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, 180 SURF(:,i2) = [surf_erod; surf_0
, k_erod+k_dilat+1)),w2
, 192 dc(:,1) = interp1(xcc,cc(:,1),d)
, 2) = interp1(xcc,cc(:,2),d)
, 3) = interp1(xcc,cc(:,3),d)
, XIV Scripts Matlab pour le suivi des coulées de lave du Piton de la Fournaise 195 for i5 = 1 : size(SURF,2) 196 hold on
, ? hold off
, ? hold off
, ))+2.*std(SURF(:)) mean(SURF ? (:))+2.*std
, ))-2.*std(SURF(:)) mean(SURF ? (:))-2.*std(SURF(:))],'--r')
, ylim = get(gca
, 209 hold on
, ? hold off
, 210 hold on
, ? hold off
, +2.*std(SURF(:)) mean(SURF(:))+2.*std
, ))-2.*std(SURF(:)) mean(SURF(:))-2
, 213 ylabel('Frequecy')
, Surface Area of outlines %f10 \n
, Mean %f10 \n',mean(SURF(:))), vol.218
, Mediane %f10 \n',median
, STD %f10 \n',std
, VALIDATION OF AN INTEGRATED SATELLITE-DATA-DRIVEN RESPONSE TO AN EFFUSIVE CRISIS: THE APRIL-MAY 2018, vol.62, 2019.
, Massimiliano Favalli, vol.5
,
, ) Department of Geology and Planetary Science
, Istituto Nazionale di Geofisica e Vulcanologia (INGV)
, France 3 /s (Table 2) with an updated channel width and eruption temperature (Table 1), CNRS
, Time-series of ASTER TIR images with active flows apparent as elongate thermal anomalies (higher pixel-integrated temperatures give lighter tones: white are the hottest pixels, and black are the coldest). Note how the highest intensities in the thermal anomaly move down flow with time
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