N: 90 S: -90 E: 180 W: -180
Description
Biome-BGC is a computer program that estimates fluxes and storage of energy, water, carbon, and nitrogen for the vegetation and soil components of terrestrial ecosystems. The primary model purpose is to study global and regional interactions between climate, disturbance, and biogeochemical cycles.Biome-BGC represents physical and biological processes that control fluxes of energy and mass. These processes include: New leaf growth and old leaf litterfall Sunlight interception by leaves and penetration to the ground Precipitation routing to leaves and soil Snow accumulation and melting Drainage and runoff of soil water Evaporation of water from soil and wet leaves Transpiration of soil water through leaf stomata Photosynthetic fixation of carbon from CO2 in the air Uptake of nitrogen from the soil Distribution of carbon and nitrogen to growing plant parts Decomposition of fresh plant litter and old soil organic matter Plant mortality Fire The model uses a daily time-step. This means that each flux is estimated for a one-day period. Between days, the program updates its memory of the mass stored in different components of the vegetation, litter, and soil. Weather is the most important control on vegetation processes. Flux estimates in Biome-BGC depend strongly on daily weather conditions. Model behavior over time depends on climate--the history of these weather conditions.A companion file with more information about Biome-BGC and its components is available at ftp://daac.ornl.gov/data/model_archive/BIOME_BGC/biome_bgc_4.1.1/comp/B… .Biome-BGC, Version 4.1.1 was developed and is maintained by the Numerical Terradynamic Simulation Group, School of Forestry, The University of Montana, Missoula, Montana, USA. Additional information can be found on there web site at: http://www.ntsg.umt.edu/.
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Publications Citing This Dataset
| Title | Year Sort ascending | Author | Topic |
|---|---|---|---|
| Technical Note: The Simple Diagnostic Photosynthesis and Respiration Model (SDPRM) | Badawy, B., Rodenbeck, C., Reichstein, M., Carvalhais, N., Heimann, M. | Soil Moisture/Water Content, Biogeochemical Cycles, Carbon, Nitrogen, Soil Heat Budget | |
| Scaling issues in forest ecosystem management and how to address them with models | Seidl, Rupert, Eastaugh, Chris S., Kramer, Koen, Maroschek, Michael, Reyer, Christopher, Socha, Jarosaw, Vacchiano, Giorgio, Zlatanov, Tzvetan, Hasenauer, Hubert | Soil Moisture/Water Content, Biogeochemical Cycles, Carbon, Nitrogen, Soil Heat Budget | |
| Development of the Biome-BGC model for simulation of managed herbaceous ecosystems | Hidy, D., Barcza, Z., Haszpra, L., Churkina, G., Pinter, K., Nagy, Z. | Soil Depth, Soil Horizons/Profile, Soil Water Holding Capacity, Soil Texture, Soil Classification, Carbon, Nitrogen, Soil Bulk Density, Soil Chemistry, Soil Moisture/Water Content, Biogeochemical Cycles, Soil Heat Budget | |
| A model-data comparison of gross primary productivity: Results from the | Schaefer, Kevin, Schwalm, Christopher R., Williams, Chris, Arain, M. Altaf, Barr, Alan, Chen, Jing M., Davis, Kenneth J., Dimitrov, Dimitre, Hilton, Timothy W., Hollinger, David Y., Humphreys, Elyn, Poulter, Benjamin, Raczka, Brett M., Richardson, Andrew D., Sahoo, Alok, Thornton, Peter, Vargas, Rodrigo, Verbeeck, Hans, Anderson, Ryan, Baker, Ian, Black, T. Andrew, Bolstad, Paul, Chen, Jiquan, Curtis, Peter S., Desai, Ankur R., Dietze, Michael, Dragoni, Danilo, Gough, Christopher, Grant, Robert F., Gu, Lianhong, Jain, Atul, Kucharik, Chris, Law, Beverly, Liu, Shuguang, Lokipitiya, Erandathie, Margolis, Hank A., Matamala, Roser, McCaughey, J. Harry, Monson, Russ, Munger, J. William, Oechel, Walter, Peng, Changhui, Price, David T., Ricciuto, Dan, Riley, William J., Roulet, Nigel, Tian, Hanqin, Tonitto, Christina, Torn, Margaret, Weng, Ensheng, Zhou, Xiaolu | Soil Moisture/Water Content, Biogeochemical Cycles, Carbon, Nitrogen, Soil Heat Budget, Shrubland/Scrub, Wetlands, Ecosystem Functions, Agricultural Lands, Alpine/Tundra, Forests, Grasslands, Savannas, Carbon, Leaf Characteristics, Surface Pressure, Longwave Radiation, Shortwave Radiation, Humidity, Air Temperature, Surface Winds, Precipitation Amount, Wetlands | |
| Terrestrial biosphere model performance for inter-annual variability of | Keenan, T.F., Baker, Ian, Barr, Alan, Ciais, Philippe, Davis, Ken, Dietze, Michael, Dragoni, Danillo, Gough, Christopher M, Grant, Robert, Hollinger, David, Hufkens, Koen, Poulter, Ben, McCaughey, Harry, Raczka, Brett, Ryu, Youngryel, Schaefer, Kevin, Tian, Hanqin, Verbeeck, Hans, Zhao, Maosheng, Richardson, Andrew D. | Soil Moisture/Water Content, Biogeochemical Cycles, Carbon, Nitrogen, Soil Heat Budget, Shrubland/Scrub, Wetlands, Ecosystem Functions, Agricultural Lands, Alpine/Tundra, Forests, Grasslands, Savannas, Carbon, Leaf Characteristics | |
| REMOTE SENSING | Soil Moisture/Water Content, Biogeochemical Cycles, Carbon, Nitrogen, Soil Heat Budget | ||
| Remote Sensing for Inventory and Monitoring of U.S. National Parks | Gross, John, Hansen, rew, Goetz, Scott, Theobald, David, Melton, Forrest, Piekielek, Nathan, Nemani, Ramakrishna | Soil Moisture/Water Content, Biogeochemical Cycles, Carbon, Nitrogen, Soil Heat Budget | |
| Remote sensing of protected lands | Wang, Yeqiao | Soil Moisture/Water Content, Biogeochemical Cycles, Carbon, Nitrogen, Soil Heat Budget | |
| A model-data intercomparison of CO2 exchange across North America: | Schwalm, Christopher R., Williams, Christopher A., Schaefer, Kevin, Anderson, Ryan, Arain, M. Altaf, Baker, Ian, Barr, Alan, Black, T. Andrew, Chen, Guangsheng, Chen, Jing Ming, Ciais, Philippe, Davis, Kenneth J., Desai, Ankur, Dietze, Michael, Dragoni, Danilo, Fischer, Marc L., Flanagan, Lawrence B., Grant, Robert, Gu, Lianhong, Hollinger, David, Izaurralde, R. Cesar, Kucharik, Chris, Lafleur, Peter, Law, Beverly E., Li, Longhui, Li, Zhengpeng, Liu, Shuguang, Lokupitiya, Erandathie, Luo, Yiqi, Ma, Siyan, Margolis, Hank, Matamala, Roser, McCaughey, Harry, Monson, Russell K., Oechel, Walter C., Peng, Changhui, Poulter, Benjamin, Price, David T., Riciutto, Dan M., Riley, William, Sahoo, Alok Kumar, Sprintsin, Michael, Sun, Jianfeng, Tian, Hanqin, Tonitto, Christina, Verbeeck, Hans, Verma, Shashi B. | Soil Moisture/Water Content, Biogeochemical Cycles, Carbon, Nitrogen, Soil Heat Budget, Shrubland/Scrub, Wetlands, Ecosystem Functions, Agricultural Lands, Alpine/Tundra, Forests, Grasslands, Savannas, Carbon, Leaf Characteristics, Surface Pressure, Longwave Radiation, Shortwave Radiation, Humidity, Air Temperature, Surface Winds, Precipitation Amount, Wetlands | |
| Aqueous and gaseous nitrogen losses induced by fertilizer application | Gu, Chuanhui, Maggi, F., Riley, W. J., Hornberger, G. M., Xu, T., Oldenburg, C. M., Spycher, N., Miller, N. L., Venterea, R. T., Steefel, C. | Soil Moisture/Water Content, Biogeochemical Cycles, Carbon, Nitrogen, Soil Heat Budget | |
| Topographic controls on spatial patterns of conifer transpiration and | Tague, C., Heyn, K., Christensen, L. | Soil Moisture/Water Content, Biogeochemical Cycles, Carbon, Nitrogen, Soil Heat Budget | |
| Application of BIOME-BGC model to managed forests: 1. Sensitivity analysis | Tatarinov, Fyodor A., Cienciala, Emil | Soil Moisture/Water Content, Biogeochemical Cycles, Carbon, Nitrogen, Soil Heat Budget | |
| Application of BIOME-BGC model to managed forests: 2. Comparison with long-term observations of stand production for major tree species | Cienciala, Emil, Tatarinov, Fyodor A. | Soil Moisture/Water Content, Biogeochemical Cycles, Carbon, Nitrogen, Soil Heat Budget |