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California offshore wind energy potential

机译:加州海上风能潜力

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摘要

This study combines multi-year mesoscale modeling results, validated using offshore buoys with high-resolution bathymetry to create a wind energy resource assessment for offshore California (CA). The siting of an offshore wind farm is limited by water depth, with shallow water being generally preferable economically. Acceptable depths for offshore wind farms are divided into three categories: ≤20 m depth for monopile turbine foundations, ≤50 m depth for multi-leg turbine foundations, and ≤200 m depth for deep water floating turbines. The CA coast was further divided into three logical areas for analysis: Northern, Central, and Southern CA. A mesoscale meteorological model was then used at high horizontal resolution (5 and 1.67 km) to calculate annual 80 m wind speeds (turbine hub height) for each area, based on the average of the seasonal months January, April, July, and October of 2005/2006 and the entirety of 2007 (12 months). A 5 MW offshore wind turbine was used to create a preliminary resource assessment for offshore CA. Each geographical region was then characterized by its coastal transmission access, water depth, wind turbine development potential, and average 80 m wind speed. Initial estimates show that 1.4-2.3 GW, 4.4-8.3 GW, and 52.8-64.9 GW of deliverable power could be harnessed from offshore CA using monopile, multi-leg, and floating turbine foundations, respectively. A single proposed wind farm near Cape Mendocino could deliver an average 800 MW of gross renewable power and reduce CA's current carbon emitting electricity generation 4% on an energy basis. Unlike most of California's land based wind farms which peak at night, the offshore winds near Cape Mendocino are consistently fast throughout the day and night during all four seasons.
机译:这项研究结合了多年的中尺度建模结果,并使用海上浮标和高分辨率测深法对其进行了验证,从而创建了加利福尼亚海上(CA)的风能资源评估。海上风电场的选址受到水深的限制,浅水在经济上通常是可取的。海上风电场的可接受深度分为三类:单桩涡轮机基础深度≤20 m,多腿涡轮机基础深度≤50 m,深水浮动涡轮机深度≤200 m。 CA海岸进一步分为三个逻辑区域进行分析:CA北部,中部和南部。然后使用高分辨率的中尺度气象模型(5和1.67 km),根据1月,4月,7月和10月的季节月份平均值,计算每个区域的年80 m风速(涡轮轮毂高度)。 2005/2006年和整个2007年(12个月)。使用5兆瓦的海上风力涡轮机为海上CA创建初步资源评估。然后,每个地理区域的特征在于其沿海传输通道,水深,风力涡轮机的发展潜力以及平均80 m风速。初步估计显示,可以分别使用单桩,多支腿和浮动式涡轮机基础设施从海上CA利用1.4-2.3 GW,4.4-8.3 GW和52.8-64.9 GW的可交付电力。门多西诺角附近的一个拟议的风电场可以提供平均800兆瓦的可再生能源发电总量,并以能源为基础将CA目前的碳排放发电量减少4%。与加利福尼亚大多数陆上风力发电厂在夜间达到峰值不同,在整个四个季节中,门多西诺角附近的海上风电场在白天和黑夜都始终保持快速运转。

著录项

  • 来源
    《Renewable energy》 |2010年第6期|1244-1254|共11页
  • 作者单位

    Department of Civil and Environmental Engineering, Stanford University, Stanford, CA, USA Atmosphere/Energy Program, Jerry Yang & Akiko Yamasaki Environment & Energy Building - 4020, Stanford, CA 94305-4121, USA;

    Department of Geological and Environmental Sciences, California State University Chico, Chico, CA, USA;

    Department of Civil and Environmental Engineering, Stanford University, Stanford, CA, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    offshore wind energy; california; resource assessment; MM5; bathymetry; mesoscale modeling;

    机译:离岸风能;加利福尼亚资源评估;MM5;测深仪中尺度建模;
  • 入库时间 2022-08-18 00:26:47

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