1 # WRF-CMAQ coupled model
2 rconfig integer wrf_cmaq_option namelist,wrf_cmaq 1 0
3 rconfig integer wrf_cmaq_freq namelist,wrf_cmaq 1 1
4 rconfig integer met_file_tstep namelist,wrf_cmaq 1 10000
6 rconfig logical direct_sw_feedback namelist,wrf_cmaq 1 .false.
7 rconfig logical feedback_restart namelist,wrf_cmaq 1 .false.
9 #state real mass_ws_i ikj twoway_feedback_data 1 - r "mass_ws_i" "Water soluble i mode" "ug/m**3"
10 #state real mass_ws_j ikj twoway_feedback_data 1 - r "mass_ws_j" "Water soluble j mode" "ug/m**3"
11 #state real mass_ws_k ikj twoway_feedback_data 1 - r "mass_ws_k" "Water soluble k mode" "ug/m**3"
12 #state real mass_in_i ikj twoway_feedback_data 1 - r "mass_in_i" "Water insoluble i mode" "ug/m**3"
13 #state real mass_in_j ikj twoway_feedback_data 1 - r "mass_in_j" "Water insoluble j mode" "ug/m**3"
14 #state real mass_in_k ikj twoway_feedback_data 1 - r "mass_in_k" "Water insoluble k mode" "ug/m**3"
15 #state real mass_ec_i ikj twoway_feedback_data 1 - r "mass_ec_i" "Elemental carbon i mode" "ug/m**3"
16 #state real mass_ec_j ikj twoway_feedback_data 1 - r "mass_ec_j" "Elemental carbon j mode" "ug/m**3"
17 #state real mass_ec_k ikj twoway_feedback_data 1 - r "mass_ec_k" "Elemental carbon k mode" "ug/m**3"
18 #state real mass_ss_i ikj twoway_feedback_data 1 - r "mass_ss_i" "Seasalt i mode" "ug/m**3"
19 #state real mass_ss_j ikj twoway_feedback_data 1 - r "mass_ss_j" "Seasalt j mode" "ug/m**3"
20 #state real mass_ss_k ikj twoway_feedback_data 1 - r "mass_ss_k" "Seasalt k mode" "ug/m**3"
21 #state real mass_h2o_i ikj twoway_feedback_data 1 - r "mass_h2o_i" "water i mode" "ug/m**3"
22 #state real mass_h2o_j ikj twoway_feedback_data 1 - r "mass_h2o_j" "water j mode" "ug/m**3"
23 #state real mass_h2o_k ikj twoway_feedback_data 1 - r "mass_h2o_k" "water k mode" "ug/m**3"
24 #state real dgn_i ikj twoway_feedback_data 1 - r "dgn_i" "diameter i mode" "m"
25 #state real dgn_j ikj twoway_feedback_data 1 - r "dgn_j" "diameter j mode" "m"
26 #state real dgn_k ikj twoway_feedback_data 1 - r "dgn_k" "diameter k mode" "m"
27 #state real sig_i ikj twoway_feedback_data 1 - r "sig_i" "standard deviations i mode" ""
28 #state real sig_j ikj twoway_feedback_data 1 - r "sig_j" "standard deviations j mode" ""
29 #state real sig_k ikj twoway_feedback_data 1 - r "sig_k" "standard deviations k mode" ""
31 #state real prev_rainnc ij twoway_feedback_data 1 - r "prev_rainnc" "previous accumlated rainnc" "mm"
32 #state real prev_rainc ij twoway_feedback_data 1 - r "prev_rainc" "previous accumlated rainc" "mm"
34 #state real ozone ikj twoway_feedback_data 1 - r "OZONE" "ozone value" ""
36 #state real sw_gtauxar_01 ikj misc 1 - hr "SW_GTAUXAR_01" "SW Optical depth of lamda = 0.388 um" ""
37 #state real sw_gtauxar_02 ikj misc 1 - hr "SW_GTAUXAR_02" "SW Optical depth of lamda = 0.533 um" ""
38 #state real sw_gtauxar_03 ikj misc 1 - hr "SW_GTAUXAR_03" "SW Optical depth of lamda = 0.702 um" ""
39 #state real sw_gtauxar_04 ikj misc 1 - hr "SW_GTAUXAR_04" "SW Optical depth of lamda = 1.010 um" ""
40 #state real sw_gtauxar_05 ikj misc 1 - hr "SW_GTAUXAR_05" "SW Optical depth of lamda = 1.271 um" ""
41 #state real sw_ttauxar_01 ij misc 1 - hr "SW_TTAUXAR_01" "Optical depth sum of SW_GTAUXAR_01" ""
42 #state real sw_ttauxar_02 ij misc 1 - hr "SW_TTAUXAR_02" "Optical depth sum of SW_GTAUXAR_02" ""
43 #state real sw_ttauxar_03 ij misc 1 - hr "SW_TTAUXAR_03" "Optical depth sum of SW_GTAUXAR_03" ""
44 #state real sw_ttauxar_04 ij misc 1 - hr "SW_TTAUXAR_04" "Optical depth sum of SW_GTAUXAR_04" ""
45 #state real sw_ttauxar_05 ij misc 1 - hr "SW_TTAUXAR_05" "Optical depth sum of SW_GTAUXAR_05" ""
46 #state real sw_asy_fac_01 ikj misc 1 - hr "SW_ASY_FAC_01" "Corresponding Asymmetry Factor of SW_GTAUXAR_01" ""
47 #state real sw_asy_fac_02 ikj misc 1 - hr "SW_ASY_FAC_02" "Corresponding Asymmetry Factor of SW_GTAUXAR_02" ""
48 #state real sw_asy_fac_03 ikj misc 1 - hr "SW_ASY_FAC_03" "Corresponding Asymmetry Factor of SW_GTAUXAR_03" ""
49 #state real sw_asy_fac_04 ikj misc 1 - hr "SW_ASY_FAC_04" "Corresponding Asymmetry Factor of SW_GTAUXAR_04" ""
50 #state real sw_asy_fac_05 ikj misc 1 - hr "SW_ASY_FAC_05" "Corresponding Asymmetry Factor of SW_GTAUXAR_05" ""
51 #state real sw_ssa_01 ikj misc 1 - hr "SW_SSA_01" "Corresponding Single scattering Albedo of SW_GTAUXAR_01" ""
52 #state real sw_ssa_02 ikj misc 1 - hr "SW_SSA_02" "Corresponding Single scattering Albedo of SW_GTAUXAR_02" ""
53 #state real sw_ssa_03 ikj misc 1 - hr "SW_SSA_03" "Corresponding Single scattering Albedo of SW_GTAUXAR_03" ""
54 #state real sw_ssa_04 ikj misc 1 - hr "SW_SSA_04" "Corresponding Single scattering Albedo of SW_GTAUXAR_04" ""
55 #state real sw_ssa_05 ikj misc 1 - hr "SW_SSA_05" "Corresponding Single scattering Albedo of SW_GTAUXAR_05" ""
57 #state real sw_zbbcddir ij misc 1 - hr "SW_ZBBCDDIR" "Clear sky downward direct shortwave flux" "W m-2"
58 #state real sw_dirdflux ij misc 1 - hr "SW_DIRDFLUX" "Direct downward shortwave surface flux" "W m-2"
59 #state real sw_difdflux ij misc 1 - hr "SW_DIFDFLUX" "Diffuse downward shortwave surface flux" "W m-2"