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World Species : Climate Data for Latitude 54.75 Longitude 49.25

Climate Data for Latitude 54.75 Longitude 49.25

Köppen climate classification: Dfb (Climate: snow; Precipitation: fully humid; Temperature: warm summer)
 

Locations

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Bulgarski
Staromainskiy forest and bay

Averages (English) Metric

TypeUnitsJanFebMarAprMayJunJulAugSepOctNovDecPeriod
Min Temp4.24.515.834.747.656.059.856.146.334.321.79.2108 years
Mean Temp10.211.122.642.457.365.869.165.654.840.526.314.7109 years
Max Temp16.017.329.150.067.075.778.575.363.446.730.820.4105 years
FrostDays31.028.031.028.87.33.01.01.011.329.430.031.01 years
WetDays20.612.510.08.78.711.39.49.210.714.717.619.2109 years
Precipitationin1.20.90.91.11.52.02.42.11.71.81.61.4109 years
Potential Evapotranspirationin0.20.20.82.44.85.35.54.32.61.10.40.246 years
Yearly Average Temperatures 2010 - 2009 (English) Latitude 54.75 Longitude 49.25
Monthly Mean Temperatures 1901 - 2009 (English) Latitude 54.75 Longitude 49.25
Yearly Total Frost Days 1962 - 2009 Latitude 54.75 Longitude 49.25
Yearly Total Precipitation 1901 - 2009 (English) Latitude 54.75 Longitude 49.25
Yearly Total Wet Days 1901 - 2009 Latitude 54.75 Longitude 49.25
Yearly Total Potential Evapotranspiration 1903 - 2009 (English) Latitude 54.75 Longitude 49.25

Climate data provided by CRU TS 3.1 - University of East Anglia Climate Research Unit (CRU). [Phil Jones, Ian Harris]. CRU Time Series (TS) high resolution gridded datasets, [Internet]. NCAS British Atmospheric Data Centre, 2008, Accessed: 28-July-2011
Charting software provided by pChart - a PHP class to build charts.
Köppen climate classification provided by Kottek, M., J. Grieser, C. Beck, B. Rudolf, and F. Rubel, 2006: World Map of Köppen-Geiger Climate Classification updated. Meteorol. Z., 15, 259-263
The calculation method for the potential evapotranspiration is the FAO grass reference equation (Ekstrom et al., 2007, which is based on Allen et al., 1994). It is a variant of the Penman Monteith method using TMP, TMN, TMX, VAP, CLD.