. Determine status in a suite of response measures at the park scale (in GLAC and ROMO) and at all sentinel sites. a.) Important water and sediment chemistry parameters like temperature, nutrients and metals b.) Stream physical habitat features like sediment composition and riparian cover c.) Macroinvertebrate and diatom bioassessment metrics 2. Determine the long-term trend in the condition of select stream responses. 3. Assess status of select responses through: a.) Comparisons to existing and published assessment points, including any regulatory criteria, ecological thresholds or ecoregion assessment points that are relevant to ROMN park streams management, b.) Comparisons to ecoregion assessment points derived from distributions of reference site data from within the park and/or surrounding ecoregion(s), c.) Comparisons to baselines derived from partner or auxiliary data. 4. Relate any spatial or temporal patterns (including trend when possible) in select stream responses to important ecological and anthropogenic drivers. For additional SEI supporting information and products from the Rocky Mountain Network see: https://irma.nps.gov/DataStore/Reference/Profile/2247674 https://www.nps.gov/im/romn/index.htm
- Type
- Project
- Authors
- Schweiger, Billy
- Publisher
- National Park Service
- Units
- GLAC , ROMN
- Keywords
- benthos, channel characteristics, periphyton, ROMN, streams, trend, water chemistry, water dynamics, water quality
- Subjects
- Ecological Framework: Geology and Soils | Geomorphology | Stream/River Channel Characteristics , Ecological Framework: Water | Hydrology | Surface Water Dynamics , Ecological Framework: Water | Water Quality | Water Chemistry , Ecological Framework: Water | Water Quality | Nutrient Dynamics , Ecological Framework: Water | Water Quality | Toxics , Ecological Framework: Water | Water Quality | Microorganisms , Ecological Framework: Water | Water Quality | Aquatic Macroinvertebrates and Algae , Ecological Framework: Human Use | Point-Source Human Effects | Point-Source Human Effects , Ecological Framework: Human Use | Non-point Source Human Effects | Non-point Source Human Effects
Program
Products
- Streams Ecological Integrity (SEI) Physical Habitat Metrics data package at Glacier National Park (2007-2019), Grant-Kohrs Ranch Historical Site (2009-2019), Little Bighorn Battlefield National Monument (2009-2019) and Rocky Mountain National Park (2010-2019).
- Streams Ecological Integrity (SEI) Periphyton Biota data package at Glacier National Park (2007-2019), Grant-Kohrs Ranch Historical Site (2009-2019), Little Bighorn Battlefield National Monument (2009-2019) and Rocky Mountain National Park (2010-2019).
- Stream Ecological Integrity (SEI) Macro Invertebrate data package at Glacier National Park, Grant-Kohrs Ranch Historical Site, Little Bighorn Battlefield National Monument and Rocky Mountain National Park 2007-2020.
- Streams Ecological Integrity (SEI) Stream Temperature data package at Glacier National Park, Grant-Kohrs Ranch Historical Site, Little Bighorn Battlefield National Monument and Rocky Mountain National Park 2007-2020.
- Streams Ecological Integrity (SEI) Sample Site and Sample Event metadata at Glacier National Park, Grant-Kohrs Ranch Historical Site, Little Bighorn Battlefield National Monument and Rocky Mountain National Park 2007-2020
- Stream Ecological Integrity (SEI) Water and Sediment Chemistry Data Package for 2007-2019
- Glacier National Park stream ecological integrity: 2007–2019 trend synthesis report
- Climate, Water Temperature, and the Condition of Sentinel Streams at Glacier National Park, 2007–2019