Snowpack
Overview
In the Colorado River Basin, snow is a key component of the hydrologic cycle. Most of the basin’s annual streamflow—about 70%—originates as snowmelt. The basin's seasonal snowpack acts as an enormous reservoir that builds up and releases every winter and spring. This 'snow reservoir' is found almost entirely in the mountain ranges and high plateaus that cover only a small fraction of the total area of the basin.
The snowpack reservoir has average seasonal peak volume of about 18 million acre-feet in the Upper Basin, equivalent to 70% of the capacity of Lake Powell, but its size varies widely from year to year. Many individual weather events shape the snowpack: storms that build snow accumulations, wind events that redistribute and help sublimate snow, and heat waves that drive rapid snowmelt. The aggregate of these events, and their complex interactions with the terrain and vegetation, means that each year's snowpack evolves in a unique way over time and across the basin, while still following some general patterns.
Relevance
Variation in snowfall and the resulting size of the snowpack from year to year is the primary influence on the magnitude of seasonal (spring-summer), annual, and peak streamflows. Accordingly, monitoring the evolution of the basin's snowpack over the course of the winter and spring is critical to forecasting streamflow and managing water supply. Snow monitoring is also vital to other river-based interests, such as fisheries management and guided rafting.
Data and tools
Snowpack Monitoring in the Rocky Mountain West: A User Guide provides more detailed descriptions of the datasets and tools below, and how to best use them.
Weather station data
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This site created by the University of Utah provides map-based access to 1000s of observations from the NWS and FAA (ASOS/AWOS) automated networks, RAWS, SNOTEL, APRSWXNET/CWOP (citizen weather stations), and many other networks. Very useful for real-time monitoring of temperature, winds, humidity, and recent precipitation; users can also access historical observations.
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These maps, generated from weather station observations from the NWS COOP network and updated daily, are very helpful for monitoring conditions from weekly to annual timescales. Note that the "shaded" maps are created using a very simple interpolation, unlike that used for gridded climate products.
Gridded climate products
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This versatile tool can be used to generate many types of charts, maps, and analyses from NOAA’s official nClimGrid gridded climate dataset, updated monthly.
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This toolset, developed by researchers at the U. of California-Merced and partners, generates many different types of charts and analyses from the gridMET gridded (4 km) climate dataset, updated daily.
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These maps display the PRISM gridded climate product, updated monthly, for climate (temperature, precipitation) variables as well as drought indices (PDSI, SPI, SPEI). The "Percentile" maps show how unusual recent conditions are relative to the historical record.
Additional resources
State of the Science Report
Chapter 4 of the State of the Science report describes weather station data and networks, and gridded climate products, in much greater detail.