diff --git a/schainpy/model/graphics/jroplot_parameters.py b/schainpy/model/graphics/jroplot_parameters.py index 1effcca..d6288c8 100644 --- a/schainpy/model/graphics/jroplot_parameters.py +++ b/schainpy/model/graphics/jroplot_parameters.py @@ -390,6 +390,8 @@ class WeatherPlot(Plot): return data, meta def plot(self): + thisDatetime = datetime.datetime.utcfromtimestamp(self.data.times[-1]) + print("thisDatetime",thisDatetime) stoprange = float(33*1.5) rangestep = float(0.15) r = numpy.arange(0, stoprange, rangestep) @@ -402,7 +404,7 @@ class WeatherPlot(Plot): step = (360/(res*tmp_v.shape[0])) mode = 1 if mode==0: - print("self.ini",self.ini) + #print("self.ini",self.ini) val = numpy.mean(tmp_v[:,0]) self.len_azi = len(tmp_z) ones = numpy.ones([(360-tmp_v.shape[0]),tmp_v.shape[1]])*val @@ -419,7 +421,7 @@ class WeatherPlot(Plot): self.ini = self.ini+1 if mode==1: - print("self.ini",self.ini) + #print("self.ini",self.ini) if self.ini==0: res = 1 step = (360/(res*tmp_v.shape[0])) @@ -487,8 +489,8 @@ class WeatherPlot(Plot): if self.ini==step-1: start= tmp_z[0] end = tmp_z[-1] - print("start","end",start,end) - print(self.buffer_ini_azi[:80]) + #print("start","end",start,end) + ###print(self.buffer_ini_azi[:80]) self.ini = self.ini+1 else: @@ -497,8 +499,8 @@ class WeatherPlot(Plot): start= tmp_z[0] end = tmp_z[-1] - print("start","end",start,end) - print(self.buffer_ini_azi[:120]) + #print("start","end",start,end) + ###print(self.buffer_ini_azi[:120]) if step>=2: if self.flagutc_pedestal: @@ -144,14 +167,16 @@ list_adq = getfirstFilefromPath(path=dir_adq ,meta="D",ext=".hdf5") nro_file = nro_file #10 nro_key_perfil = nro_key_p -blocksPerFile = 100##### aqui se cambia dependiendo de los blqoues por achivo en adq +blocksPerFile = blocksPerFile#100##### aqui se cambia dependiendo de los blqoues por achivo en adq wr_path = "/home/developer/Downloads/HDF5_WR/" # Lectura de archivos de adquisicion para adicion de azimuth # factor de archivos #f_a_p = tiempo_file_1_adq/tiempo_file_1_ped=25/1 = 25 -tiempo_file_1_adq=25 -tiempo_file_1_ped=1 +tiempo_file_1_adq = tiempo_file_1_adq +tiempo_file_1_ped = tiempo_file_1_ped + f_a_p= int(tiempo_file_1_adq/tiempo_file_1_ped) + for thisFile in range(len(list_adq)): print("thisFileAdq",thisFile) angulo_adq = numpy.zeros(blocksPerFile)