Minacapilli et al., 2016 - Google Patents
A time domain triangle method approach to estimate actual evapotranspiration: Application in a Mediterranean region using MODIS and MSG-SEVIRI productsMinacapilli et al., 2016
View PDF- Document ID
- 7473988014339367337
- Author
- Minacapilli M
- Consoli S
- Vanella D
- Ciraolo G
- Motisi A
- Publication year
- Publication venue
- Remote sensing of environment
External Links
Snippet
In this study, spatially distributed estimates of regional actual evapotranspiration (ET) were obtained using a revised procedure of the so called “triangle method” to parameterize the Priestley–Taylor ϕ coefficient. In the procedure herein proposed, named Time-Domain …
- 230000004907 flux 0 abstract description 67
Classifications
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01W—METEOROLOGY
- G01W1/00—Meteorology
- G01W1/02—Instruments for indicating weather conditions by measuring two or more variables, e.g. humidity, pressure, temperature, cloud cover, wind speed
- G01W1/06—Instruments for indicating weather conditions by measuring two or more variables, e.g. humidity, pressure, temperature, cloud cover, wind speed giving a combined indication of weather conditions
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01W—METEOROLOGY
- G01W1/00—Meteorology
- G01W1/10—Devices for predicting weather conditions
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01W—METEOROLOGY
- G01W1/00—Meteorology
- G01W1/08—Adaptations of balloons, missiles, or aircraft for meteorological purposes; Radiosondes
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N25/00—Investigating or analyzing materials by the use of thermal means
- G01N25/56—Investigating or analyzing materials by the use of thermal means by investigating moisture content
- G01N25/58—Investigating or analyzing materials by the use of thermal means by investigating moisture content by measuring changes of properties of the material due to heat, cold or expansion
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S13/00—Systems using the reflection or reradiation of radio waves, e.g. radar systems; Analogous systems using reflection or reradiation of waves whose nature or wavelength is irrelevant or unspecified
- G01S13/88—Radar or analogous systems specially adapted for specific applications
- G01S13/95—Radar or analogous systems specially adapted for specific applications for meteorological use
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Minacapilli et al. | A time domain triangle method approach to estimate actual evapotranspiration: Application in a Mediterranean region using MODIS and MSG-SEVIRI products | |
Gokmen et al. | Integration of soil moisture in SEBS for improving evapotranspiration estimation under water stress conditions | |
Park et al. | Drought monitoring using high resolution soil moisture through multi-sensor satellite data fusion over the Korean peninsula | |
Minacapilli et al. | Estimation of actual evapotranspiration of Mediterranean perennial crops by means of remote-sensing based surface energy balance models | |
French et al. | Remote sensing of evapotranspiration over cotton using the TSEB and METRIC energy balance models | |
Tang et al. | An intercomparison of three remote sensing-based energy balance models using Large Aperture Scintillometer measurements over a wheat–corn production region | |
Long et al. | A two-source trapezoid model for evapotranspiration (TTME) from satellite imagery | |
Guillevic et al. | Land Surface Temperature product validation using NOAA's surface climate observation networks—Scaling methodology for the Visible Infrared Imager Radiometer Suite (VIIRS) | |
Galleguillos et al. | Comparison of two temperature differencing methods to estimate daily evapotranspiration over a Mediterranean vineyard watershed from ASTER data | |
Zhou et al. | Assessing the impacts of an ecological water diversion project on water consumption through high-resolution estimations of actual evapotranspiration in the downstream regions of the Heihe River Basin, China | |
Guzinski et al. | Using a thermal-based two source energy balance model with time-differencing to estimate surface energy fluxes with day–night MODIS observations | |
Shu et al. | Estimation of regional evapotranspiration over the North China Plain using geostationary satellite data | |
Tang et al. | Evaluation of two end-member-based models for regional land surface evapotranspiration estimation from MODIS data | |
Leng et al. | A method for deriving all‐sky evapotranspiration from the synergistic use of remotely sensed images and meteorological data | |
Peng et al. | Estimation of evapotranspiration from MODIS TOA radiances in the Poyang Lake basin, China | |
Tanguy et al. | A new parameterisation scheme of ground heat flux for land surface flux retrieval from remote sensing information | |
Wu et al. | An improved method for deriving daily evapotranspiration estimates from satellite estimates on cloud-free days | |
Gebremedhin et al. | Deriving potential evapotranspiration from satellite-based reference evapotranspiration, Upper Tekeze Basin, Northern Ethiopia | |
Chen et al. | Land surface heterogeneity in the Cooperative Atmosphere Surface Exchange Study (CASES-97). Part I: Comparing modeled surface flux maps with surface-flux tower and aircraft measurements | |
Tan et al. | A method for downscaling daily evapotranspiration based on 30-m surface resistance | |
Ferreira et al. | Assessment of water demands for irrigation using energy balance and satellite data fusion models in cloud computing: A study in the Brazilian semiarid region | |
Schüttemeyer et al. | Satellite-based actual evapotranspiration over drying semiarid terrain in West Africa | |
Garnaud et al. | Field-scale spatial variability of soil moisture and L-band brightness temperature from land surface modeling | |
Liang et al. | Estimating evapotranspiration using improved fractional vegetation cover and land surface temperature space | |
Hu et al. | Evaluation of the temporal reconstruction methods for MODIS-based continuous daily actual evapotranspiration estimation |