U.S. Climate Reference Network after One Decade of Operations: Status and Assessment

Author:

Diamond Howard J.1,Karl Thomas R.1,Palecki Michael A.1,Baker C. Bruce2,Bell Jesse E.3,Leeper Ronald D.3,Easterling David R.1,Lawrimore Jay H.1,Meyers Tilden P.2,Helfert Michael R.1,Goodge Grant1,Thorne Peter W.3

Affiliation:

1. NOAA/National Climatic Data Center, Asheville, North Carolina

2. NOAA/Atmospheric Turbulence and Diffusion Division, Oak Ridge, Tennessee

3. NOAA/National Climatic Data Center, Asheville, and Cooperative Institute for Climate and Satellites, North Carolina State University, Raleigh, North Carolina

Abstract

The year 2012 marks a decade of observations undertaken by the U.S. Climate Reference Network (USCRN) under the auspices of NOAA's National Climatic Data Center and Atmospheric Turbulence and Diffusion Division. The network consists of 114 sites across the conterminous 48 states, with additional sites in Alaska and Hawaii. Stations are installed in open (where possible), rural sites very likely to have stable land-cover/use conditions for several decades to come. At each site a suite of meteorological parameters are monitored, including triple redundancy for the primary air temperature and precipitation variables and for soil moisture/temperature. Instrumentation is regularly calibrated to National Institute for Standards and Technology (NIST) standards and maintained by a staff of expert engineers. This attention to detail in USCRN is intended to ensure the creation of an unimpeachable record of changes in surface climate over the United States for decades to come. Data are made available without restriction for all public, private, and government use. This article describes the rationale for the USCRN, its implementation, and some of the highlights of the first decade of operations. One critical use of these observations is as an independent data source to verify the existing U.S. temperature record derived from networks corrected for nonhomogenous histories. Future directions for the network are also discussed, including the applicability of USCRN approaches for networks monitoring climate at scales from regional to global. Constructive feedback from end users will allow for continued improvement of USCRN in the future and ensure that it continues to meet stakeholder requirements for precise climate measurements.

Publisher

American Meteorological Society

Subject

Atmospheric Science

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