T. Douglas Beard, Jr., Ph.D.
Doug Beard is a Scientist Emeritus with the USGS.
Doug Beard is a Scientist Emeritus with the USGS. In his previous role, he served as the Senior Administrator of the National Climate Adaptation Science Center (NCASC). He previously held the position of Acting Associate Director for the Land Resources Mission Area. In this role, he provided executive level oversight for several programs, including the Land Change Science Program, Land Remote Sensing Program, National Climate Adaptation Science Center, Climate Research and Development Program, Carbon Sequestration assessments, and the Earth Resources Observation and Science Center.
Prior to joining the USGS, Doug served as the program coordinator for the USGS Fisheries: Aquatic and Endangered Resources Program and worked for the Wisconsin Department of Natural Resources as a staff fisheries biologist. Doug holds a bachelor’s degree in biology from the University of Wisconsin-Eau Claire, a master’s degree in fish and wildlife sciences from Penn State University, and a doctorate in zoology from the University of Wisconsin-Madison.
Professional Experience
Senior Administrator, National Climate Adaptation Science Center
Program coordinator, USGS Fisheries: Aquatic and Endangered Resources Program
Staff fisheries biologist, Wisconsin Department of Natural Resources
Education and Certifications
Ph.D. in Zoology, University of Wisconsin-Madison
M.S. in Fish and Wildlife Sciences, Penn State University
B.S. in Biology, University of Wisconsin-Eau Claire
Affiliations and Memberships*
Former President of the World Council of Fisheries Societies.
Honors and Awards
2021 Climate Adaptation Leadership Award, Federal Government
American Fisheries Society (AFS) Fellow
Science and Products
Ecosystem approach to inland fisheries: research needs and implementation strategies Ecosystem approach to inland fisheries: research needs and implementation strategies
Ecosystem approach to inland fisheries: Research needs and implementation strategies Ecosystem approach to inland fisheries: Research needs and implementation strategies
Trade-offs across space, time, and ecosystem services Trade-offs across space, time, and ecosystem services
Relationships between recapture rates from different gears for estimating walleye abundance in northern Wisconsin lakes Relationships between recapture rates from different gears for estimating walleye abundance in northern Wisconsin lakes
Effect of measurement error on tests of density dependence of catchability for walleyes in northern Wisconsin angling and spearing fisheries Effect of measurement error on tests of density dependence of catchability for walleyes in northern Wisconsin angling and spearing fisheries
Geospatial data resampling and resolution effects on watershed modeling: A case study using the agricultural non-point source pollution model Geospatial data resampling and resolution effects on watershed modeling: A case study using the agricultural non-point source pollution model
Non-USGS Publications**
**Disclaimer: The views expressed in Non-USGS publications are those of the author and do not represent the views of the USGS, Department of the Interior, or the U.S. Government.
Science and Products
Ecosystem approach to inland fisheries: research needs and implementation strategies Ecosystem approach to inland fisheries: research needs and implementation strategies
Ecosystem approach to inland fisheries: Research needs and implementation strategies Ecosystem approach to inland fisheries: Research needs and implementation strategies
Trade-offs across space, time, and ecosystem services Trade-offs across space, time, and ecosystem services
Relationships between recapture rates from different gears for estimating walleye abundance in northern Wisconsin lakes Relationships between recapture rates from different gears for estimating walleye abundance in northern Wisconsin lakes
Effect of measurement error on tests of density dependence of catchability for walleyes in northern Wisconsin angling and spearing fisheries Effect of measurement error on tests of density dependence of catchability for walleyes in northern Wisconsin angling and spearing fisheries
Geospatial data resampling and resolution effects on watershed modeling: A case study using the agricultural non-point source pollution model Geospatial data resampling and resolution effects on watershed modeling: A case study using the agricultural non-point source pollution model
Non-USGS Publications**
**Disclaimer: The views expressed in Non-USGS publications are those of the author and do not represent the views of the USGS, Department of the Interior, or the U.S. Government.
*Disclaimer: Listing outside positions with professional scientific organizations on this Staff Profile are for informational purposes only and do not constitute an endorsement of those professional scientific organizations or their activities by the USGS, Department of the Interior, or U.S. Government