Qualitative measure of interdependencies Assigned value of interdependencies 1 Very strong 5 2 Strong 4 3 Medium 3 4 Weak 2 5 Very weak 1 N.
The goal is to provide the operational weather prediction centers [e. This program also offers an opportunity for visitors to introduce new techniques into the DTC community codes that would be of particular interest to the research community.
The DTC offers two types of visitor projects: Successful applicants for the first type of project will be offered up to two months of salary compensation, and travel and per diem.
The two months can be distributed over several Performance improvement techniques in ccpp and during a one-year period. Access to DTC computational resources will enable significant portions of the visitor's project to be conducted from their home institution.
Federal employees are not eligible for financial support through this program. The objectives of the DTC are to: The fundamental purpose of the DTC is to provide a coordinating mechanism that acts as a bridge between research and operations thereby facilitating the activities of both communities in pursuit of their own and common objectives.
This framework is based on software systems that are a shared resource with distributed development.
Ongoing development of these systems is maintained under version control with mutually agreed upon software management plans. The DTC currently works with the following software systems: The current focus of the GMTB is establishing a Common Community Physics Package CCPPwhich will serve as a framework for efficiently transitioning the development of next generation physics parameterizations into operations and a Physics Testbed, which will serve as a framework for testing new physics developments.
In addition to working with these individual software systems, the DTC is involved in efforts to develop and maintain scripting and workflows for a number of forecast systems: Through its visitor program, the DTC supports the addition of new capabilities to these community codes, as well as tests of the various components of these community codes.
These topics are general and are intended as suggestions for the type of projects we will consider. Previous DTC visitors are welcome to submit proposals for new projects or projects that build on past work. All proposals will be subjected to the same review process see description below.
The submitted material should include the following: Project description including a title, computational resource requirements processing, disk space and storagelocation of planned visit s and duration sand expected outcomes up to 5 pages Curriculum Vitae pages As noted above, it is expected that the visitor will spend up to two months resident up to twelve months for graduate student project at the DTC, an operational center or a combination of time at the DTC and an operational center.
The total duration of the project can continue for one year. It is expected that the visitor will be able to continue their work from his or her own institution using DTC computational resources.
Proposals in response to this announcement should be submitted through an online application form at: Specific suggested topics not in order of priority that will receive special consideration include: Topics of particular interest are: In general a-fprojects can focus on either the deterministic single storm or multistorm basin-scale configuration, as well as the ensemble configuration for particular applications.
Projects directed at the following topics are of particular interest: Within this theme, the following areas are of particular interest: The external review will be conducted by the DTC Science Advisory Board SABwhich consists of scientists from government labs, operational centers, and academic institutions.
Regional Ensembles Projects directed at advancing the design and use of ensembles for forecasting and data assimilation are of interest. The DTC's greatest interest is with regard to regional high-resolution ensembles e.
Methods to estimate and represent both initial condition and model-related uncertainties. Use of stochastic approaches in ensemble design.
Statistical post-processing techniques for improvement of reliability of probabilistic forecast products. New diagnostic tools for evaluation of ensemble performance. MMET will include benchmark data and verification for a two-week period May 7 to May 21, for both deterministic and ensemble operational forecasts.
Projects focusing on the addition or enhancement of physics packages used in operational models RAP, HRRR that lead to improvement in the operational physics suites. Of particular interest are scale-aware physics suites whose performance is not dependent on model resolution.
Improvements to physics suitable for high resolution grid spacing 2 kmincluding air-sea transfer physics in high wind conditions, representation of convection, planetary boundary layer, cloud physics, and radiation, as well as interactions among physical parameterizations are of particular interest.
A robust and feasible initialization methodology to obtain dynamic and thermodynamic balance for tropical cyclones TCs remains a great challenge for TC numerical prediction systems.
New methods or improvements in assimilation of data from satellites including all-sky radiance assimilationairborne tail Doppler radars, Stepped Frequency Microwave Radiometers SFMRflight-level winds and dropsonde observations.Pouria Ahmadi; Performance improvement of combined cycle power plant by reduction of exergy destruction for Shiraz combined cycle power plant.
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