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29 results for “water table depth”
Depth to water table
Eighty-seven piezometers (cased bore holes) were installed along topographic transects within the Cedar Creek Natural History Area. Depth to water table is measured at each well at a monthly to quarterly interval. Water samples are collected periodically and analyzed for pH and major cations and anions.
Water table depth dataset collected at Frasne peatland (192ha, Jura Mountains, France)
<p>Data of water table depth (m) measured on Frasne peatland in two piezometers (frn/pz_plot4 and frn/pz_plot9). Measurements start on 06-11-2008 and are regularly updated with new data.</p> <p>Zip file contain :</p> <ul> <li>metadata file (TOUR_en.json) which describe stations, sensors, variables and process</li> <li>csv file contain time series data for all variables by station</li> </ul> <p>Additional information on the measurement can be found in this website : <a href="https://data-snot.cnrs.fr/data-access/">https://data-snot.cnrs.fr/data-access/</a></p> <p>We also recommend to contact sno-tourbieres for additional information about data acquisition and use : <a href="mailto:contact.sno-tourbieres@cnrs-orleans.fr">contact.sno-tourbieres@cnrs-orleans.fr</a></p>
Water table depth dataset collected at La Guette peatland (23 ha, Loiret, France)
<p>Data of water table depth (m) and water temperature (°C) measured on La Guette peatland in 6 piezometers (lgt/pz_dc, lgt/pz_wc, lgt/pz_cbdv_amont, lgt/pz_cbdv_aval, lgt/pz_do, lgt/pz_wo). Measurements start on 15-06-2008 and are regularly updated with new data.<br> <br> Zip file contain :</p> <ul> <li>metadata file (TOUR_en.json) which describe stations, sensors, variables and process</li> <li>csv file contain time series data for all variables by station</li> </ul> <p>Additional information on the measurement can be found in this website : <a href="https://data-snot.cnrs.fr/data-access/">https://data-snot.cnrs.fr/data-access/</a><br> We also recommend to contact sno-tourbieres to talk about data acquisition and use : <a href="mailto:contact.sno-tourbieres@cnrs-orleans.fr">contact.sno-tourbieres@cnrs-orleans.fr</a></p>
Data from: On the role of water table depth and urbanization on groundwater drought susceptibility
<p>Propagation of meteorological drought to groundwater drought is mediated by a range of natural and human-induced drivers. Using long-term (1978–2020)<em> in-situ</em> groundwater level depth (GWD) time series from 2,928 pairs of monitoring wells, this study assesses the role of two such drivers, viz., GWD and urbanization, on groundwater drought characteristics. Results show that locations with deeper GWD often experience less frequent but more intense groundwater droughts with longer average duration. In contrast, urbanization is generally associated with a reduction in groundwater drought duration and an increase in its frequency. Relative to the influence of GWD, urbanization's imprint on groundwater drought characteristics is muted. These findings can aid in improved assessment of groundwater drought risks, and for devising more effective drought adaptation measures.</p>
Data from: On the role of water table depth and urbanization on groundwater drought susceptibility
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2012 growing season water table depth in common gardens:Specialization, maintenance of diversity and ecosystem consequences of growth defense trade-offs in a model system, the hyper-diverse willow communities of Cedar Creek
Cedar Creek includes a diversity of habitats, which support an astonishing number of species (15) from a single evolutionary lineage: the willow family (Salicaceae). The physiological tolerances and abiotic mechanisms that maintain natural diversity in this hyper-diverse system are beginning to be understood; the role of biotic interactions, however, remains a major gap in understanding. We hypothesize that insect herbivory plays a critical role in niche partitioning, providing an important explanation for high willow diversity. Using a replicated series of common gardens and insect herbivore manipulations in resource rich and resource poor habitats, we are testing for evolved trade-offs between defense investment and growth rate. We expect specialized plant syndromes to emerge along the continuum from ???herbivore escape??? via fast growth in high resource environments to ???anti-herbivore protection??? via heavy investment in defense in low resource environments. Evolved growth/defense strategies that promote diversity are also likely to have ecosystem consequences due to foliar chemical influences on decomposition and the composition and diversity of the insect communities they support. The proposed research takes advantage of natural diversity, providing an important model system at Cedar Creek.
Data from: Drought legacies are dependent on water table depth, wood anatomy, and drought timing across the eastern U.S.
Severe droughts can impart long-lasting legacies on forest ecosystems through lagged effects that hinder tree recovery and suppress whole-forest carbon uptake. However, the local climatic and edaphic factors that interact to affect drought legacies in temperate forests remain unknown. Here, we pair a dataset of 143 tree ring chronologies across the mesic forests of the eastern U.S. with historical climate and local soil properties. We found legacy effects to be widespread, the magnitude of which increased markedly in diffuse porous species, sites with deep water tables, and in response to late-season droughts (August – September). Using an ensemble of downscaled climate projections, we additionally show that our sites are projected to drastically increase in water deficit and drought frequency by the end of the century, potentially increasing the size of legacy effects by up to 65% and acting as a significant process shaping forest composition, carbon uptake, and mortality.
Data from: Drought legacies are dependent on water table depth, wood anatomy, and drought timing across the eastern U.S.
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A soil moisture-dependent model to simulate water table depth and proportions of surface and subsurface runoff and its validation at basin scale
<p>The data is the simulations of the SMD-model, Sy-mdoel, adn Noah-MP in three basins in China and the USA. The vaiables are monthly water table depth, soil moisture, subsurface and total runoff. </p>
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