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## Example script that downloads data from Google Earth Engine using the python API
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## MODIS MOD09GA data is processed to extract the MOD09 cloud flag and calculate monthly cloud frequency
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## import some libraries
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import ee
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from ee import mapclient
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import ee.mapclient
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import datetime
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import wget
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import os
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from subprocess import call
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#import logging
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#logging.basicConfig()
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## set working directory (where files will be downloaded)
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os.chdir('/mnt/data2/projects/cloud/mod09')
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MY_SERVICE_ACCOUNT = '511722844190@developer.gserviceaccount.com' # replace with your service account
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MY_PRIVATE_KEY_FILE = '/home/adamw/EarthEngine-privatekey.p12' # replace with you private key file path
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#MY_SERVICE_ACCOUNT = '205878743334-4mrtqgu0n5rnsv1vanrvv6atqk6vu8am@developer.gserviceaccount.com'
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#MY_PRIVATE_KEY_FILE = '/home/adamw/EarthEngine_Jeremy-privatekey.p12'
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ee.Initialize(ee.ServiceAccountCredentials(MY_SERVICE_ACCOUNT, MY_PRIVATE_KEY_FILE))
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## set map center to speed up viewing
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#ee.mapclient.centerMap(-121.767, 46.852, 11)
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#///////////////////////////////////
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#// Function to extract cloud flags
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def getmod09(img): return(img.select(['state_1km']).expression("((b(0)/1024)%2)>0.5"));
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# added the >0.5 because some values are coming out >1. Need to look into this further as they should be bounded 0-1...
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#// Date ranges
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yearstart=2000
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yearstop=2012
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monthstart=1
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monthstop=12
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#////////////////////////////////////////////////////
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# Loop through months and get monthly % missing data
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## set a year-month if you don't want to run the loop (for testing)
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#year=2001
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#month=2
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#r=1
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## define the regions to be processed
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regions=['[[-180, -60], [-180, 0], [0, 0], [0, -60]]', # SW
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'[[-180, 0], [-180, 90], [0, 90], [0, 0]]', # NW
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'[[0, 0], [0, 90], [180, 90], [180, 0]]', # NE
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'[[0, 0], [0, -60], [180, -60], [180, 0]]'] # SE
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## name the regions (these names will be used in the file names
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## must be same length as regions list above
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rnames=['SW','NW','NE','SE']
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## Loop over regions, years, months to generate monthly timeseries
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for r in range(0,len(regions)): # loop over regions
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for year in range(yearstart,yearstop+1): # loop over years
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for month in range(monthstart,monthstop+1): # loop over months
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print('Processing '+rnames[r]+"_"+str(year)+'_'+str(month))
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# output filename
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filename='mod09_'+rnames[r]+"_"+str(year)+"_"+str(month)
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unzippedfilename='mod09_'+rnames[r]+"_"+str(year)+"_"+str(month)+".MOD09_"+str(year)+"_"+str(month)+".tif"
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# Check if file already exists and continue if so...
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if(os.path.exists(unzippedfilename)):
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print("File exists:"+filename)
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continue
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# MOD09 internal cloud flag for this year-month
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# to filter by a date range: filterDate(datetime.datetime(yearstart,monthstart,1),datetime.datetime(yearstop,monthstop,31))
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mod09 = ee.ImageCollection("MOD09GA").filter(ee.Filter.calendarRange(year,year,"year")).filter(ee.Filter.calendarRange(month,month,"month")).map(getmod09);
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# myd09 = ee.ImageCollection("MYD09GA").filter(ee.Filter.calendarRange(year,year,"year")).filter(ee.Filter.calendarRange(month,month,"month")).map(getmod09);
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# calculate mean cloudiness (%), rename band, multiply by 100, and convert to integer
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mod09a=mod09.mean().select([0], ['MOD09_'+str(year)+'_'+str(month)]).multiply(ee.Image(100)).byte();
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# myd09a=myd09.mean().select([0], ['MYD09_'+str(year)+'_'+str(month)]).multiply(ee.Image(100)).byte();
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```
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# Next few lines for testing only
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# print info to confirm there is data
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mod09a.getInfo()
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myd09a.getInfo()
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# add to plot to confirm it's working
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ee.mapclient.addToMap(mod09a, {'range': '0,100'}, 'MOD09')
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ee.mapclient.addToMap(myd09a, {'range': '0,100'}, 'MOD09')
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```
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# build the URL and name the object (so that when it's unzipped we know what it is!)
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path =mod09a.getDownloadUrl({
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'name': filename, # name the file (otherwise it will be a uninterpretable hash)
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'scale': 1000, # resolution in meters
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'crs': 'EPSG:4326', # MODIS sinusoidal
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'region': regions[r] # region defined above
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});
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# Sometimes EE will serve a corrupt zipped file with no error
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# to check this, use a while loop that keeps going till there is an unzippable file.
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# This has the potential for an infinite loop...
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while(not(os.path.exists(filename+".zip"))):
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# download with wget
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print("Downloading "+filename)
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wget.download(path)
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# try to unzip it
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print("Unzipping "+filename)
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zipstatus=call("unzip "+filename+".zip",shell=True)
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# if file doesn't exists or it didn't unzip, remove it and try again
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if(zipstatus==9):
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print("ERROR: "+filename+" unzip-able")
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os.remove(filename)
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print 'Finished'
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