Treesearch
Displaying 18,581 - 18,590 of 64,787 Publications- AuthorsDavid R. Coyle, William J. Mattson, Jr., Alexander L. Friend, Kenneth F. RaffaSourceCanadian Journal of Forest ResearchYear2014
- We analyzed energy partitioning in short- and long-hydroperiod freshwater marsh ecosystems in the Florida Everglades by examining energy balance components (eddy covariance derived latent energy (LE) and sensible heat (H) flux). The study period included several wet and dry seasons and variable water levels, allowing us to gain better mechanistic information about the control of and changes in marsh hydroperiods. The annual length of inundation is ~5 months at the short-hydroperiod site (25°26?16.5?N, 80°35?40.68?W), whereas the long-hydroperiod site (25°33'6.72"N, 80°46'57.36"W) is...AuthorsSparkle L. Malone, Christina L. Staudhammer, Henry W. Loescher, Paulo Olivas, Steven F. Oberbauer, Michael G. Ryan, Jessica Schedlbauer, Gregory StarrKeywordsSourceJournal of Geophysical Research: Biogeosciences. 119(8): 1487-1505.Year2014
- This research examines the relationships between El Nino Southern Oscillation (ENSO), water level, precipitation patterns and carbon dioxide (CO2) exchange rates in the freshwater wetland ecosystems of the Florida Everglades. Data was obtained over a 5-year study period (2009–2013) from two freshwater marsh sites located in Everglades National Park that differ in hydrology. At the short-hydroperiod site (Taylor Slough; TS) and the long-hydroperiod site (Shark River Slough; SRS) fluctuations in precipitation patterns occurred with changes in ENSO phase, suggesting that extreme ENSO phases...AuthorsSparkle L. Malone, Christina L. Staudhammer, Steven F. Oberbauer, Paulo Olivas, Michael G. Ryan, Jessica L. Schedlbauer, Henry W. Loescher, Gregory StarrKeywordsSourcePLoS ONE. 9(12): e115058.Year2014
- Wildfires are a global phenomenon that in some circumstances can result in human casualties, economic loss, and ecosystem service degradation. In this article we spatially identify wildfire risk transmission pathways and locate the areas of highest exposure of human populations to wildland fires under severe, but not uncommon, weather events. We quantify varying levels of exposure in terms of population potentially affected and tie the exposure back to the spatial source of the risk for the Front Range of Colorado, USA. We use probabilistic fire simulation modeling to address where fire...AuthorsJessica R. Haas, Dave E. Calkin, Matthew P. ThompsonSourceRisk Analysis. doi: 10.1111/risa.12270.Year2014
- Wildfire can drastically increase the probability of debris flows, a potentially hazardous and destructive form of mass wasting, in landscapes that have otherwise been stable throughout recent history. Although there is no way to know the exact location, extent, and severity of wildfire, or the subsequent rainfall intensity and duration before it happens, probabilities of fire and debris-flow occurrence for different locations can be estimated with geospatial analysis and modeling efforts. The purpose of this report is to provide information on which watersheds might constitute the most...AuthorsAnne C. Tillery, Jessica R. Haas, Lara W. Miller, Joe H. Scott, Matthew P. ThompsonKeywordsSourceScientific Investigations Report 2014-5161. Reston, VA: U.S. Geological Survey. 24 p.Year2014
- Many protected areas may not be adequately safeguarding biodiversity from human activities on surrounding lands and global change. The magnitude of such change agents and the sensitivity of ecosystems to these agents vary among protected areas. Thus, there is a need to assess vulnerability across networks of protected areas to determine those most at risk and to lay the basis for developing effective adaptation strategies. We conducted an assessment of exposure of U.S. National Parks to climate and land use change and consequences for vegetation communities. We first defined park protected-...AuthorsAndrew J. Hansen, Nathan Piekielek, Cory Davis, Jessica R. Haas, David M. Theobald, John E. Gross, William B. Monahan, Tom Olliff, Steven W. RunningSourceEcological Applications. 24(3): 484-502.Year2014
- Project RC-1649, "Advanced Chemical Measurement of Smoke from DoD-prescribed Burns" was undertaken to use advanced instrumental techniques to study in detail the particulate and vapor-phase chemical composition of the smoke that results from prescribed fires used as a land management tool on DoD bases, particularly bases in the southeastern U.S. The statement of need (SON) called for "(1) improving characterization of fuel consumption" and "(2) improving characterization of air emissions under both flaming and smoldering conditions with respect to volatile organic compounds, heavy metals,...AuthorsT.J. Johnson, Robert Yokelson, S.K. Akagi, I.R. Burling, David R. Weise, Shawn P. Urbanski, C.E. Stockwell, Jim J. Reardon, Emily N. Lincoln, L.T.M. Profeta, A. Mendoza, M.D.W. Schneider, R.L. Sams, S.D. Williams, Cyle E. Wold, D.W.T. Griffith, M. Cameron, J.B. Gilman, C. Warneke, J.M. Roberts, P. Veres, W.C. Kuster, J de GouwKeywordsSourceTechnical Report PNNL-23025. Richland, WA: U.S. Department of Energy, Pacific Northwest National Laboratory. 269 p. Online: http://www.pnnl.gov/main/publications/external/technical_reports/PNNL-23025.pdfYear2014
- Within minutes after emission, rapid, complex photochemistry within a biomass burning smoke plume can cause large changes in the concentrations of ozone (O3) and organic aerosol (OA). Being able to understand and simulate this rapid chemical evolution under 5 a wide variety of conditions is a critical part of forecasting the impact of these fires on air quality, atmospheric composition, and climate. Here we use version 2.1 of the Aerosol Simulation Program (ASP) to simulate the evolution of O3 and secondary organic aerosol (SOA) within a young biomass burning smoke plume from the Williams...AuthorsM. J. Alvarado, C. R. Lonsdale, R. J. Yokelson, S. K. Akagi, I. R. Burling, H. Coe, J. S. Craven, E. Fischer, G. R. McMeeking, J. H. Seinfeld, T. Soni, J. W. Taylor, David R. Weise, Cyle E. WoldSourceAtmospheric Chemistry and Physics Discussions. 14(23): 32427-32489Year2014
- This paper provides an overview and summary of the current state of knowledge regarding critical atmospheric processes that affect the distribution and concentrations of greenhouse gases and aerosols emitted from wildland fires or produced through subsequent chemical reactions in the atmosphere. These critical atmospheric processes include the dynamics of plume rise, chemical reactions involving smoke plume constituents, the long-range transport of smoke plumes, and the potential transport of gases and aerosols from wildland fires into the stratosphere. In the area of plume-rise dynamics,...AuthorsWarren E. E. Heilman, Yongqiang Liu, Shawn P. Urbanski, Vladimir Kovalev, Robert MicklerSourceForest Ecology and Management. 317: 70-79.Year2014
- Global warming and human-driven impacts are changing the World’s ecological zones. This book applies the principles described in Bailey’s Ecosystem Geography: From Ecoregions to Sites, 2nd ed. (Springer 2009, 1st ed. 1996) to describe and characterize the major terrestrial and aquatic ecological zones of the Earth. Bailey’s system for classifying these zones has been adopted by major organizations such as the U.S. Forest Service and The Nature Conservancy and this book is a significant contribution to a long tradition of classifying and studying the world’s ecological regions or ecoregions....AuthorsRobert G. BaileyKeywordsSourceSpringer-Verlag. 180 p.Year2014