[2759] | 1 | |
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| 2 | WRF-NMM Model Version 3 (April 2008) |
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| 3 | |
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| 4 | ---------------------------- |
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| 5 | WRF-NMM PUBLIC DOMAIN NOTICE |
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| 6 | ---------------------------- |
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| 7 | |
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| 8 | WRF-NMM was developed at National Centers for |
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| 9 | Environmental Prediction (NCEP), which is part of |
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| 10 | NOAA's National Weather Service. As a government |
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| 11 | entity, NCEP makes no proprietary claims, either |
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| 12 | statutory or otherwise, to this version and release of |
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| 13 | WRF-NMM and consider WRF-NMM to be in the public |
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| 14 | domain for use by any person or entity for any purpose |
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| 15 | without any fee or charge. NCEP requests that any WRF |
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| 16 | user include this notice on any partial or full copies |
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| 17 | of WRF-NMM. WRF-NMM is provided on an "AS IS" basis |
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| 18 | and any warranties, either express or implied, |
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| 19 | including but not limited to implied warranties of |
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| 20 | non-infringement, originality, merchantability and |
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| 21 | fitness for a particular purpose, are disclaimed. In |
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| 22 | no event shall NOAA, NWS or NCEP be liable for any |
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| 23 | damages, whatsoever, whether direct, indirect, |
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| 24 | consequential or special, that arise out of or in |
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| 25 | connection with the access, use or performance of |
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| 26 | WRF-NMM, including infringement actions. |
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| 27 | |
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| 28 | ================================================ |
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| 29 | |
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| 30 | V3 Release Notes: |
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| 31 | ----------------- |
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| 32 | |
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| 33 | This is the main directory for the WRF Version 3 source code release. |
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| 34 | |
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| 35 | - For directions on compiling WRF for NMM, see below or the WRF-NMM Users' Web page (http://www.dtcenter.org/wrf-nmm/users/) |
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| 36 | - Read the README.namelist file in the run/ directory (or on the WRF-NMM Users' page), |
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| 37 | and make changes carefully. |
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| 38 | |
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| 39 | For questions, send mail to wrfhelp@ucar.edu |
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| 40 | |
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| 41 | ====================================== |
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| 42 | |
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| 43 | The ./compile script at the top level allows for easy selection of |
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| 44 | NMM and ARW cores of WRF at compile time. |
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| 45 | |
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| 46 | - Specify your WRF-NMM option by setting the appropriate environment variable: |
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| 47 | |
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| 48 | setenv WRF_NMM_CORE 1 |
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| 49 | setenv WRF_NMM_NEST 1 (if nesting capability is desired) |
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| 50 | |
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| 51 | - The Registry files for NMM and ARW are not integrated |
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| 52 | yet. There are separate versions: |
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| 53 | |
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| 54 | Registry/Registry.NMM <-- for NMM |
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| 55 | Registry/Registry.NMM_NEST <-- for NMM with nesting |
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| 56 | Registry/Registry.EM <-- for ARW (formerly known as Eulerian Mass) |
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| 57 | |
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| 58 | |
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| 59 | How to configure, compile and run? |
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| 60 | ---------------------------------- |
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| 61 | |
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| 62 | - In WRFV3 directory, type: |
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| 63 | |
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| 64 | configure |
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| 65 | |
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| 66 | this will create a configure.wrf file that has appropriate compile |
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| 67 | options for the supported computers. Edit your configure.wrf file as needed. |
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| 68 | |
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| 69 | Note: WRF requires netCDF library. If your netCDF library is installed in |
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| 70 | some odd directory, set environment variable NETCDF before you type |
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| 71 | 'configure'. For example: |
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| 72 | |
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| 73 | setenv NETCDF /usr/local/lib32/r4i4 |
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| 74 | |
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| 75 | - Type: |
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| 76 | compile nmm_real |
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| 77 | |
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| 78 | - If sucessful, this command will create nmm_real.exe and wrf.exe |
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| 79 | in directory main/, and the appropriate executables will be linked into |
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| 80 | the run directories under test/nmm_real, or run/. |
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| 81 | |
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| 82 | - cd to the appropriate test or run directory to run "nmm_real.exe" and "wrf.exe". |
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| 83 | |
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| 84 | - Place files from WPS (met_nmm.*, geo_nmm_nest*) |
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| 85 | in the appropriate directory, type |
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| 86 | |
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| 87 | real_nmm.exe |
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| 88 | |
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| 89 | to produce wrfbdy_d01 and wrfinput_d01. Then type |
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| 90 | |
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| 91 | wrf.exe |
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| 92 | |
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| 93 | to run. |
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| 94 | |
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| 95 | - If you use mpich, type |
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| 96 | |
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| 97 | mpirun -np number-of-processors wrf.exe |
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| 98 | |
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| 99 | ============================================================================= |
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| 100 | |
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| 101 | What is in WRF-NMM V3.0? |
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| 102 | |
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| 103 | * Dynamics: |
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| 104 | |
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| 105 | - The WRF-NMM model is a fully compressible, non-hydrostatic model with a |
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| 106 | hydrostatic option. |
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| 107 | |
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| 108 | - Supports One-way and two-way static nesting. |
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| 109 | |
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| 110 | - The terrain following hybrid pressure sigma vertical coordinate is used. |
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| 111 | |
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| 112 | - The grid staggering is the Arakawa E-grid. |
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| 113 | |
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| 114 | - The same time step is used for all terms. |
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| 115 | |
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| 116 | - Time stepping: |
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| 117 | - Horizontally propagating fast-waves: Forward-backward scheme |
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| 118 | - Veryically propagating sound waves: Implicit scheme |
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| 119 | |
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| 120 | - Advection (time): |
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| 121 | T,U,V: |
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| 122 | - Horizontal: The Adams-Bashforth scheme |
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| 123 | - Vertical: The Crank-Nicholson scheme |
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| 124 | TKE, water species: Forward, flux-corrected (called every two timesteps). |
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| 125 | |
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| 126 | - Advection (space): |
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| 127 | T,U,V: |
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| 128 | - Horizontal: Energy and enstrophy conserving, |
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| 129 | quadratic conservative,second order |
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| 130 | |
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| 131 | - Vertical: Quadratic conservative,second order TKE, |
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| 132 | |
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| 133 | - Water species: Upstream, flux-corrected, positive definite, conservative |
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| 134 | |
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| 135 | - Horizontal diffusion: Forward, second order "Smagorinsky-type" |
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| 136 | |
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| 137 | - Vertical Diffusion: |
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| 138 | See "Free atmosphere turbulence above surface layer" section |
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| 139 | in "Physics" section given in below. |
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| 140 | |
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| 141 | * Physics: |
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| 142 | |
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| 143 | - Explicit Microphysics (WRF Single Moment 5 and 6 class / |
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| 144 | Ferrier (Used operationally at NCEP.)/ Thompson [a new version in 2.2]) |
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| 145 | |
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| 146 | - Cumulus parameterization (Kain-Fritsch with shallow convection / |
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| 147 | Betts-Miller-Janjic (Used operationally at NCEP.)/ Grell-Devenyi ensemble |
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| 148 | / Simplified Arakawa-Schubert) |
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| 149 | |
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| 150 | - Free atmosphere turbulence above surface layer: Mellor-Yamada-Janjic (Used operationally at NCEP.) |
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| 151 | |
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| 152 | - Planetary boundary layer: YSU / Mellor-Yamada-Janjic (Used operationally at NCEP.) |
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| 153 | / GFS |
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| 154 | |
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| 155 | - Surface layer: Similarity theory scheme with viscous sublayers |
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| 156 | over both solid surfaces and water points (Janjic - Used operatinally at NCEP). |
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| 157 | / GFS / YSU |
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| 158 | |
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| 159 | - Slab soil model: Noah land-surface model (4-level - Used operationally at NCEP) / |
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| 160 | RUC LSM (6-level) |
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| 161 | |
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| 162 | - Radiation: |
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| 163 | - Longwave radiation: GFDL Scheme (Fels-Schwarzkopf) (Used operationally at NCEP.) / RRTM |
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| 164 | - Shortwave radiation: GFDL-scheme (Lacis-Hansen) (Used operationally at NCEP.) / Dudhia |
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| 165 | |
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| 166 | - Gravity wave drag: none |
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| 167 | |
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| 168 | |
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| 169 | * WRF Software: |
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| 170 | |
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| 171 | - Hierarchical software architecture that insulates scientific code |
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| 172 | (Model Layer) from computer architecture (Driver Layer) |
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| 173 | - Multi-level parallelism supporting shared-memory (OpenMP), distributed-memory (MPI), |
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| 174 | and hybrid share/distributed modes of execution |
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| 175 | - Serial compilation can be used for single-domain runs but not for runs with |
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| 176 | nesting at this time. |
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| 177 | - Active data registry: defines and manages model state fields, I/O, |
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| 178 | configuration, and numerous other aspects of WRF through a single file, |
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| 179 | called the Registry |
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| 180 | - Enhanced I/O options: |
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| 181 | NetCDF and Parallel HDF5 formats |
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| 182 | Five auxiliary history output streams separately controllable through the namelist |
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| 183 | Output file names and time-stamps specifiable through namelist |
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| 184 | |
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| 185 | - Testing: Various regression tests are performed on HP/Compaq systems at |
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| 186 | NCAR/MMM whenever a change is introduced into WRF cores. |
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| 187 | |
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| 188 | - Efficient execution on a range of computing platforms: |
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| 189 | IBM SP systems, (e.g. NCAR "bluevista","blueice" and NCEP's "blue", Power4-based system) |
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| 190 | HP/Compaq Alpha/OSF workstation, SMP, and MPP systems (e.g. Pittsburgh |
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| 191 | Supercomputing Center TCS) |
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| 192 | SGI Origin and Altix |
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| 193 | Linux/Intel |
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| 194 | IA64 MPP (HP Superdome, SGI Altix, NCSA Teragrid systems) |
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| 195 | IA64 SMP |
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| 196 | Pentium 3/4 SMP and SMP clusters (NOAA/FSL iJet system) |
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| 197 | PGI and Intel compilers supported |
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| 198 | Alpha Linux (NOAA/FSL Jet system) |
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| 199 | Sun Solaris (single threaded and SMP) |
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| 200 | Cray X1 |
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| 201 | HP-UX |
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| 202 | Other ports under development: |
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| 203 | NEC SX/6 |
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| 204 | Fujitsu VPP 5000 |
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| 205 | - RSL_LITE: communication layer, scalable to very |
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| 206 | large domains |
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| 207 | - ESMF Time Management, including exact arithmetic for fractional |
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| 208 | time steps (no drift); model start, stop, run length and I/O frequencies are |
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| 209 | now specified as times and time intervals |
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| 210 | - Improved documentation, both on-line (web based browsing tools) and in-line |
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| 211 | |
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| 212 | -------------------------------------------------------------------------- |
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| 213 | |
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