Seasonal contributions of vegetation types to suburban evapotranspiration
暂无分享,去创建一个
[1] N. Holbrook,et al. Coupling whole-tree transpiration and canopy photosynthesis in coniferous and broad-leaved tree species , 2002 .
[2] Patrick L Brezonik,et al. Analysis and predictive models of stormwater runoff volumes, loads, and pollutant concentrations from watersheds in the Twin Cities metropolitan area, Minnesota, USA. , 2002, Water research.
[3] K. Gallo,et al. Surface Energy Balance Measurements Above an Exurban Residential Neighbourhood of Kansas City, Missouri , 2009 .
[4] J. D. Butler,et al. Turfgrass evapotranspiration: Responses to shade preconditioning , 2004, Irrigation Science.
[5] W. Oechel,et al. Energy balance closure at FLUXNET sites , 2002 .
[6] J. Tanimoto,et al. Field experiment on transpiration from isolated urban plants , 2007 .
[7] T. A. Black,et al. A comparison of sap flow and eddy fluxes of water vapor from a boreal deciduous forest , 1997 .
[8] F. Valente,et al. Modelling interception loss for two sparse eucalypt and pine forests in central Portugal using reformulated Rutter and Gash analytical models , 1997 .
[9] D. Haase. Effects of urbanisation on the water balance – A long-term trajectory , 2009 .
[10] Rachel Spronken-Smith,et al. Advection and the surface energy balance across an irrigated urban park , 2000 .
[11] R. Carrow. Drought resistance aspects of turfgrasses in the Southeast : evapotranspiration and crop coefficients , 1995 .
[12] Paul C. Stoy,et al. Estimating components of forest evapotranspiration: A footprint approach for scaling sap flux measurements , 2008 .
[13] N. Coops,et al. Extracting urban vegetation characteristics using spectral mixture analysis and decision tree classifications. , 2009 .
[14] R. Kjelgren,et al. Urban tree transpiration over turf and asphalt surfaces , 1998 .
[15] C. Grimmond,et al. Intraurban Differences of Surface Energy Fluxes in a Central European City , 2006 .
[16] Timothy R. Oke,et al. Flux and turbulence measurements at a densely built‐up site in Marseille: Heat, mass (water and carbon dioxide), and momentum , 2004 .
[17] T. Oke. Advectively-assisted evapotranspiration from irrigated urban vegetation , 1979 .
[18] S. Running,et al. Mapping and Modeling the Biogeochemical Cycling of Turf Grasses in the United States , 2005, Environmental management.
[19] Jun Wang,et al. Mechanistic Simulation of Tree Effects in an Urban Water Balance Model 1 , 2008 .
[20] Gordon B. Bonan,et al. The microclimates of a suburban Colorado (USA) landscape and implications for planning and design , 2000 .
[21] A. Rutter,et al. A Predictive Model of Rainfall Interception in Forests. II. Generalization of the Model and Comparison with Observations in Some Coniferous and Hardwood Stands , 1975 .
[22] Eberhard Parlow,et al. Flux measurements in Cairo. Part 1: in situ measurements and their applicability for comparison with satellite data , 2011 .
[23] P. Reich,et al. From tropics to tundra: global convergence in plant functioning. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[24] Rachel Spronken-Smith,et al. Comparison of summer‐ and winter‐time suburban energy fluxes in Christchurch, New Zealand , 2002 .
[25] Stephanie Pincetl,et al. Transpiration of urban forests in the Los Angeles metropolitan area. , 2011, Ecological applications : a publication of the Ecological Society of America.
[26] D. Guyon,et al. Quality analysis applied on eddy covariance measurements at complex forest sites using footprint modelling , 2005 .
[27] E. Ervin,et al. Drought avoidance aspects and crop coefficients of Kentucky bluegrass and tall fescue turfs in the semiarid west , 1998 .
[28] T. Meyers,et al. Measuring Biosphere‐Atmosphere Exchanges of Biologically Related Gases with Micrometeorological Methods , 1988 .
[29] M. Bruns,et al. Ecosystem Properties of Urban Land Covers at the Aboveground–Belowground Interface , 2008, Ecosystems.
[30] R. B. Jackson,et al. A global analysis of root distributions for terrestrial biomes , 1996, Oecologia.
[31] Dennis D. Baldocchi,et al. A comparison of methods for determining forest evapotranspiration and its components: sap-flow, soil water budget, eddy covariance and catchment water balance , 2001 .
[32] T. Thompson,et al. Penman Monteith Crop Coefficients for Use with Desert Turf Systems , 2001 .
[33] Hans Peter Schmid,et al. Ecosystem‐atmosphere exchange of carbon dioxide over a mixed hardwood forest in northern lower Michigan , 2003 .
[34] J. Ehleringer,et al. Wood anatomy constrains stomatal responses to atmospheric vapor pressure deficit in irrigated, urban trees , 2008, Oecologia.
[35] Mark D. Semon,et al. POSTUSE REVIEW: An Introduction to Error Analysis: The Study of Uncertainties in Physical Measurements , 1982 .
[36] J. Pereira,et al. Evapotranspiration from a Mediterranean evergreen oak savannah: The role of trees and pasture , 2009 .
[37] J. Winkler,et al. Effect of Temperature Adjustments on the Minneapolis-St. Paul Urban Heat Island , 1981 .
[38] R. Kjelgren,et al. Energy balance of six common landscape surfaces and the influence of surface properties on gas exchange of four containerized tree species , 2004 .
[39] L. Urban,et al. Granier's Thermal Dissipation Probre (TDP) method for measuring sap flow in trees : theory and practice , 2004 .
[40] J. D. Butler,et al. Turfgrass Evapotranspiration. 11. Responses to Deficit Irrigation1 , 1984 .
[41] P. Craul,et al. A Description of Urban Soils and Their Desired Characteristics , 1985, Arboriculture & Urban Forestry.
[42] C. J. Moore. Frequency response corrections for eddy correlation systems , 1986 .
[43] Natascha Kljun,et al. Interpreting CO2 Fluxes Over a Suburban Lawn: The Influence of Traffic Emissions , 2011 .
[44] T. Oke,et al. Turbulent Heat Fluxes in Urban Areas: Observations and a Local-Scale Urban Meteorological Parameterization Scheme (LUMPS) , 2002 .
[45] G. Campbell,et al. An Introduction to Environmental Biophysics , 1977 .
[46] W. Havranek,et al. Physiological processes during winter dormancy and their ecological significance , 1995 .
[47] T. Oke,et al. Spatial variability of energy fluxes in suburban terrain , 1991 .
[48] S. Wullschleger,et al. Transpiration from a multi-species deciduous forest as estimated by xylem sap flow techniques , 2001 .
[49] C. Rose,et al. Pasture evapotranspiration under varying tree planting density in an agroforestry experiment , 1988 .
[50] Fei Yuan,et al. Trends in Extreme Temperatures in Relation to Urbanization in the Twin Cities Metropolitan Area, Minnesota , 2009 .
[51] G. Katul,et al. Scaling xylem sap flux and soil water balance and calculating variance: a method for partitioning water flux in forests , 1998 .
[52] Timothy R. Oke,et al. Evapotranspiration rates in urban areas , 1999 .
[53] H. Schmid. Source areas for scalars and scalar fluxes , 1994 .
[54] J. McFadden,et al. Influence of seasonality and vegetation type on suburban microclimates , 2010, Urban Ecosystems.
[55] S. Harlan,et al. Residents’ Yard Choices and Rationales in a Desert City: Social Priorities, Ecological Impacts, and Decision Tradeoffs , 2009, Environmental management.
[56] Walter Senn,et al. A cospectral correction model for measurement of turbulent NO2 flux , 1995 .
[57] Taylor H. Ricketts,et al. The consequences of urban land transformation on net primary productivity in the United States , 2004 .
[58] Frans T. M. Nieuwstadt,et al. Temperature measurement with a sonic anemometer and its application to heat and moisture fluxes , 1983 .
[59] Thomas Foken,et al. Quality control of CarboEurope flux data – Part 2: Inter-comparison of eddy-covariance software , 2007 .
[60] A. Grelle,et al. Addressing the influence of instrument surface heat exchange on the measurements of CO2 flux from open‐path gas analyzers , 2008 .
[61] F. Ludwig,et al. Below‐ground competition between trees and grasses may overwhelm the facilitative effects of hydraulic lift , 2004 .
[62] Dennis D. Baldocchi,et al. On measuring and modeling energy fluxes above the floor of a homogeneous and heterogeneous conifer forest , 2000 .
[63] David Fowler,et al. Micrometeorological measurements of the urban heat budget and CO2 emissions on a city scale. , 2002, Environmental science & technology.
[64] Michiaki Sugita,et al. Seasonal variation of surface fluxes and scalar roughness of suburban land covers , 2005 .
[65] T. Whitlow,et al. A 3-YEAR STUDY OF WATER RELATIONS OF URBAN STREET TREES , 1992 .
[66] M. Kanda,et al. Seasonal and Diurnal Fluxes of Radiation, Heat, Water Vapor, and Carbon Dioxide over a Suburban Area , 2004 .
[67] L. Shashua-Bar,et al. The cooling efficiency of urban landscape strategies in a hot dry climate , 2009 .
[68] H. Schmid,et al. Environmental controls on sap flow in a northern hardwood forest. , 2005, Tree physiology.
[69] H. Cleugh,et al. Linking urban water balance and energy balance models to analyse urban design options , 2008 .
[70] J. C. Stevens,et al. Measuring and analyzing urban tree cover , 1996 .
[71] K. Davis,et al. Carbon exchange and venting anomalies in an upland deciduous forest in northern Wisconsin, USA , 2004 .
[72] W. Hart,et al. Urban lawn irrigation and management practices for water saving with minimum effect on lawn quality : completion report / , 1981 .
[73] Ü. Rannik,et al. Gap filling strategies for defensible annual sums of net ecosystem exchange , 2001 .
[74] Hans Peter Schmid,et al. Measurements of CO2 and energy fluxes over a mixed hardwood forest in the mid-western United States , 2000 .
[75] C. Priestley,et al. On the Assessment of Surface Heat Flux and Evaporation Using Large-Scale Parameters , 1972 .
[76] T. Givnish. Adaptive significance of evergreen vs. deciduous leaves : solving the triple paradox , 2002 .
[77] T. Kumagai,et al. Sources of error in estimating stand transpiration using allometric relationships between stem diameter and sapwood area for Cryptomeria japonica and Chamaecyparis obtusa , 2005 .
[78] Paul V. Bolstad,et al. Sap flux–upscaled canopy transpiration, stomatal conductance, and water use efficiency in an old growth forest in the Great Lakes region of the United States , 2006 .
[79] A. Granier,et al. Evaluation of transpiration in a Douglas-fir stand by means of sap flow measurements. , 1987, Tree physiology.
[80] R. Oren,et al. Species differences in stomatal control of water loss at the canopy scale in a mature bottomland deciduous forest , 2003 .
[81] H. Schmid,et al. A Simple Parameterisation for Flux Footprint Predictions , 2004 .
[82] C. Grimmond,et al. Influence of tree cover on summertime surface energy balance fluxes, San Gabriel Valley, Los Angeles , 1996 .
[83] Xinmin Zhang,et al. The most economical irrigation amount and evapotranspiration of the turfgrasses in Beijing City, China , 2007 .
[84] J. D. Butler,et al. Turfgrass Evapotranspiration. I. Factors Influencing Rate in Urban Environments1 , 1983 .
[85] Natascha Kljun,et al. Spatial representativeness of tall tower eddy covariance measurements using remote sensing and footprint analysis. , 2009 .
[86] George Burba,et al. Seasonal and interannual variability in evapotranspiration of native tallgrass prairie and cultivated wheat ecosystems , 2005 .
[87] E. K. Webb,et al. Correction of flux measurements for density effects due to heat and water vapour transfer , 1980 .
[88] T Vesala,et al. Flux and concentration footprint modelling: state of the art. , 2008, Environmental pollution.
[89] T. Foken,et al. Tools for quality assessment of surface-based flux measurements , 1996 .
[90] D. Baldocchi,et al. What limits evaporation from Mediterranean oak woodlands The supply of moisture in the soil, physiological control by plants or the demand by the atmosphere? , 2007 .
[91] Dean Vickers,et al. Quality Control and Flux Sampling Problems for Tower and Aircraft Data , 1997 .
[92] Eero Nikinmaa,et al. Surface–atmosphere interactions over complex urban terrain in Helsinki, Finland , 2008 .
[93] J. McFadden,et al. Biological and environmental controls on tree transpiration in a suburban landscape , 2010 .