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Dutch Wadden Sea, Temperature, 1972 - 2018
https://projects.knmi.nl/klimatologie/metadata/dekooy.html
06235 De Kooy
These time series are inhomogeneous because of station relocations and
changes in observation techniques. As a result, these series are not
suitable for trend analysis. For climate change studies we refer to
the homogenized series of monthly temperatures of De Bilt
or the Central Netherlands Temperature
.
Positie: 52° 56' N.B. 04° 47'O.L.
Terreinhoogte: +0,57 meter t.o.v. NAP.
Startdatum: 19720801
Karakteristiek omgeving: Kuststation, in polder gelegen aan de Waddenzeezijde (ca.1 km), juist ten zuiden van Den Helder; vliegveld
Grondsoort: Klei
Hoogte barometer: +1,11 meter t.o.v. NAP.
Hoogte windmeetmast: 10 meter
Visuele waarnemingen: Stopdatum 20021120, 12.00 UT
Voortzetting van: Den Helder
Positie: 52° 58' N.B. 04° 45'O.L.
Terreinhoogte: +4,40 meter t.o.v. NAP.
Metingen: 19060101 - 19720731
Temperatuurmetingen: 1,5 m, gemeten m.b.v. :
19060101 - 19611123 Thermograaf in Stevensonhut (op 2,20 meter boven maaiveld)
19611124 - 19720731 Thermograaf in Stevensonhut (op 1,50 meter boven maaiveld)
19720801 - 19921231 Weerstandsmeting in Stevensonhut (op 1,50 meter boven maaiveld)
19930101 - heden Elektronische sensor in schotelhut (op 1,50 meter boven maaiveld)
19720731 Instrumentverplaatsing, 1000 m.
Temperatuurmetingen: 0,1 m, gemeten m.b.v. :
19060101 - 19921231 ?
19930101 - heden Elektronische sensor in schotelhut
19720731 Instrumentverplaatsing, 1000 m.
Neerslagmetingen: gemeten m.b.v. :
19570101 - 19720731 Pluviograaf (vangoppervlak 4 dm2 op 0,40 meter boven maaiveld)
19720801 - 19921231 Pluviograaf (vangoppervlak 2 dm2 op 0,40 meter boven maaiveld)
19930101 - 20070426 Elektrische meting (vangoppervlak 2 dm2 op 0,40 meter boven maaiveld)
20070426 - heden Neerslagmeter in OTT scherm
Luchtdrukmetingen: herleid naar NAP en gemeten m.b.v. :
19060101 - 19841231 Barograaf en kwikbarometer
19850101 - 19921231 Barograaf en digitale aneroïde barometer
19930101 - heden Paroscientific barometer
20011011 Instrumentverplaatsing, 120 m.
Windmetingen: gemeten m.b.v., bijzonderheden en meethoogte:
19060101 - 19080901 Dines op kastvormige toren van 11,0 m. hoogte; windrichting in streken m.b.v. mechanische registratie. Meethoogte 12,4 m.
19080905 - 19220630 Dines op 11,0 meter hoge gesloten houten toren; windrichting anemograaf "Sass en Co" systeem Steffens. Meethoogte 13,0 m.
19220601 - 1923???? Idem; op 11,0 meter hoge open betonnen toren. Meethoogte 14,0 m.
1923???? - 19541121 Dines op 11,0 meter hoge open betonnen toren; windrichting patent Halliwell (aangepast door Dr. Schoute). Meethoogte 14,0 m.
19541122 - 19720731 Nieuw type Dines met richtingsregistratie. Meethoogte 13,9 m.
19720801 - 19841211 Cup anemometer met frequentiemeter en elektrische windvaan; Heath recorder; op 19720925 en 19800826 kleine verplaatsingen. Meethoogte 10,0 m.
19841212 - 19921231 Idem; Camille Bauer recorder. Meethoogte 10,0 m.
19930101 - heden AWS (digitale registratie). Meethoogte 10,0 m.
20011011 Instrumentverplaatsing, 120 m.
Vochtmetingen: gemeten m.b.v.:
19060101 - 19801117 Droge/natte boltemperatuur
19801118 - 19860928 Meting inclusief haarhygrometer
19860929 - 19940207 Hygromer
19940208 - heden Vaisala sensor in schotelhut. Meethoogte 1,5 m.
Stralingsmetingen: gemeten m.b.v.:
19641101 - 19870408 Pyranometer
19870409 - heden CM11 sensor
Zonneschijnduur: gemeten m.b.v.:
19080901 - 19950401 Campbell-Stokes registratie
Zonneschijnduur wordt ook bepaald uit globale straling
Zichtmetingen: gemeten m.b.v.:
19550103 - 20000508 Visuele waarneming, later met HSS sensor
20000509 - heden PWS sensor (FD12P). Meethoogte 2,5 m.
Wolkenmetingen: gemeten m.b.v.:
19510102 - 199409 Visuele waarneming, later met gebruik van wolkenlicht
199410 - 20000508 Ceilometer (CK12K)
20000509 - heden Wolkenhoogtemeter (LD40
Vascular plant diversity in Companhia das Lezírias (LTER_EU_PT_004)
Presence/absence data for vascular plant species in Companhia das Lezírias and their habitat category. First, the most important vegetation units were selected, based on previous land cover maps. In each unit a 1km transect was established, passing trough the centroid of the habitat patch. A 2m margin was established for both sides of the transects and all species within it were registered. Period of field survey has been in May, June and July 2011
ECHAM-HAMMOZ reference simulation 2003-2012
These datasets represent a selection of the most important output variables from the reference simulation of the ECHAM-HAMMOZ chemistry climate model (CCM), which is described in the journal paper "The Chemistry Climate Model ECHAM6.3-HAM2.3-MOZ1.0" by M. G. Schultz et al. (Geosci. Model Dev., 2018). The data are monthly mean fields of global atmospheric composition (from the surface to ~80 km altitude) and they include some meteorological fields as well as diagnostics of some chemical tendencies. The file format is netCDF.double hyam(nhym) ; double hybm(nhym) ; double lat(lat) ; double lev(lev) ; double lon(lon) ; double time(time) ; float aclc(time, lev, lat, lon) ; float ps(time, lat, lon) ; float ddep_BC(time, lat, lon) ; float ddep_DUST(time, lat, lon) ; float ddep_HNO3(time, lat, lon) ; float ddep_NO2(time, lat, lon) ; float ddep_O3(time, lat, lon) ; float ddep_OC(time, lat, lon) ; float ddep_SEASALT(time, lat, lon) ; float ddep_SULFATE(time, lat, lon) ; float emi_C5H8(time, lat, lon) ; float emi_NO_lghtng(time, lat, lon) ; float gridbox_area(time, lat, lon) ; float gridbox_height(time, lev, lat, lon) ; float losso1dviah2o(time, lev, lat, lon) ; float losso3viaho2(time, lev, lat, lon) ; float losso3viaoh(time, lev, lat, lon) ; float oh_reactivity(time, lev, lat, lon) ; float precip(time, lat, lon) ; float prodo3viach3o2(time, lev, lat, lon) ; float prodo3viaho2(time, lev, lat, lon) ; float prodo3viaro2(time, lev, lat, lon) ; float rate_CH4(time, lev, lat, lon) ; float density(time, lev, lat, lon) ; float sw_flux_surf(time, lat, lon) ; float sw_flux_toa(time, lat, lon) ; double time_bnds(time, bnds) ; float wdep_BC(time, lat, lon) ; float wdep_DUST(time, lat, lon) ; float wdep_HNO3(time, lat, lon) ; float wdep_OC(time, lat, lon) ; float wdep_SEASALT(time, lat, lon) ; float wdep_SULFATE(time, lat, lon) ; float BC(time, lev, lat, lon) ; float Bry(time, lev, lat, lon) ; float C2H6(time, lev, lat, lon) ; float C3H8(time, lev, lat, lon) ; float C5H8(time, lev, lat, lon) ; float CDNC(time, lev, lat, lon) ; float CH2O(time, lev, lat, lon) ; float Cly(time, lev, lat, lon) ; float DUST(time, lev, lat, lon) ; float H2O2(time, lev, lat, lon) ; float HNO3(time, lev, lat, lon) ; float NO(time, lev, lat, lon) ; float NO2(time, lev, lat, lon) ; float NOy(time, lev, lat, lon) ; float O3(time, lev, lat, lon) ; float OC(time, lev, lat, lon) ; float OH(time, lev, lat, lon) ; float OH_conc(time, lev, lat, lon) ; float PAN(time, lev, lat, lon) ; float SEASALT(time, lev, lat, lon) ; float SULFATE(time, lev, lat, lon) ; float S_a(time, lev, lat, lon)
LTER Birkenes Precipitation and throughfall data 1999-2017
Long-term monitoring (1999-2017) of precipitation (PC) and throughfall (TF) chemistry at the study site Birkenes (LTER_EU_NO_003). The original data with daily time resolution are found in EBAS (http://ebas.nilu.no/
Juupajoki vegetation
Understorey vegetation data related to Hyytiälä SMEAR II LTER Site (LTER_EU_FI_007) from Juupajoki (ICP forests Level II monitoring plots Juupajoki pine and spruce stands, nbr 10 and 11, 0.4 ha) during 1998, 2003, 2009 and 2014. Percentage covers on the ground level of all vascular, bryophyte and lichen species were determined on 16 permanently marked 2 m² sample quadrats on the subplot nro 1 (ICP forest II monitoring)
ECHAM-HAMMOZ reference simulation 2003-2012: stratospheric diagnostics (2008)
These datasets represent a selection of daily stratospheric diagnostics from the reference simulation of the ECHAM-HAMMOZ chemistry climate model (CCM), which is described in the journal paper "The Chemistry Climate Model ECHAM6.3-HAM2.3-MOZ1.0" by M. G. Schultz et al. (Geosci. Model Dev., 2018). The data are daily mean fields of global atmospheric composition (from the surface to ~80 km altitude) and they include some meteorological fields as well as specific diagnostics for the evaluation of stratospheric chemical processes. The file format is netCDF.double hyai(nhyi) ; double hyam(nhym) ; double hybi(nhyi) ; double hybm(nhym) ; double lat(lat) ; double lev(lev) ; double lon(lon) ; double time(time) ; float ps(time, lat, lon) ; float orography(time, lat, lon) ; float hno3_cond(time, lev, lat, lon) ; float sad_strat_NAT(time, lev, lat, lon) ; float sad_strat_ice(time, lev, lat, lon) ; float sad_strat_sulfate(time, lev, lat, lon) ; float temperature(time, lev, lat, lon) ; float u(time, lev, lat, lon) ; float v(time, lev, lat, lon) ; float Bry(time, lev, lat, lon) ; float CLO(time, lev, lat, lon) ; float CLONO2(time, lev, lat, lon) ; float CO(time, lev, lat, lon) ; float Cly(time, lev, lat, lon) ; float HBR(time, lev, lat, lon) ; float HCL(time, lev, lat, lon) ; float HNO3(time, lev, lat, lon) ; float NO2(time, lev, lat, lon) ; float NOy(time, lev, lat, lon) ; float O3(time, lev, lat, lon)
Plant comunities - Brenna (Poland)
The plant communities at the permanent plots were described. One hundred phytosociological relevés were made in the quadrates of 25m2 in size on the plot. The percentage cover of species in each layer of phytocenosis was estimated in the following scale: 1%, 5%, 10%, 20%,...,100%. This scale seems to be more precise than the more commonly used Braun-Blanquet’s scale.
In this study only vascular plant layers (tree stand, brushwood and herb) were analysed in detail. The moss layer was temporarily estimated including only dominant species. The list of species including contribution (frequency – percentage of squares with given species and range of percentage cover) of species in individual vegetation layers: A – tree, B –brushwood, C – herbs, D – mosses are presented
Pleiades Ortho Product dataset: pan-sharpened green band channel (TIFF format)
The original dataset is a Pleiades Ortho Product 1 and it includes four Pan-sharpened images (available at http://www.intelligence-airbusds.com/en/23-sample-imagery). The spatial and radiometric resolution is 0.5m and 8 bits-per-pixel, respectively. The image was acquired over the Naples metropolitan area (Italy) in 2013. Here, It is upload only the first band (green channel) and it is stored with the TIFF format
LTER_Jalovecka dolina temperature 2003-2017
Temperature (daily average, maximum and minimum) from site LTER_EU_SK_004 Jalovecka dolina for period 2003-2017. Data are from station in Mt. Salatín, 1875 m a.s.l