| | 295 | }}} |
| | 296 | |---------------- |
| | 297 | {{{#!td style="vertical-align:top" |
| | 298 | [=#passive_scalar '''passive_scalar'''] |
| | 299 | }}} |
| | 300 | {{{#!td style="vertical-align:top" |
| | 301 | L |
| | 302 | }}} |
| | 303 | {{{#!td style="vertical-align:top" |
| | 304 | .F. |
| | 305 | }}} |
| | 306 | {{{#!td |
| | 307 | Parameter to switch on the prognostic equation for a passive scalar.\\\\ |
| | 308 | The initial vertical profile of ''s'' can be set via parameters [#s_surface s_surface], [#s_vertical_gradient s_vertical_gradient] and [#s_vertical_gradient_level s_vertical_gradient_level]. Boundary conditions can be set via [#s_surface_initial_change s_surface_initial_change] and [#surface_scalarflux surface_scalarflux].\\\\ |
| | 309 | '''Note:'''\\ |
| | 310 | With '''passive_scalar''' switched on, the simultaneous use of humidity (see [#humidity humidity]) is impossible. |
| | 311 | }}} |
| | 312 | |---------------- |
| | 313 | {{{#!td style="vertical-align:top" |
| | 314 | [=#<insert_parameter_name> '''<insert_parameter_name>'''] |
| | 315 | }}} |
| | 316 | {{{#!td style="vertical-align:top" |
| | 317 | <insert type> |
| | 318 | }}} |
| | 319 | {{{#!td style="vertical-align:top" |
| | 320 | <insert value> |
| | 321 | }}} |
| | 322 | {{{#!td |
| | 323 | <insert explanation> |
| | 324 | }}} |
| | 325 | |---------------- |
| | 326 | {{{#!td style="vertical-align:top" |
| | 327 | [=#<insert_parameter_name> '''<insert_parameter_name>'''] |
| | 328 | }}} |
| | 329 | {{{#!td style="vertical-align:top" |
| | 330 | <insert type> |
| | 331 | }}} |
| | 332 | {{{#!td style="vertical-align:top" |
| | 333 | <insert value> |
| | 334 | }}} |
| | 335 | {{{#!td |
| | 336 | <insert explanation> |
| 1658 | | [=#<insert_parameter_name> '''<insert_parameter_name>'''] |
| 1659 | | }}} |
| 1660 | | {{{#!td style="vertical-align:top" |
| 1661 | | <insert type> |
| 1662 | | }}} |
| 1663 | | {{{#!td style="vertical-align:top" |
| 1664 | | <insert value> |
| 1665 | | }}} |
| 1666 | | {{{#!td |
| 1667 | | <insert explanation> |
| | 1700 | [=#pch_index '''pch_index'''] |
| | 1701 | }}} |
| | 1702 | {{{#!td style="vertical-align:top" |
| | 1703 | I |
| | 1704 | }}} |
| | 1705 | {{{#!td style="vertical-align:top" |
| | 1706 | 0 |
| | 1707 | }}} |
| | 1708 | {{{#!td |
| | 1709 | Grid point index (scalar) of the upper boundary of the plant canopy layer.\\\\ |
| | 1710 | Above '''pch_index''' the arrays of leaf area density and [#drag_coeffient drag_coeffient] are automatically set to zero in case of [#plant_canopy plant_canopy] = ''.T.''. Up to '''pch_index''' a leaf area density profile can be prescribed by using the parameters [#lad_surface lad_surface], [#lad_vertical_gradient lad_vertical_gradient] and [#lad_vertical_gradient_level lad_vertical_gradient_level]. |