The Experts below are selected from a list of 228 Experts worldwide ranked by ideXlab platform

David I Berry - One of the best experts on this subject based on the ideXlab platform.

Georges Kariniotakis - One of the best experts on this subject based on the ideXlab platform.

  • The Anemos Project : Next Generation forecasting of Wind power
    2004
    Co-Authors: Georges Kariniotakis, Jens Tambke, Didier Mayer, Julio Usaola, Ignacio Marti, Henrik Madsen, Torben Skov Nielsen, Heinemann Detlev, H.p. Waldl, Félix Dierich
    Abstract:

    This paper presents the objectives and the research work carried out in the frame of the ANEMOS project on short-term wind power forecasting. The aim of the project is to develop accurate models that substantially outperform current state-of-the-art methods, for onshore and offshore wind power forecasting, exploiting both statistical and physical modeling approaches. The project focus on prediction horizons up to 48 hours ahead and investigates predictability of wind for higher horizons up to 7 days ahead useful i.e. for maintenance scheduling. Emphasis is given on the integration of high-resolution meteorological forecasts. For the offshore case, Marine Meteorology is considered as well as information by satellite-radar images. Specific modules are also developed for on-line uncertainty and prediction risk estimation. An integrated software platform, 'ANEMOS', is developed to host the various models. This system will be installed by several end-users for on-line operation at onshore and offshore wind farms for prediction at a local, regional and national scale. The applications include different terrain types and wind climates, on- and offshore cases, and interconnected or island grids. The on-line operation by the utilities will allow validation of the models and an analysis of the value of wind prediction for a competitive integration of wind energy in the developing liberalized electricity markets.

  • Towards Next Generation Short-term forcasting of Wind power - The Anemos Project
    2004
    Co-Authors: Georges Kariniotakis, Thierry Ranchin, Anemos Team
    Abstract:

    This paper presents the objectives and the research work carried out in the frame of the ANEMOS project on short-term wind power forecasting. The aim of the project is to develop accurate models that substantially outperform current state-of-the-art methods, for onshore and offshore wind power forecasting, exploiting both statistical and physical modeling approaches. The project focus on prediction horizons up to 48 hours ahead and investigates predictability of wind for higher horizons up to 7 days ahead useful i.e. for maintenance scheduling. Emphasis is given on the integration of high-resolution meteorological forecasts. For the offshore case, Marine Meteorology is considered as well as information by satellite-radar images. Specific modules are also developed for on-line uncertainty and prediction risk estimation. An integrated software platform, 'ANEMOS', is developed to host the various models. This system will be installed by several end-users for on-line operation at onshore and offshore wind farms for prediction at a local, regional and national scale. The applications include different terrain types and wind climates, on- and offshore cases, and interconnected or island grids. The on-line operation by the utilities will allow validation of the models and an analysis of the value of wind prediction for a competitive integration of wind energy in the developing liberalized electricity markets in the EU.

  • anemos development of a next generation wind power forecasting system for the large scale integration of onshore offshore wind farms
    Ewec 2003, 2003
    Co-Authors: Georges Kariniotakis, Didier Mayer, J Moussafir, R Chevallazperrier, Julio Usaola, Ismael Sanchez, Ignacio Marti, Henrik Madsen, Torben Skov Nielsen, C Lac
    Abstract:

    This paper presents the objectives and the research work carried out in the frame of the ANEMOS project on short-term wind power forecasting. The aim of the project is to develop accurate models that substantially outperform current state-of-the-art methods, for onshore and offshore wind power forecasting, exploiting both statistical and physical modeling approaches. The project focus on prediction horizons up to 48 hours ahead and investigates predictability of wind for higher horizons up to 7 days ahead useful i.e. for maintenance scheduling. Emphasis is given on the integration of highresolution meteorological forecasts. For the offshore case, Marine Meteorology is considered as well as information by satellite-radar images. An integrated software platform, ‘ANEMOS', is developed to host the various models. This system will be installed by several utilities for on-line operation at onshore and offshore wind farms for prediction at a local, regional and national scale. The applications include different terrain types and wind climates, on- and offshore cases, and interconnected or island grids. The on-line operation by the utilities will allow validation of the models and an analysis of the value of wind prediction for a competitive integration of wind energy in the developing liberalized electricity markets in the EU.

  • Anemos : development of a next generation wind power forecasting system for the large-scale integration of onshore & offshore wind farms
    2003
    Co-Authors: Georges Kariniotakis, Didier Mayer, J Moussafir, Julio Usaola, Ismael Sanchez, Ignacio Marti, Henrik Madsen, Torben Skov Nielsen, R. Chevallaz-perrier, P. Frayssinet
    Abstract:

    This paper presents the objectives and the research work carried out in the frame of the ANEMOS project on short-term wind power forecasting. The aim of the project is to develop accurate models that substantially outperform current state-of-the-art methods, for onshore and offshore wind power forecasting, exploiting both statistical and physical modeling approaches. The project focus on prediction horizons up to 48 hours ahead and investigates predictability of wind for higher horizons up to 7 days ahead useful i.e. for maintenance scheduling. Emphasis is given on the integration of highresolution meteorological forecasts. For the offshore case, Marine Meteorology is considered as well as information by satellite-radar images. An integrated software platform, ‘ANEMOS', is developed to host the various models. This system will be installed by several utilities for on-line operation at onshore and offshore wind farms for prediction at a local, regional and national scale. The applications include different terrain types and wind climates, on- and offshore cases, and interconnected or island grids. The on-line operation by the utilities will allow validation of the models and an analysis of the value of wind prediction for a competitive integration of wind energy in the developing liberalized electricity markets in the EU.

B. Liu - One of the best experts on this subject based on the ideXlab platform.

  • WEATHER FORECASTING | Marine Meteorology
    Encyclopedia of Atmospheric Sciences, 2015
    Co-Authors: L Xie, B. Liu
    Abstract:

    Marine Meteorology is a subfield of Meteorology, which deals with the weather and climate as well as the associated ocean conditions in Marine, island, and coastal environments. Marine meteorologists collect and analyze weather and oceanographic data, make Marine weather forecasts, and provide Marine meteorological services to support Marine and coastal activities, including but not limited to shipping, fishing, tourism, offshore oil drilling and mining operations, oil spill control, offshore wind and tidal energy harvesting, search and rescue at sea, and naval operations. The interactions between the atmosphere and the ocean create a unique dynamical framework for the fundamental principles of Marine Meteorology, and the need for employing air–sea coupled models for Marine weather prediction.

  • weather forecasting Marine Meteorology
    Reference Module in Earth Systems and Environmental Sciences#R##N#Encyclopedia of Atmospheric Sciences (Second Edition), 2015
    Co-Authors: L Xie, B. Liu
    Abstract:

    Marine Meteorology is a subfield of Meteorology, which deals with the weather and climate as well as the associated ocean conditions in Marine, island, and coastal environments. Marine meteorologists collect and analyze weather and oceanographic data, make Marine weather forecasts, and provide Marine meteorological services to support Marine and coastal activities, including but not limited to shipping, fishing, tourism, offshore oil drilling and mining operations, oil spill control, offshore wind and tidal energy harvesting, search and rescue at sea, and naval operations. The interactions between the atmosphere and the ocean create a unique dynamical framework for the fundamental principles of Marine Meteorology, and the need for employing air–sea coupled models for Marine weather prediction.

Neville Smith - One of the best experts on this subject based on the ideXlab platform.

  • Wave and sea level monitoring and prediction in the service module of the Global Ocean Observing System (GOOS)
    Journal of Marine Systems, 1999
    Co-Authors: G. J. Komen, Neville Smith
    Abstract:

    Abstract The need for a Global Ocean Observing System Global (GOOS) is now widely appreciated. Parts of GOOS are currently being implemented already. In this paper, written on the request of the joint Scientific and Technical Committee of GOOS, we present some of the scientific issues that need to be addressed for the further development of the Ocean and Marine Meteorology Service module of GOOS. This module is concerned with monitoring and prediction of sea level (both tsunamis and storm surges) and wind driven waves (wind–sea and swell), among other things. For each of these we discuss the current state-of-the-art, indicate what observations are needed and make suggestions for future modelling development.

Benoit Cushman-roisin - One of the best experts on this subject based on the ideXlab platform.

  • Introduction to special section: Recent Advances in Oceanography and Marine Meteorology of the Adriatic Sea
    Journal of Geophysical Research, 2007
    Co-Authors: Craig M. Lee, Mirko Orlić, Pierre-marie Poulain, Benoit Cushman-roisin
    Abstract:

    [1] Owing to its strategic location, rich fisheries and natural resources, the Adriatic Sea possesses a long history of scientific exploration (Cushman-Roisin et al. [2001] provides a comprehensive review). The two volumes of this Adriatic Sea special section contribute to this rich literature by collecting results from a recent period of intense research activity. During 2002–2003, the combined efforts of several large, multi-disciplinary international programs brought an exceptional array of observational and numerical resources to bear on contemporary questions in Adriatic research. Supported by the U.S. Office of Naval Research, NATO, the Croatian Ministry of Science and Technology and the Italian Ministry of the Environment and Ministry of Universities and Research, scientists from several countries pursued interrelated collaborative research programs. Broad-ranging studies included investigations of circulation at kilometer to basin scales, physical and biological response to bora wind forcing, sediment transport and mucilage formation. Extensive numerical efforts contributed to the success of many of these programs, providing interpretation and understanding and, in some cases, extensions into short-term forecasting.