Final Report on California Regional Wind Energy Forecasting Project

Final Report on California Regional Wind Energy Forecasting Project PDF Author: H. S. Chin
Publisher:
ISBN:
Category :
Languages : en
Pages : 17

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Book Description
Wind power is the fastest growing renewable energy technology and electric power source (AWEA, 2004a). This renewable energy has demonstrated its readiness to become a more significant contributor to the electricity supply in the western U.S. and help ease the power shortage (AWEA, 2000). The practical exercise of this alternative energy supply also showed its function in stabilizing electricity prices and reducing the emissions of pollution and greenhouse gases from other natural gas-fired power plants. According to the U.S. Department of Energy (DOE), the world's winds could theoretically supply the equivalent of 5800 quadrillion BTUs of energy each year, which is 15 times current world energy demand (AWEA, 2004b). Archer and Jacobson (2005) also reported an estimation of the global wind energy potential with the magnitude near half of DOE's quote. Wind energy has been widely used in Europe; it currently supplies 20% and 6% of Denmark's and Germany's electric power, respectively, while less than 1% of U.S. electricity is generated from wind (AWEA, 2004a). The production of wind energy in California ({approx}1.2% of total power) is slightly higher than the national average (CEC & EPRI, 2003). With the recently enacted Renewable Portfolio Standards calling for 20% of renewables in California's power generation mix by 2010, the growth of wind energy would become an important resource on the electricity network. Based on recent wind energy research (Roulston et al., 2003), accurate weather forecasting has been recognized as an important factor to further improve the wind energy forecast for effective power management. To this end, UC-Davis (UCD) and LLNL proposed a joint effort through the use of UCD's wind tunnel facility and LLNL's real-time weather forecasting capability to develop an improved regional wind energy forecasting system. The current effort of UC-Davis is aimed at developing a database of wind turbine power curves as a function of wind speed and direction, using its wind tunnel facility at the windmill farm at the Altamont Pass. The main objective of LLNL's involvement is to provide UC-Davis with improved wind forecasts to drive the parameterization scheme of turbine power curves developed from the wind tunnel facility. Another objective of LLNL's effort is to support the windmill farm operation with real-time wind forecasts for the effective energy management. The forecast skill in capturing the situation to meet the cut-in and cutout speed of given turbines would help reduce the operation cost in low and strong wind scenarios, respectively. The main focus of this report is to evaluate the wind forecast errors of LLNL's three-dimensional real-time weather forecast model at the location with the complex terrain. The assessment of weather forecast accuracy would help quantify the source of wind energy forecast errors from the atmospheric forecast model and/or wind-tunnel module for further improvement in the wind energy forecasting system.

Final Report on California Regional Wind Energy Forecasting Project

Final Report on California Regional Wind Energy Forecasting Project PDF Author: H. S. Chin
Publisher:
ISBN:
Category :
Languages : en
Pages : 17

Get Book Here

Book Description
Wind power is the fastest growing renewable energy technology and electric power source (AWEA, 2004a). This renewable energy has demonstrated its readiness to become a more significant contributor to the electricity supply in the western U.S. and help ease the power shortage (AWEA, 2000). The practical exercise of this alternative energy supply also showed its function in stabilizing electricity prices and reducing the emissions of pollution and greenhouse gases from other natural gas-fired power plants. According to the U.S. Department of Energy (DOE), the world's winds could theoretically supply the equivalent of 5800 quadrillion BTUs of energy each year, which is 15 times current world energy demand (AWEA, 2004b). Archer and Jacobson (2005) also reported an estimation of the global wind energy potential with the magnitude near half of DOE's quote. Wind energy has been widely used in Europe; it currently supplies 20% and 6% of Denmark's and Germany's electric power, respectively, while less than 1% of U.S. electricity is generated from wind (AWEA, 2004a). The production of wind energy in California ({approx}1.2% of total power) is slightly higher than the national average (CEC & EPRI, 2003). With the recently enacted Renewable Portfolio Standards calling for 20% of renewables in California's power generation mix by 2010, the growth of wind energy would become an important resource on the electricity network. Based on recent wind energy research (Roulston et al., 2003), accurate weather forecasting has been recognized as an important factor to further improve the wind energy forecast for effective power management. To this end, UC-Davis (UCD) and LLNL proposed a joint effort through the use of UCD's wind tunnel facility and LLNL's real-time weather forecasting capability to develop an improved regional wind energy forecasting system. The current effort of UC-Davis is aimed at developing a database of wind turbine power curves as a function of wind speed and direction, using its wind tunnel facility at the windmill farm at the Altamont Pass. The main objective of LLNL's involvement is to provide UC-Davis with improved wind forecasts to drive the parameterization scheme of turbine power curves developed from the wind tunnel facility. Another objective of LLNL's effort is to support the windmill farm operation with real-time wind forecasts for the effective energy management. The forecast skill in capturing the situation to meet the cut-in and cutout speed of given turbines would help reduce the operation cost in low and strong wind scenarios, respectively. The main focus of this report is to evaluate the wind forecast errors of LLNL's three-dimensional real-time weather forecast model at the location with the complex terrain. The assessment of weather forecast accuracy would help quantify the source of wind energy forecast errors from the atmospheric forecast model and/or wind-tunnel module for further improvement in the wind energy forecasting system.

ปัญหาและอุปสรรคของเจ้าหน้าที่สาธารณสุขระดับตําบลที่ปฏิบัติงานในโครงการพัฒนาระบบบริการสาธารณสุขระดับตําบล (สอ.24 ชั่วโมง)

ปัญหาและอุปสรรคของเจ้าหน้าที่สาธารณสุขระดับตําบลที่ปฏิบัติงานในโครงการพัฒนาระบบบริการสาธารณสุขระดับตําบล (สอ.24 ชั่วโมง) PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description


California Renewable Energy Forecasting, Resource Data, and Mapping

California Renewable Energy Forecasting, Resource Data, and Mapping PDF Author: William Glassley
Publisher:
ISBN:
Category : Renewable energy sources
Languages : en
Pages : 142

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Book Description


Central California-Nevada Wind Energy Study

Central California-Nevada Wind Energy Study PDF Author: United States. Bureau of Reclamation. Mid-Pacific Regional Office
Publisher:
ISBN:
Category : Wind power
Languages : en
Pages : 88

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Book Description


Analysis and Forecast of Wind Ramps in California Wind Resource Areas

Analysis and Forecast of Wind Ramps in California Wind Resource Areas PDF Author: Phillip De Mello
Publisher:
ISBN:
Category : Wind forecasting
Languages : en
Pages : 118

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Improving Short-term Wind Power Forecasting Through Measurements and Modeling of the Tehachapi Wind Resource Area

Improving Short-term Wind Power Forecasting Through Measurements and Modeling of the Tehachapi Wind Resource Area PDF Author: Aubryn Cooperman
Publisher:
ISBN:
Category : Numerical weather forecasting
Languages : en
Pages : 86

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Book Description


A Wind Energy Assessment of the Southern California Desert

A Wind Energy Assessment of the Southern California Desert PDF Author: Edwin X. Berry
Publisher:
ISBN:
Category : Wind power
Languages : en
Pages : 156

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Book Description


Understanding and Reducing Barriers to Wind Energy Expansion in California

Understanding and Reducing Barriers to Wind Energy Expansion in California PDF Author: Dev Millstein
Publisher:
ISBN:
Category : Wind power
Languages : en
Pages : 108

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Book Description


Climate Change Impacts on Generation of Wind, Solar, and Hydropower in California

Climate Change Impacts on Generation of Wind, Solar, and Hydropower in California PDF Author: Phillip B. Duffy
Publisher:
ISBN:
Category : Climatic changes
Languages : en
Pages : 60

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Book Description


Renewable Energy Forecasting

Renewable Energy Forecasting PDF Author: Georges Kariniotakis
Publisher: Woodhead Publishing
ISBN: 0081005059
Category : Technology & Engineering
Languages : en
Pages : 388

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Book Description
Renewable Energy Forecasting: From Models to Applications provides an overview of the state-of-the-art of renewable energy forecasting technology and its applications. After an introduction to the principles of meteorology and renewable energy generation, groups of chapters address forecasting models, very short-term forecasting, forecasting of extremes, and longer term forecasting. The final part of the book focuses on important applications of forecasting for power system management and in energy markets. Due to shrinking fossil fuel reserves and concerns about climate change, renewable energy holds an increasing share of the energy mix. Solar, wind, wave, and hydro energy are dependent on highly variable weather conditions, so their increased penetration will lead to strong fluctuations in the power injected into the electricity grid, which needs to be managed. Reliable, high quality forecasts of renewable power generation are therefore essential for the smooth integration of large amounts of solar, wind, wave, and hydropower into the grid as well as for the profitability and effectiveness of such renewable energy projects. Offers comprehensive coverage of wind, solar, wave, and hydropower forecasting in one convenient volume Addresses a topic that is growing in importance, given the increasing penetration of renewable energy in many countries Reviews state-of-the-science techniques for renewable energy forecasting Contains chapters on operational applications