Search results for "Pan evaporation"

showing 2 items of 2 documents

Epidemiological analysis of human fascioliasis in northeastern Punjab, Pakistan.

2016

A coprological study was performed to assess human fascioliasis in 7200 subjects inhabiting rural communities of localities close to the capital city of Lahore in the northeastern part of the very highly populated Punjab province, Pakistan, a country where human infection had never been reported before 2005. The analysis of 1200 subjects including 50 subjects/month throughout a two-year study in each of six localities surveyed provided an overall prevalence of 1.18%, with a range between 0.67% and 1.75% according to localities. Infection rates did not differ according to gender, excepting a higher rate in females (1.13% vs 0.77%) in one locality. Prevalences according to age groups proved t…

0301 basic medicineAdultMalemedicine.medical_specialtyFascioliasisAdolescentRange (biology)Veterinary (miscellaneous)Climate Change030231 tropical medicinePopulation densitylaw.invention03 medical and health sciencesFecesYoung Adult0302 clinical medicinelawEnvironmental protectionTropical climateEpidemiologymedicinePrevalenceAnimalsHumansPakistanChildPan evaporationPopulation DensityTropical ClimatePublic healthInfant030108 mycology & parasitologyInfectious DiseasesGeographyTransmission (mechanics)Human fascioliasisInsect ScienceChild PreschoolParasitologyFemaleSeasonsDemographyActa tropica
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Global review and synthesis of trends in observed terrestrial near-surface wind speeds: Implications for evaporation

2012

Summary In a globally warming climate, observed rates of atmospheric evaporative demand have declined over recent decades. Several recent studies have shown that declining rates of evaporative demand are primarily governed by trends in the aerodynamic component (primarily being the combination of the effects of wind speed (u) and atmospheric humidity) and secondarily by changes in the radiative component. A number of these studies also show that declining rates of observed near-surface u (termed ‘stilling’) is the primary factor contributing to declining rates of evaporative demand. One objective of this paper was to review and synthesise the literature to assess whether stilling is a globa…

EvapotranspirationClimatologyAir temperatureEvaporationEnvironmental scienceClimate changeResource assessmentSpatial distributionPan evaporationWind speedWater Science and TechnologyJournal of Hydrology
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