1 | |
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2 | ****************************** -------------------------------------------- |
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3 | * PALM 6.0 Rev: 4379M * atmosphere - run without 1D - prerun |
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4 | ****************************** -------------------------------------------- |
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5 | |
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6 | Date: 2020-01-17 Run: urban_environment_salsa |
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7 | Time: 18:25:39 Run-No.: 00 |
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8 | Run on host: default |
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9 | Number of PEs: 4 Processor grid (x,y): ( 2, 2) calculated |
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10 | ------------------------------------------------------------------------------ |
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11 | |
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12 | Numerical Schemes: |
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13 | ----------------- |
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14 | |
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15 | --> Use the Moeng_Wyngaard turbulence closure (LES mode). |
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16 | --> Use the boussinesq approximation for the model equations. |
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17 | --> Solve perturbation pressure via FFT using fftw routines |
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18 | perturbation pressure is calculated at every Runge-Kutta step |
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19 | --> Momentum advection via Wicker-Skamarock-Scheme 5th order |
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20 | --> Scalar advection via Wicker-Skamarock-Scheme 5th order |
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21 | --> Loop optimization method: cache |
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22 | --> Time differencing scheme: runge-kutta-3 |
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23 | --> Additional prognostic equation for the specific humidity |
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24 | ------------------------------------------------------------------------------ |
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25 | |
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26 | |
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27 | Run time and time step information: |
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28 | ---------------------------------- |
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29 | |
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30 | Timestep: variable maximum value: 20.000 s CFL-factor: 0.90 |
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31 | Start time: 0.000 s |
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32 | End time: 1231.000 s |
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33 | Spinup time: 1200.000 s |
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34 | |
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35 | |
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36 | Computational grid and domain size: |
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37 | ---------------------------------- |
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38 | |
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39 | Grid length: dx = 2.000 m dy = 2.000 m |
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40 | dz(1) = 2.000 m |
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41 | |
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42 | Domain size: x = 40.000 m y = 40.000 m z(u) = 121.000 m |
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43 | |
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44 | |
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45 | |
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46 | Number of gridpoints (x,y,z): (0: 19, 0: 19, 0: 61) |
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47 | Subdomain size (x,y,z): ( 10, 10, 62) |
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48 | |
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49 | |
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50 | Characteristic levels of the geo. wind component ug: |
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51 | |
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52 | Height: 0.0 0.0 m |
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53 | ug: 1.00 0.00 m/s |
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54 | Gradient: ------ 0.00 1/100s |
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55 | Gridpoint: 0 0 |
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56 | |
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57 | Characteristic levels of the geo. wind component vg: |
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58 | |
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59 | Height: 0.0 0.0 m |
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60 | vg: 0.00 0.00 m/s |
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61 | Gradient: ------ 0.00 1/100s |
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62 | Gridpoint: 0 0 |
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63 | |
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64 | |
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65 | Topography information: |
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66 | ---------------------- |
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67 | |
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68 | Topography: read_from_file |
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69 | Topography grid definition convention: |
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70 | cell center (scalar grid points) |
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71 | |
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72 | |
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73 | |
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74 | Boundary conditions: |
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75 | ------------------- |
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76 | |
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77 | p uv pt |
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78 | |
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79 | B. bound.: p(0) = p(1) | uv(0) = -uv(1) | pt(0) = from soil model |
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80 | T. bound.: p(nzt+1) = 0 | uv(nzt+1) = ug(nzt+1), vg(nzt+1) | pt(nzt+1) = pt(nzt) + dpt/dz_ |
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81 | |
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82 | e |
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83 | |
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84 | B. bound.: e(0) = e(1) |
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85 | T. bound.: e(nzt+1) = e(nzt) = e(nzt-1) |
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86 | |
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87 | q |
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88 | |
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89 | B. bound.: q(0) = from soil model |
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90 | T. bound.: q(nzt+1) = q(nzt) + dq/dz |
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91 | |
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92 | Bottom surface fluxes are used in diffusion terms at k=1 |
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93 | |
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94 | |
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95 | Constant flux layer between bottom surface and first computational u,v-level: |
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96 | |
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97 | z_mo = 1.00 m z0 = 0.1000 m z0h = 0.10000 m kappa = 0.40 |
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98 | Rif value range: -20.00 <= rif <= 20.00 |
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99 | Predefined surface temperature |
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100 | Predefined surface humidity |
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101 | |
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102 | |
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103 | Lateral boundaries: |
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104 | left/right: cyclic |
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105 | north/south: cyclic |
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106 | |
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107 | |
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108 | Initial profiles: |
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109 | ---------------- |
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110 | |
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111 | Characteristic levels of the initial temperature profile: |
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112 | |
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113 | Height: 0.0 0.0 m |
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114 | Temperature: 277.15 277.12 K |
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115 | Gradient: ------ 0.00 K/100m |
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116 | Gridpoint: 0 0 |
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117 | |
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118 | Characteristic levels of the initial humidity profile: |
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119 | |
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120 | Height: 0.0 0.0 m |
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121 | Humidity: 0.1E-02 0.4E-02 kg/kg |
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122 | Gradient: -------- 0.0E+00 (kg/kg)/100m |
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123 | Gridpoint: 0 0 |
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124 | |
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125 | |
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126 | List output: |
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127 | ----------- |
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128 | |
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129 | 1D-Profiles: |
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130 | Output every 9999999.90 s |
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131 | Time averaged over 30.00 s |
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132 | Averaging input every 0.00 s |
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133 | |
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134 | |
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135 | Data output: |
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136 | ----------- |
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137 | |
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138 | Time averaged over 30.00 s |
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139 | Averaging input every 0.00 s |
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140 | |
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141 | 1D-Profiles: |
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142 | Output format: netCDF 64bit offset |
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143 | |
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144 | |
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145 | Profile: u, u*2, wu, w*u*, w"u", v, v*2, wv, w*v*, w"v", theta, |
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146 | |
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147 | : theta*2, wtheta, w*theta*, w"theta", q, q*2, e, e*, |
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148 | |
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149 | : km, l, t_soil, m_soil, rad_lw_in, rad_lw_out, salsa_Ntot, |
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150 | |
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151 | : salsa_N_UFP, salsa_LDSA, salsa_PM0.1, salsa_PM2.5, salsa_PM10 |
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152 | |
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153 | : |
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154 | Output every 30.00 s |
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155 | Time averaged over 30.00 s |
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156 | Averaging input every 0.00 s |
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157 | |
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158 | Time series: |
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159 | Output format: netCDF 64bit offset |
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160 | |
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161 | Output every 5.00 s |
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162 | |
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163 | ------------------------------------------------------------------------------ |
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164 | |
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165 | |
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166 | Physical quantities: |
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167 | ------------------- |
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168 | |
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169 | Geograph. latitude : latitude = 52.5 degr |
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170 | Geograph. longitude : longitude = 13.3 degr |
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171 | Rotation angle : rotation_angle = 0.0 degr |
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172 | Angular velocity : omega = 0.729E-04 rad/s |
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173 | Coriolis parameter : f = 0.000116 1/s |
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174 | f* = 0.000089 1/s |
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175 | |
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176 | Date and time at model start : 2019-03-06 10:00:00 +00 |
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177 | |
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178 | Gravity : g = 9.8 m/s**2 |
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179 | |
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180 | Reference state used in buoyancy terms: initial_profile |
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181 | |
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182 | |
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183 | Cloud physics quantities / methods: |
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184 | ---------------------------------- |
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185 | |
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186 | Humidity is considered, bu no condensation |
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187 | |
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188 | |
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189 | LES / Turbulence quantities: |
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190 | --------------------------- |
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191 | |
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192 | Mixing length is limited to 1.80 * z |
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193 | |
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194 | |
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195 | Actions during the simulation: |
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196 | ----------------------------- |
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197 | |
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198 | Disturbance impulse (u,v) every : ****** s |
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199 | Disturbance amplitude : 0.25 m/s |
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200 | Lower disturbance level : 5.00 m (GP 3) |
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201 | Upper disturbance level : 39.00 m (GP 20) |
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202 | Disturbances cease as soon as the disturbance energy exceeds 0.010 m**2/s**2 |
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203 | Random number generator used : random-parallel |
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204 | |
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205 | |
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206 | |
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207 | *** dynamic module disabled |
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208 | |
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209 | |
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210 | |
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211 | Land surface model information: |
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212 | ------------------------------ |
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213 | |
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214 | --> Soil bottom is closed (water content is conserved, default) |
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215 | --> Land surface type : read from file |
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216 | --> Soil porosity type : read from file |
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217 | |
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218 | Initial soil temperature and moisture profile: |
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219 | |
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220 | Height: -0.01 -0.02 -0.05 -0.10 -0.20 -0.40 -0.80 -2. m |
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221 | Temperature: 277.15 277.00 277.00 277.00 277.00 277.00 277.00 277. K |
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222 | Moisture: 0.30 0.30 0.30 0.30 0.30 0.30 0.30 0. m**3/m**3 |
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223 | Root fraction: 0.49 0.26 0.25 0.00 0.00 0.00 0.00 0. |
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224 | Grid point: 0 1 2 3 4 5 6 |
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225 | |
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226 | |
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227 | Vegetation canopy (drag) model: |
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228 | ------------------------------ |
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229 | |
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230 | Canopy mode: read_from_file |
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231 | Canopy height: 10.00m ( 5 grid points) |
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232 | Leaf drag coefficient: 0.30 |
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233 | |
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234 | Predefined constant heatflux at the top of the vegetation: 0.00 K m/s |
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235 | |
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236 | Characteristic levels of the leaf area density: |
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237 | |
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238 | Height: 0.0 0.0 m |
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239 | Leaf area density: 0.0000 0.00 m**2/m**3 |
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240 | Gradient: ------ 0.00 m**2/m**4 |
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241 | Gridpoint: 0 0 |
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242 | |
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243 | |
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244 | Radiation model information: |
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245 | ---------------------------- |
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246 | |
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247 | --> RRTMG scheme is used |
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248 | |
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249 | Albedo is set individually for each xy-location, according to given surface type. |
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250 | Timestep: dt_radiation = 60.00 s |
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251 | |
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252 | |
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253 | SALSA information: |
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254 | ------------------------------ |
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255 | |
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256 | Starts at: skip_time_do_salsa = 10.00 s |
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257 | |
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258 | Timestep: dt_salsa = 2.00 s |
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259 | |
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260 | Array shape (z,y,x,bins): |
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261 | aerosol_number: 60 19 19 8 |
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262 | |
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263 | aerosol_mass: 60 19 19 32 |
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264 | (advect_particle_water = T) |
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265 | salsa_gas: 60 19 19 5 |
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266 | (salsa_gases_from_chem = F) |
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267 | |
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268 | Aerosol dynamic processes included: |
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269 | |
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270 | dry deposition (on vegetation = T and on topography = T) |
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271 | |
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272 | Aerosol bin subrange limits (in metres): 3.00E-009 1.00E-008 2.50E-006 |
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273 | Number of size bins for each aerosol subrange: 1 7 |
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274 | Aerosol bin lower limits (in metres): 3.00E-009 1.00E-008 2.20E-008 4.84E-008 1.07E-007 2.35E-007 5.16E-007 1.14E-006 |
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275 | |
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276 | Bin geometric mean diameters (in metres): 5.48E-009 1.48E-008 3.26E-008 7.18E-008 1.58E-007 3.48E-007 7.66E-007 1.69E-006 |
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277 | |
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278 | Number of chemical components used: 3 |
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279 | Species: OC NO NH |
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280 | Initial relative contribution of each species to particle volume in: |
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281 | a-bins: 0.800 0.100 0.100 0.000 0.000 0.000 0.000 |
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282 | b-bins: 0.000 0.000 0.000 0.000 0.000 0.000 0.000 |
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283 | |
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284 | Number of gaseous tracers used: 5 |
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285 | Initial gas concentrations: |
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286 | H2SO4: 5.0000E+012 #/m**3 |
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287 | HNO3: 3.0000E+012 #/m**3 |
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288 | NH3: 6.0000E+012 #/m**3 |
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289 | OCNV: 1.0000E+012 #/m**3 |
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290 | OCSV: 1.0000E+012 #/m**3 |
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291 | |
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292 | Initialising concentrations: |
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293 | Aerosol size distribution: init_aerosol_type = 1 |
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294 | Gas concentrations: init_gases_type = 1 |
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295 | |
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296 | Size distribution read from a file. |
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297 | |
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298 | Emissions: salsa_emission_mode = read_from_file |
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299 | |
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300 | (currently all emissions are soluble!) |
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301 | ------------------------------------------------------------------------------ |
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302 | |
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303 | |
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304 | |
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305 | Spinup control output: |
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306 | --------------------------------- |
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307 | |
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308 | ITER. HH:MM:SS DT PT(z_MO) |
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309 | --------------------------------- |
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310 | 1 -00:18:00 120.00 288.14 |
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311 | 2 -00:16:00 120.00 288.17 |
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312 | 3 -00:14:00 120.00 288.21 |
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313 | 4 -00:12:00 120.00 288.24 |
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314 | 5 -00:10:00 120.00 288.27 |
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315 | 6 -00:08:00 120.00 288.30 |
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316 | 7 -00:06:00 120.00 288.33 |
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317 | 8 -00:04:00 120.00 288.35 |
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318 | 9 -00:02:00 120.00 288.38 |
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319 | 10 00:00:00 120.00 288.41 |
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320 | |
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321 | |
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322 | |
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323 | Run-control output: |
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324 | ------------------ |
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325 | |
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326 | RUN ITER. HH:MM:SS.SS DT(E) UMAX VMAX WMAX U* W* THETA* Z_I ENERG. DISTENERG DIVOLD DIVNEW UMAX(KJI) VMAX(KJI) WMAX(KJI) ADVECX ADVECY MGCYC |
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327 | --------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------- |
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328 | 0 0 00:00:00.00 0.7580A -2.3731D -1.1942D 0.4177 0.062 0.00 -0.154E+00 16. 0.137E+01 0.743E-02 0.234E-01 0.446E-02 60 17 18 19 0 14 20 18 0 0.000 0.000 0 |
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329 | 0 1 00:00:00.75 0.7580A -2.3732 -1.5382 0.7410 0.084 0.33 -0.798E+00 2. 0.137E+01 0.116E-01 0.268E-02 0.892E-03 60 18 15 16 15 0 20 18 0 0.000 0.000 0 |
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330 | 0 2 00:00:01.51 0.7580A -2.3733 -1.6029 0.8137 0.083 0.00 -0.809E+00 2. 0.137E+01 0.125E-01 0.953E-03 0.351E-03 60 17 14 16 15 0 20 17 0 0.000 0.000 0 |
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331 | 0 3 00:00:02.27 0.7580A -2.3733 -1.5856 0.8391 0.083 0.00 -0.824E+00 2. 0.137E+01 0.129E-01 0.818E-03 0.240E-03 60 17 13 17 15 0 20 17 0 0.000 0.000 0 |
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332 | 0 4 00:00:03.03 0.7580A -2.3734 -1.5378 0.8462 0.082 0.13 -0.827E+00 12. 0.137E+01 0.132E-01 0.778E-03 0.213E-03 60 17 13 17 15 0 20 17 0 0.000 0.000 0 |
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333 | 0 5 00:00:03.79 0.7580A -2.3735 -1.5014 0.8440 0.081 0.17 -0.830E+00 12. 0.137E+01 0.134E-01 0.769E-03 0.205E-03 60 17 12 17 14 0 20 17 0 0.000 0.000 0 |
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334 | 0 6 00:00:04.54 0.7580A -2.3736 -1.4550 0.8381 0.081 0.18 -0.831E+00 12. 0.137E+01 0.137E-01 0.763E-03 0.201E-03 60 17 11 17 14 0 20 17 0 0.000 0.000 0 |
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335 | 0 7 00:00:05.30 0.7580A -2.3736 -1.4340 0.8309 0.080 0.24 -0.832E+00 18. 0.137E+01 0.140E-01 0.759E-03 0.199E-03 60 16 10 11 14 0 20 17 0 0.000 0.000 0 |
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336 | 0 8 00:00:06.06 0.7580A -2.3737 -1.4045 0.8234 0.079 0.24 -0.831E+00 18. 0.137E+01 0.143E-01 0.759E-03 0.197E-03 60 16 10 11 14 0 20 17 0 0.000 0.000 0 |
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337 | 0 9 00:00:06.82 0.7580A -2.3738 -1.3772 0.8158 0.079 0.25 -0.831E+00 18. 0.137E+01 0.146E-01 0.759E-03 0.196E-03 60 16 9 11 14 0 20 17 0 0.000 0.000 0 |
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338 | 0 10 00:00:07.58 0.7580A -2.3739 -1.3551 0.8087 0.078 0.25 -0.831E+00 18. 0.137E+01 0.149E-01 0.760E-03 0.196E-03 60 15 8 11 14 0 20 17 0 0.000 0.000 0 |
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339 | 0 11 00:00:08.33 0.7580A -2.3739 -1.3370 0.8025 0.078 0.25 -0.831E+00 18. 0.137E+01 0.153E-01 0.762E-03 0.196E-03 60 15 7 11 14 0 20 17 0 0.000 0.000 0 |
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340 | 0 12 00:00:09.09 0.7580A -2.3740 -1.3232 0.7980 0.077 0.25 -0.831E+00 18. 0.136E+01 0.156E-01 0.767E-03 0.195E-03 60 14 6 16 14 0 20 17 0 0.000 0.000 0 |
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341 | 0 13 00:00:09.85 0.7580A -2.3741 -1.3182 0.7951 0.077 0.26 -0.832E+00 18. 0.136E+01 0.160E-01 0.771E-03 0.195E-03 60 14 6 16 14 0 20 17 0 0.000 0.000 0 |
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342 | 0 14 00:00:10.61 0.7580A -2.3742 -1.3096 0.7938 0.076 0.26 -0.832E+00 18. 0.136E+01 0.164E-01 0.776E-03 0.195E-03 60 14 5 16 14 0 20 17 0 0.000 0.000 0 |
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343 | 0 15 00:00:11.37 0.7580A -2.3743 -1.2976 0.7930 0.076 0.26 -0.832E+00 18. 0.136E+01 0.168E-01 0.780E-03 0.194E-03 60 13 4 16 14 0 20 17 0 0.000 0.000 0 |
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344 | 0 16 00:00:12.12 0.7580A -2.3743 -1.2822 0.8054 0.076 0.27 -0.831E+00 18. 0.136E+01 0.172E-01 0.783E-03 0.193E-03 60 13 3 16 14 0 11 14 18 0.000 0.000 0 |
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345 | 0 17 00:00:12.88 0.7580A -2.3744 -1.2633 0.8306 0.075 0.27 -0.830E+00 18. 0.136E+01 0.176E-01 0.785E-03 0.192E-03 60 12 2 16 14 0 11 14 18 0.000 0.000 0 |
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346 | 0 18 00:00:13.64 0.7580A -2.3745 -1.2576 0.8615 0.075 0.27 -0.829E+00 18. 0.136E+01 0.180E-01 0.789E-03 0.191E-03 60 12 1 11 14 0 10 14 18 0.000 0.000 0 |
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347 | 0 19 00:00:14.40 0.7580A -2.3746 -1.2533 0.8947 0.074 0.27 -0.829E+00 18. 0.136E+01 0.184E-01 0.792E-03 0.190E-03 60 12 1 11 14 0 10 14 18 0.000 0.000 0 |
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348 | 0 20 00:00:15.16 0.7580A -2.3746 -1.2500 0.9263 0.074 0.28 -0.828E+00 18. 0.136E+01 0.188E-01 0.795E-03 0.188E-03 60 12 0 11 14 0 10 14 18 0.000 0.000 0 |
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349 | 0 21 00:00:15.91 0.7580A -2.3747 -1.2475 0.9542 0.074 0.28 -0.828E+00 18. 0.136E+01 0.192E-01 0.799E-03 0.187E-03 60 11 19 11 14 0 10 14 18 0.000 0.000 0 |
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350 | 0 22 00:00:16.67 0.7580A -2.3748 -1.2456 0.9773 0.073 0.40 -0.828E+00 40. 0.136E+01 0.196E-01 0.802E-03 0.185E-03 60 11 18 11 14 0 10 14 18 0.000 0.000 0 |
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351 | 0 23 00:00:17.43 0.7580A -2.3749 -1.2442 0.9948 0.073 0.40 -0.827E+00 40. 0.136E+01 0.200E-01 0.805E-03 0.184E-03 60 10 17 11 14 0 10 14 18 0.000 0.000 0 |
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352 | 0 24 00:00:18.19 0.7580A -2.3749 -1.2433 1.0066 0.073 0.40 -0.827E+00 40. 0.136E+01 0.205E-01 0.808E-03 0.182E-03 60 10 16 11 14 0 10 14 18 0.000 0.000 0 |
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353 | 0 25 00:00:18.95 0.7580A -2.3750 -1.2428 1.0134 0.073 0.41 -0.826E+00 40. 0.136E+01 0.209E-01 0.811E-03 0.181E-03 60 10 16 11 14 0 10 14 18 0.000 0.000 0 |
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354 | 0 26 00:00:19.70 0.7580A -2.3751 -1.2425 1.0179 0.072 0.41 -0.826E+00 40. 0.136E+01 0.213E-01 0.815E-03 0.179E-03 60 10 15 11 14 0 11 14 18 0.000 0.000 0 |
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355 | 0 27 00:00:20.46 0.7580A -2.3752 -1.2423 1.0297 0.072 0.41 -0.826E+00 40. 0.136E+01 0.217E-01 0.819E-03 0.178E-03 60 9 14 11 14 0 11 14 18 0.000 0.000 0 |
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356 | 0 28 00:00:21.22 0.7580A -2.3752 -1.2421 1.0360 0.072 0.41 -0.825E+00 40. 0.136E+01 0.222E-01 0.822E-03 0.177E-03 60 9 13 11 14 0 11 14 18 0.000 0.000 0 |
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357 | 0 29 00:00:21.98 0.7580A -2.3753 -1.2420 1.0371 0.072 0.42 -0.825E+00 40. 0.136E+01 0.226E-01 0.826E-03 0.176E-03 60 9 12 11 14 0 11 14 18 0.000 0.000 0 |
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358 | 0 30 00:00:22.74 0.7580A -2.3754 -1.2419 1.0335 0.071 0.42 -0.825E+00 40. 0.136E+01 0.230E-01 0.830E-03 0.175E-03 60 8 11 11 14 0 11 14 18 0.000 0.000 0 |
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359 | 0 31 00:00:23.49 0.7580A -2.3755 -1.2419 1.0262 0.071 0.42 -0.825E+00 40. 0.136E+01 0.234E-01 0.834E-03 0.175E-03 60 8 10 11 14 0 11 14 18 0.000 0.000 0 |
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360 | 0 32 00:00:24.25 0.7580A -2.3755 -1.2420 1.0166 0.071 0.43 -0.825E+00 40. 0.136E+01 0.239E-01 0.838E-03 0.174E-03 60 8 10 11 14 0 11 14 18 0.000 0.000 0 |
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361 | 0 33 00:00:25.01 0.7580A -2.3756 -1.2419 1.0060 0.071 0.43 -0.825E+00 40. 0.136E+01 0.243E-01 0.843E-03 0.173E-03 60 7 9 11 14 0 11 14 18 0.000 0.000 0 |
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362 | 0 34 00:00:25.77 0.7580A -2.3757 -1.2416 0.9956 0.070 0.43 -0.825E+00 40. 0.136E+01 0.247E-01 0.847E-03 0.172E-03 60 7 8 11 14 0 10 14 18 0.000 0.000 0 |
---|
363 | 0 35 00:00:26.53 0.7580A -2.3758 -1.2407 1.0133 0.070 0.44 -0.825E+00 40. 0.136E+01 0.252E-01 0.851E-03 0.171E-03 60 7 7 11 14 0 11 14 17 0.000 0.000 0 |
---|
364 | 0 36 00:00:27.28 0.7580A -2.3758 -1.2392 1.0313 0.070 0.44 -0.826E+00 40. 0.136E+01 0.256E-01 0.854E-03 0.171E-03 60 6 6 11 14 0 11 14 17 0.000 0.000 0 |
---|
365 | 0 37 00:00:28.04 0.7580A -2.3759 -1.2367 1.0474 0.070 0.44 -0.826E+00 40. 0.136E+01 0.260E-01 0.858E-03 0.170E-03 60 6 5 11 14 0 11 14 17 0.000 0.000 0 |
---|
366 | 0 38 00:00:28.80 0.7580A -2.3760 -1.2330 1.0601 0.070 0.44 -0.826E+00 40. 0.136E+01 0.265E-01 0.861E-03 0.170E-03 60 6 5 11 14 0 11 14 17 0.000 0.000 0 |
---|
367 | 0 39 00:00:29.56 0.7580A -2.3761 -1.2280 1.0680 0.069 0.45 -0.826E+00 40. 0.136E+01 0.269E-01 0.865E-03 0.169E-03 60 5 3 11 14 0 11 14 17 0.000 0.000 0 |
---|
368 | 0 40 00:00:30.32 0.7580A -2.3762 -1.2216 1.0706 0.069 0.45 -0.826E+00 40. 0.136E+01 0.273E-01 0.869E-03 0.168E-03 60 5 3 11 14 0 11 14 17 0.000 0.000 0 |
---|
369 | 0 41 00:00:31.07 0.7580A -2.3762 -1.2215 1.0679 0.069 0.45 -0.826E+00 40. 0.136E+01 0.278E-01 0.873E-03 0.168E-03 60 5 2 11 13 0 11 14 17 0.000 0.000 0 |
---|