Simulating switchgrass biomass productivity using ALMANAC. I. Calibration of soil water

Author:

Rocateli Alexandre C.1ORCID,Ashworth A. J.2ORCID,West C. P.3ORCID,Brye K. R.4ORCID,Popp M. P.5ORCID,Kiniry J. R.6ORCID

Affiliation:

1. Department of Plant & Soil Sciences Oklahoma State University Stillwater OK 74078

2. USDA‐ARS, Poultry Production and Products Safety Research, O‐303 Poultry Science Center Fayetteville AR 72701

3. Department of Plant and Soil Science Texas Tech University Lubbock TX 79409

4. Department of Crop, Soil, and Environmental Sciences University of Arkansas Fayetteville AR 72701

5. Department of Agricultural Economics and Agribusiness University of Arkansas Fayetteville AR 72701

6. USDA‐ARS Grassland Soil and Water Research Laboratory Temple TX 76502

Funder

Division of Agriculture, University of Arkansas System

Publisher

Wiley

Subject

Agronomy and Crop Science

Reference28 articles.

1. Agricultural Research Service. (2019).ALMANAC simulation model. Release 1.0.18. Agricultural Research Service Temple TX. Retrieved fromhttps://www.ars.usda.gov/plains-area/temple-tx/grassland-soil-and-water-research-laboratory/docs/193226/(accessed 10 Oct. 2019).

2. Switchgrass Growth and Effects on Biomass Accumulation, Moisture Content, and Nutrient Removal

3. Tolerance of switchgrass to extreme soil moisture stress: Ecological implications

4. Modeling Differential Growth in Switchgrass Cultivars Across the Central and Southern Great Plains

5. Seedbed Preparation and Planting Depth Affect Switchgrass Establishment and Yield

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