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Taylor diagram_TEST
#Metview Macro # **************************** LICENSE START *********************************** # # Copyright 2019 ECMWF. This software is distributed under the terms # of the Apache License version 2.0. In applying this license, ECMWF does not # waive the privileges and immunities granted to it by virtue of its status as # an Intergovernmental Organization or submit itself to any jurisdiction. # # ***************************** LICENSE END ************************************ # # define data values val_x = [0.2,0.4,0.6,0.7] val_y = [0.1,0.3,0.5,0.8] # define the Taylor diagram grid grid = mtaylor( taylor_primary_grid_increment : 0.1, taylor_secondary_grid : "on", taylor_secondary_grid_increment : 0.1, taylor_secondary_grid_line_colour : "RGB(0.28,0.58,0.11)", taylor_secondary_grid_line_style : "dash", taylor_secondary_label_colour : "RGB(0.33,0.58,0.16)" ) # define the view view = cartesianview( map_projection : "taylor", page_frame : "off", subpage_frame : "off", taylor_grid : grid ) # define the input visualiser vis = input_visualiser( input_x_values : val_x, input_y_values : val_y ) # define symbol plotting symbol = msymb( symbol_type : "marker", symbol_marker_index : 15, symbol_colour : "red", symbol_height : 0.5, symbol_outline : "on", symbol_outline_thickness : 2 ) # define the output plot file setoutput(pdf_output(output_name : 'taylor')) # generate the plot plot(view, vis, symbol)
Taylor diagram_TEST
# **************************** LICENSE START *********************************** # # Copyright 2019 ECMWF. This software is distributed under the terms # of the Apache License version 2.0. In applying this license, ECMWF does not # waive the privileges and immunities granted to it by virtue of its status as # an Intergovernmental Organization or submit itself to any jurisdiction. # # ***************************** LICENSE END ************************************ # import metview as mv # define data values val_x = [0.2,0.4,0.6,0.7] val_y = [0.1,0.3,0.5,0.8] # define the Taylor diagram grid grid = mv.mtaylor( taylor_primary_grid_increment = 0.1, taylor_secondary_grid = "on", taylor_secondary_grid_increment = 0.1, taylor_secondary_grid_line_colour = "RGB(0.28,0.58,0.11)", taylor_secondary_grid_line_style = "dash", taylor_secondary_label_colour = "RGB(0.33,0.58,0.16)" ) # define the view view = mv.cartesianview( map_projection = "taylor", page_frame = "off", subpage_frame = "off", taylor_grid = grid ) # define the input visualiser vis = mv.input_visualiser( input_x_values = val_x, input_y_values = val_y ) # define symbol plotting symbol = mv.msymb( symbol_type = "marker", symbol_marker_index = 15, symbol_colour = "red", symbol_height = 0.5, symbol_outline = "on", symbol_outline_thickness = 2 ) # define the output plot file mv.setoutput(mv.pdf_output(output_name = 'taylor')) # generate the plot mv.plot(view, vis, symbol)