| 2136 | [=#u_profile '''uv_heights'''] |
| 2137 | }}} |
| 2138 | {{{#!td style="vertical-align:top" |
| 2139 | R(100) |
| 2140 | }}} |
| 2141 | {{{#!td style="vertical-align:top" |
| 2142 | 100 * 9999999.9 |
| 2143 | }}} |
| 2144 | {{{#!td |
| 2145 | Height levels in ascending order (in m), for which prescribed u,v-velocities are given (see [#u_profile u_profile], [#v_profile v_profile]. The first height level must always be zero, i.e. uv_heights(1) = 0.0. |
| 2146 | }}} |
| 2147 | |---------------- |
| 2148 | {{{#!td style="vertical-align:top" |
| 2149 | [=#u_profile '''v_profile'''] |
| 2150 | }}} |
| 2151 | {{{#!td style="vertical-align:top" |
| 2152 | R(100) |
| 2153 | }}} |
| 2154 | {{{#!td style="vertical-align:top" |
| 2155 | 100 * 9999999.9 |
| 2156 | }}} |
| 2157 | {{{#!td |
| 2158 | Values of v-velocity component to be used as initial profile (in m/s).\\\\ |
| 2159 | The corresponding height levels have to be provided by parameter [#uv_heights uv_heights]. The first velocity value always has to be given for the surface and must be zero, i.e. {{{v_profile(1)}}} = 0.0. Velocity values for the model grid levels are calculated from the given values by linear interpolation. If the uppermost value is given for a height smaller than the domain height, this value will be used for all grid points above this level. In runs with non-cyclic horizontal boundary conditions this profile will be used as fixed mean inflow profile. |
| 2160 | }}} |
| 2161 | |---------------- |
| 2162 | {{{#!td style="vertical-align:top" |
2167 | | }}} |
2168 | | |---------------- |
2169 | | {{{#!td style="vertical-align:top" |
2170 | | [=#u_profile '''u_profile'''] |
2171 | | }}} |
2172 | | {{{#!td style="vertical-align:top" |
2173 | | R(100) |
2174 | | }}} |
2175 | | {{{#!td style="vertical-align:top" |
2176 | | 100 * 9999999.9 |
2177 | | }}} |
2178 | | {{{#!td |
2179 | | Values of u-velocity component to be used as initial profile. The corresponding height levels have to be provided by parameter [#uv_heights uv_heights]. The first velocity value always has to be given for the surface and must be zero, i.e. {{{u_profile(1)}}} = 0.0. Velocity values for the model grid levels are calculated from the given values by linear interpolation. If the uppermost value is given for a height smaller than the domain height, this value will be used for all grid points above this level. In runs with non-cyclic horizontal boundary conditions this profile will be used as fixed mean inflow profile. |
2180 | | }}} |
2181 | | |---------------- |
2182 | | {{{#!td style="vertical-align:top" |
2183 | | [=#u_profile '''v_profile'''] |
2184 | | }}} |
2185 | | {{{#!td style="vertical-align:top" |
2186 | | R(100) |
2187 | | }}} |
2188 | | {{{#!td style="vertical-align:top" |
2189 | | 100 * 9999999.9 |
2190 | | }}} |
2191 | | {{{#!td |
2192 | | Values of v-velocity component to be used as initial profile. The corresponding height levels have to be provided by parameter [#uv_heights uv_heights]. The first velocity value always has to be given for the surface and must be zero, i.e. {{{v_profile(1)}}} = 0.0. Velocity values for the model grid levels are calculated from the given values by linear interpolation. If the uppermost value is given for a height smaller than the domain height, this value will be used for all grid points above this level. In runs with non-cyclic horizontal boundary conditions this profile will be used as fixed mean inflow profile. |
2193 | | }}} |
2194 | | |---------------- |
2195 | | {{{#!td style="vertical-align:top" |
2196 | | [=#u_profile '''uv_heights'''] |
2197 | | }}} |
2198 | | {{{#!td style="vertical-align:top" |
2199 | | R(100) |
2200 | | }}} |
2201 | | {{{#!td style="vertical-align:top" |
2202 | | 100 * 9999999.9 |
2203 | | }}} |
2204 | | {{{#!td |
2205 | | Height levels in ascending order, for which prescribed u,v-velocities are given (see [#u_profile u_profile], [#v_profile v_profile]. The first height level must always be zero, i.e. uv_heights(1) = 0.0. |