9 research outputs found
Design of a next-generation regional weather research and forecast model," Towards Teracomputing, World Scientific, River Edge,
NOAA Forecast Systems Laboratory, Boulder, Colorado 80303 U.S.A The Weather Research and Forecast (WRF) project is a multi-institutional effort to develop an advanced mesoscale forecast and data assimilation system that is accurate, efficient, and scalable across a range of scales and over a host of computer platforms. The first release, WRF 1.0, was November 30, 2000, with operational deployment targeted for the 2004-05 time frame. This paper provides an overview of the project and current status of the WRF development effort in the areas of numerics and physics, software and data architecture, and single-source parallelism and performance portability
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Development of a next-generation regional weather research and forecast model.
The Weather Research and Forecast (WRF) project is a multi-institutional effort to develop an advanced mesoscale forecast and data assimilation system that is accurate, efficient, and scalable across a range of scales and over a host of computer platforms. The first release, WRF 1.0, was November 30, 2000, with operational deployment targeted for the 2004-05 time frame. This paper provides an overview of the project and current status of the WRF development effort in the areas of numerics and physics, software and data architecture, and single-source parallelism and performance portability
Conducting Polymer Nanomaterials and Their Applications
A paradigm shift takes place in the fabrication of conducting polymers from
bulky features with microsize to ultrafine features with nanometer range. Novel conducting
polymer nanomaterials require the potential to control synthetic approaches
of conducting polymer on molecular and atomic levels. In this article, the synthetic
methodology of conducting polymer has been briefly considered with chemical oxidation
polymerization and electrochemical polymerization. The recent achievements in the
fabrication of conducting polymer nanomaterials have been extensively reviewed with
respect to soft template method, hard template method and template-free method. It
also details the morphological spectrum of conducting polymer nanomaterials such as
nanoparticle, core-shell nanomaterial, hollow nanosphere, nanofiber/nanorod, nanotube,
thin film and nanopattern and nanocomposite. In addition, their applications are discussed
under nanometer-sized dimension.This work has been financially supported by the Brain Korea 21 program
of the Korean Ministry of Education and the Hyperstructured Organic Materials
Research Center supported by Korea Science and Engineering Foundation