Exemple #1
0
def modeldesc(request):
    '''
    Generates information to complete strat model description table
    '''
    #get real models
    models = getModels(pubonly=True)
    #generate information for ar5 table 1
    table1info = strattable(models)

    # set up my urls ...
    urls = {}
    urls['home'] = reverse('pimmsqn.explorer.views_strat.home', args=())
    urls['stratcsv'] = reverse('pimmsqn.explorer.views_strat.stratcsv', args=())
    urls['stratbib'] = reverse('pimmsqn.explorer.views_strat.stratbib', args=())

    return render_to_response('explorer/strat/modeldesc.html',
                              {'table1': table1info,
                               'urls': urls})
Exemple #2
0
def stratcsv(request):
    '''
    Generates csv representation of strat table
    '''
    # Create the HttpResponse object with the appropriate CSV header.
    response = HttpResponse(mimetype='text/csv')
    response['Content-Disposition'] = 'attachment; filename=stratcsv_table1.csv'

    #----- Table 1 (Models) -----
    #get real models
    models = getModels()
    #generate information for ar5 table 1
    tableinfo = strattable(models)

    writer = csv.writer(response)

    #write column headings
    writer.writerow(['Model ID',
                     'Vintage',
                     'Institution',
                     'Main references',
                     'Atmosphere component name',
                     'Atmosphere horizontal grid',
                     'Atmosphere grid number of levels',
                     'Atmosphere grid top',
                     'Atmosphere references',
                     'Source mechanisms',
                     'Propogation scheme',
                     'Dissipation scheme',
                     'Strat. het. chem. gas species',
                     'Strat. het. chem. aerosol',
                     'Levels above 200hPa',
                    ])

    #write out each row of information in turn
    for row in tableinfo:
        # first group references into a combined string
        maincits = []
        for cit in row.maincits:
            maincits.append(cit + '; ')
        maincits = "".join(maincits)

        if not row.atmosimplemented:
            oroggwsrcs = 'Not Implemented'
        else:
            srcs = []
            for src in row.oroggwsrcs:
                srcs.append(src + '; ')
            oroggwsrcs = "".join(srcs)

        if not row.atmosimplemented:
            atmoscits = 'Not Implemented'
        else:
            atmoscits = []
            for cit in row.atmoscits:
                atmoscits.append(cit + '; ')
            atmoscits = "".join(atmoscits)

        if not row.atmchemimplemented:
            strathetchemgas = 'Not Implemented'
        else:
            srcs = []
            for src in row.strathetchemgas:
                srcs.append(src + '; ')
            strathetchemgas = "".join(srcs)

        if not row.atmchemimplemented:
            strathetchemaer = 'Not Implemented'
        else:
            srcs = []
            for src in row.strathetchemaer:
                srcs.append(src + '; ')
            strathetchemaer = "".join(srcs)

        writer.writerow([row.abbrev,
                         str(row.yearReleased),
                         row.centre.name,
                         "".join(maincits),
                         row.atmosabbrev,
                         row.atmoshorgrid,
                         row.atmosnumlevels,
                         row.atmosgridtop,
                         "".join(atmoscits),
                         oroggwsrcs,
                         row.oroggwprop,
                         row.oroggwdiss,
                         strathetchemgas,
                         strathetchemaer,
                         row.levsabove200
                        ])

    return response