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1,787 results for “coweeta”
Tree growth (1999-2012) for the Functional Diversity project, Coweeta Hydrologic Laboratory, Otto, North Carolina
The importance of the herbaceous layer in regulating ecosystem processes in deciduous forests is generally unknown. We use a manipulative study in a rich, mesophytic cove forest in the southern Appalachians to test the following hypotheses: (i) the herbaceous functional group (HFG) in mesophytic coves accelerates carbon and nutrient cycling, (ii) high litter quality input and rapid nutrient turnover associated with HFG will have a positive effect on overstory tree growth, and (iii) the HFG regulates tree regeneration with negative effects on seedling establishment due to competition for resources. We established treatment plots in a mesic, cove-hardwoods forest and removed the herbaceous flora (HR, removed twice per year) or added herbaceous organic material (OMA, once per year) for comparison to a no removal (NR) reference for a total of 14 years. The OMA treatment stimulated soil N-mineralization and increased litterfall mass and N content. OMA N-mineralization rates were more than two times greater than both the NR and HR treatments; however, we did not detect significant differences in soil CO2 efflux among treatments. Higher overstory litterfall mass and N in the OMA treatment plots indicated that overstory trees were benefiting from the enhanced soil N-mineralization. Higher overstory leaf mass and N suggests an important linkage between HR and aboveground net primary production even though this did not translate into greater tree basal area increment. We found an increase in regeneration of all tree species with HFG removal, and the response was particularly evident for Acer rubrum seedlings.
Manual soil moisture measurements from ten artificial forest gaps at the Coweeta Hydrologic Laboratory, North Carolina, 2000-2018
Ten artificial forest gaps were created in March 2002 at Coweeta, following two years of pretreatment data collection. Experimental gaps were created by pulling canopy trees with a winch until they were down. Trees, saplings, and seedlings were censused and tracked as part of a demography study. Soil moisture data was collected during the growing season as an explanatory variable for tree survivorship and mortality.
Continuous microclimate measurements from Forest Site J, Coweeta Hydrologic Laboratory, North Carolina, 2007-2016.
This research involves collecting continuous soil moisture measurements on plot J of the forest gap project. In addition, air temperature, and soil temperature at 5 and 20 cm depths are also measured.
Measurements of coarse woody debris at the Coweeta LTER Terrestrial Gradient Sites, Coweeta Hydrological Laboratory, Otto, NC from 2003 to 2014
The five Terrestrial Gradient sites were established in the early 1990s as part of the 1990 Coweeta LTER Renewal. The original terrestrial gradient sites were 20 x 40-m. In the late 1990s the plots were expanded to 80 x 80-m and later (around 1998) they were slope-corrected by Clark's lab using survey equipment. In this study, coarse woody debris (CWD) was measured in each of the five terrestrial gradient plots at the Coweeta Hydrologic Lab from 2003 through 2014. The length, diameters, and decay class of coarse wood were measured within each of the plots.
Terrestrial Gradient Litterfall Dry Mass, Coweeta LTER, 1994-2017
This project was started by Haines and Crossley in 1992 to compare leaf litter weights among the five gradient plots (though data from the first collections were not included in this dataset because the original dataset did not represent a complete quarter of collection). Litter is collected from ten 0.92x0.92 m leaf collectors within each of the gradient plots. Litter is collected on a quarterly basis (monthly in the autumn). The litter is then separated by category, dried, weighed, and processed in a Wiley mill for later nutrient analyses. Since the project first started, the collection process has expanded to include non-leaf litter (e.g., lichens, bark, and seeds), fine twigs (0-2.5 cm diameter), and medium twigs (2.5-10 cm diameter).
Measurements of Soil Bulk Density at the Coweeta Terrestrial Gradient Sites
This project is part of a larger examination of site productivity along an elevational gradient. Forest floor weights, %C, and %N were measured at each of the five terrestrial gradient plots located along an elevational gradient at Coweeta Hydrologic Lab, Otto, NC.
Measurements of Soil %C and %N at the Coweeta LTER Terrestrial Gradient Sites, Coweeta Hydrological Laboratory, Otto, NC.
This project is part of a larger examination of site productivity along an elevational gradient. Soil %C and %N were measured at each of the five terrestrial gradient plots located along an elevational gradient at Coweeta Hydrologic Lab, Otto, NC.
Measurements of Soil Water Chemistry at the Coweeta Terrestrial Gradient Sites
This project is part of a larger examination of site productivity along an elevational gradient. Five tension lysimeters were placed at each of two depths, 15 cm and bottom of Bt soil horizon, along two transects running parallel to the contour of each 40 × 20 m terrestrial gradient plot. Soil water was collected weekly and composited at the end of each month. Values are the mean value for each site/month.
Spring and Fall Leaf Phenology from Coweeta LTER Soil Moisture Sites SM2 & SM4, Coweeta Hydrologic Laboratory, Otto, NC, 2003-2015
Spring vegetative bud break, leaf elongation, fall leaf color, and leaf senescence are monitored at the two scaffold towers located at Project 1040 soil moisture microclimate sites 2 and 4. We have identified a variety of species at the elevation extremes within the Coweeta basin for this yearly monitoring project.
Stand Dynamics and Radial Growth Measurements from Old-Growth and Secondary-Growth Forests at the Coweeta Hydrologic Laboratory and Joyce Kilmer Wilderness Area
Our objectives were to define disturbance causes, rates (percent disturbance per decade), magnitudes and frequency (time since last disturbance) for both secondary and old-growth mixed-oak stands, and to determine if all mixed oak stands experience similar disturbance history.
Measurements of leaf litter Carbon and Nitrogen from the Coweeta LTER Terrestrial Gradient sites, Coweeta Hydrological Laboratory, Otto, NC
This project was started by Haines and Crossley in 1992 to compare leaf litter weights among the five gradient plots (though data from the first collections were not included in this dataset because the original dataset did not represent a complete quarter of collection). Litter is collected from ten 91.4 x 91.4 cm leaf collectors within each of the gradient plots. Litter is collected on a quarterly basis (monthly in the autumn). The litter is then separated by category, dried, weighed, and processed in a Wiley mill for later carbon and nitrogen analyses. Since the project first started, the collection process has expanded to include non-leaf litter (e.g., lichens, bark, and seeds), fine twigs (0-2.5 cm diameter), and medium twigs (2.5-10 cm diameter).
Soil respiration and flux measurements from Watersheds 17 and 18,Coweeta Hydrologic Laboratory, Otto, NC.
In order to better understand soil respiration and Carbon Dioxide (CO2) fluxes, 90 closed container chambers were installed in 18 plots located at upper, mid, and lower-slope lcoations within Coweetas watersheds 17 and 18. For eighteen months, soil moisture, soil temperature, and CO2 measurements were taken through the collars of pipes located within each plots. These measurements were used to determine total flux and other statisitcal information in order to better understand these forest processes.
Goodyera pubescens plant demography from 1999-2003 at the Coweeta Hydrologic Laboratory, Chattahoochee National Forest, and Whitehall Forest
H. Ron Pulliam (University of Georgia Emeritus) established 17 plant demography grids (each between 250 and 480 m2 in size) divided into 2 x 2 m cells in 1999 at the Coweeta Hydrologic Laboratory (35.060037,-83.43044) in Macon County, N.C, Chattahoochee National Forest in Habersham County (34.51271,-83.47465) and Whitehall Forest in Athens-Clarke County, GA (33.884774,-83.357527). Grids 1-6 located at Coweeta were 20 x 24 m; grids 7-10 located at Chattahoochee were 20 x 24 m, except grid 10 was 10 x 24; grids 11-17 located at Whitehall were 20 x 24 m, except grids 12 and 13 were 10 x 12 m, grid 16 was 20 x 20 m and grid 17 was 12 x 24. Individuals of six plant species occurring in each grid were flagged and monitored in for eight years, 1999-2006, along with soil moisture and temperature (presented in a separate data set). All grids were located in the understory shade environment of deciduous forests in mid- to mature stages of succession (60+ years of growth). Each plant was visited at least twice annually to assess survival, growth, reproduction and fecundity. Survival was based on the presence or absence of a plant as identified by its flagged identification number (per grid and individual). For absent plants, mortality was distinguished from dormancy by leaving flag markers in place and recording the subsequent return of an adult plant to the same location. Growth was based on leaf size. Reproduction was based on the presence of reproductive structures, flowers or fruit, and fecundity was based on the appearance of local seedlings. As dormancy is not uncommon in understory plants, flags were not removed due to the absence of a previously measured plant which allowed for the assessment of dormancy rates upon its potential return. The data contained herein are for Anemone americana (previously Hepatica nobilis), which only occurred in grid cells located at Whitehall.
Hepatica nobilis (Anenome americana) plant demography 1999-2006 at the Coweeta Hydrologic Laboratory, Chattahoochee National Forest, and Whitehall Forest
H. Ron Pulliam (University of Georgia Emeritus) established 17 plant demography grids (each between 250 and 480 m2 in size) divided into 2 x 2 m cells in 1999 at the Coweeta Hydrologic Laboratory (35.060037,-83.43044) in Macon County, N.C, Chattahoochee National Forest in Habersham County (34.51271,-83.47465) and Whitehall Forest in Athens-Clarke County, GA (33.884774,-83.357527). Grids 1-6 located at Coweeta were 20 x 24 m; grids 7-10 located at Chattahoochee were 20 x 24 m, except grid 10 was 10 x 24; grids 11-17 located at Whitehall were 20 x 24 m, except grids 12 and 13 were 10 x 12 m, grid 16 was 20 x 20 m and grid 17 was 12 x 24. Individuals of six plant species occurring in each grid were flagged and monitored in for eight years, 1999-2006, along with soil moisture and temperature (presented in a separate data set). All grids were located in the understory shade environment of deciduous forests in mid- to mature stages of succession (60+ years of growth). Each plant was visited at least twice annually to assess survival, growth, reproduction and fecundity. Survival was based on the presence or absence of a plant as identified by its flagged identification number (per grid and individual). For absent plants, mortality was distinguished from dormancy by leaving flag markers in place and recording the subsequent return of an adult plant to the same location. Growth was based on leaf size. Reproduction was based on the presence of reproductive structures, flowers or fruit, and fecundity was based on the appearance of local seedlings. As dormancy is not uncommon in understory plants, flags were not removed due to the absence of a previously measured plant which allowed for the assessment of dormancy rates upon its potential return. The data contained herein are for Anemone americana (previously Hepatica nobilis), which only occurred in grid cells located at Whitehall.
Hexastylis arifolia (Asarum canadensis) plant demography 1999-2006 at the Coweeta Hydrologic Laboratory, Chattahoochee National Forest, and Whitehall Forest
H. Ron Pulliam (University of Georgia Emeritus) established 17 plant demography grids (each between 250 and 480 m2 in size) divided into 2 x 2 m cells in 1999 at the Coweeta Hydrologic Laboratory (35.060037,-83.43044) in Macon County, N.C, Chattahoochee National Forest in Habersham County (34.51271,-83.47465) and Whitehall Forest in Athens-Clarke County, GA (33.884774,-83.357527). Grids 1-6 located at Coweeta were 20 x 24 m; grids 7-10 located at Chattahoochee were 20 x 24 m, except grid 10 was 10 x 24; grids 11-17 located at Whitehall were 20 x 24 m, except grids 12 and 13 were 10 x 12 m, grid 16 was 20 x 20 m and grid 17 was 12 x 24. Individuals of six plant species occurring in each grid were flagged and monitored in for eight years, 1999-2006, along with soil moisture and temperature (presented in a separate data set). All grids were located in the understory shade environment of deciduous forests in mid- to mature stages of succession (60+ years of growth). Each plant was visited at least twice annually to assess survival, growth, reproduction and fecundity. Survival was based on the presence or absence of a plant as identified by its flagged identification number (per grid and individual). For absent plants, mortality was distinguished from dormancy by leaving flag markers in place and recording the subsequent return of an adult plant to the same location. Growth was based on leaf size. Reproduction was based on the presence of reproductive structures, flowers or fruit, and fecundity was based on the appearance of local seedlings. As dormancy is not uncommon in understory plants, flags were not removed due to the absence of a previously measured plant which allowed for the assessment of dormancy rates upon its potential return. The data contained herein are for Anemone americana (previously Hepatica nobilis), which only occurred in grid cells located at Whitehall.
Air temperature and light intensity measurements within and near the Coweeta basin from 2011 to 2013
In this study 50 HOBO data loggers were deployed at 61 locations within and near the Coweeta basin to record air temperature and light intensity observations. The loggers were deployed between April 2011 and April 2012. The duration of observation at each location varied. All loggers were removed by February 2013. In April 2012, radiation shields constructed of two inverted plastic funnels were added to a subset of loggers in an attempt to reduce the effect of solar radiation on daytime temperature observations. Light intensity data collected by the loggers were used as a means of flagging potentially erroneous observations when the logger was exposed to direct sunlight. A light intensity threshold above which observations were flagged was determined by comparing logger observations to those collected by nearby (<5m) sensors protected with commercial gill style radiation shields. Despite attempts to flag potentially erroneous daytime temperature observations, it is likely that errors remain and these data should be used accordingly.
Soil carbon cycling response to hemlock mortality at the Coweeta Hydrologic Laboratory
We studied the impacts of hemlock mortality from infestation by the hemlock woolly adlegid (HWA) on soil carbon cycling at the Coweeta Hydrologic Laboratory. The HWA was first found at Coweeta in 2003. In 2013 and 2014, we re-sampled plots established in an earlier study by Elliott and others. There were 12 20 x 20 m plots: 4 were control hardwood stands, 4 were untreated hemlock communities, and 4 were hemlock that were girdled. We measured soil C and N concentration, soil delta 13 C, exoemzyme activities, root biomass, soil respiration, forest floor mass, and fungal hyphal biomass.
Riparian study: hourly microclimate data from the Coweeta Hydrologic Laboratory from 1994 to 2007
This data set contains air temperature and soil temperature data from the control (hurricane) slope and treatment (manual rhododendron removal) slope on watershed 56 at Coweeta Hydrologic Laboratory. The arrays of thermocouple sensors are arranged along transects that are parallel to the stream channel and 1, 5, and 15 m uphill for each slope. Data were collected from 1994 to 2007 when dataloggers were removed.
Riparian Study: Soil Moisture (TDR) from the Coweeta Hydrologic Laboratory from 1993 through 1995
TDR sites are located at intervals along the hillslope beginning 0-5 m from stream edge and continuing up the slope to the ridgetop near the edge of the white pines of WS 1. Originally, seventeen plots at two depths with three replicates each were installed. After the September 1995 collection, Hurricane Opal irreparably damaged three of the control plots. Fourteen plots remain and are measured on a biweekly basis.
Litter decomposition data from the Coweeta Hydrologic Laboratory from 1993 to 1995
Litter bags (5 X 5 cm, 1mm nylon mesh) were filled with 5 0.2 g of air dried litter from R. maximum or Q. prinus (two dominant tree species in the watershed). The bags were then placed upon the soil surface along transects 1, 5, and 15 meters upslope from the stream (as described for microbial C and N). Bags were placed in the field in December, 1993. Three replicate bags of each litter type were collected from both sites and all transects, every three months. Upon retrieval, leaves were dried and cleaned of any residual soil particles. Samples were then weighed to determine percent weight loss, over time. In these data files, litter decomp studies are saved by species (Q. prinus or R. max) and then by distance from the stream (1, 5, or 15 meters). The # of days column is the amount of time the bags were in the field. % weight remaining is> the proportion of weight upon collection to initial weight. This is followed by the average % weight remaining for each collection date and its standard deviation. The average C/N is the C/N ratio for the litterbags, by collection date. The total C and N for litter was determined using the Carlo Erba Total C and N analyzer.
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