87 | | || [../d3par#data_output_format data_output_format] || R || output || C*10(10) || 100*' ' || Format of output data. || |
88 | | || [../inipar#] || || || || || || |
89 | | || [../inipar#] || || || || || || |
90 | | || [../inipar#] || || || || || || |
91 | | || [../inipar#] || || || || || || |
92 | | || [../inipar#] || || || || || || |
93 | | || [../inipar#] || || || || || || |
94 | | || [../inipar#] || || || || || || |
| 87 | || [../d3par#data_output_format data_output_format] || R || output || C*10(10) || 'netCDF' || Format of output data. || |
| 88 | || [../d3par#data_output_pr data_output_pr] || R || output || C*10(100) || 100*' ' || \ |
| 89 | || Quantities for which vertical profiles (horizontally averaged) are to be output. || |
| 90 | || [../d3par#data_output_pr_user data_output_pr_user] || U || output || C*10(200) || 200*' ' || \ |
| 91 | || User defined quantities for which horizontally averaged profile data is to be output. || |
| 92 | || [../d3par#data_output_2d_on_each_pe data_output_on_each_pe] || R || output || L || .T. || \ |
| 93 | || Output 2d cross section data by one or all processors. || |
| 94 | || [../parpar#density_ratio density_ratio] || P || particle || R(10) || 0.0, 9*9999999.9 || \ |
| 95 | || Ratio of the density of the fluid and the density of the particles. || |
| 96 | || [../inipar#dissipation_1d dissipation_id] || I || ini || C*20 || 'as_in_3d_model' || \ |
| 97 | || Calculation method for the energy dissipation term in the TKE equation of the 1d-model. || |
| 98 | || [../d3par#disturbance_amplitude disturbance_amplitude] || R || run steering || R || 0.25 || \ |
| 99 | || Maximum perturbation amplitude of the random perturbations imposed to the horizontal velocity field (in m/s). || |
| 100 | || [../d3par#disturbance_energy_limit disturbance_energy_limit] || R || run steering || R || 0.01 || \ |
| 101 | || Upper limit value of the perturbation energy of the velocity field used as a criterion for imposing random perturbations (in m^2^/s^2^). || |