首页> 外文学位 >Multi-criteria assessment of wave and tidal power along the Atlantic coast of the southeastern USA.
【24h】

Multi-criteria assessment of wave and tidal power along the Atlantic coast of the southeastern USA.

机译:美国东南部大西洋沿岸海浪和潮汐能的多标准评估。

获取原文
获取原文并翻译 | 示例

摘要

The effect of tidal stream power conversion on the tidal regime is studied at the estuary scale. A multi-criteria method for tidal power conversion schemes to select favorable locations and to rank them according to their suitability is developed and applied to the Georgia coast.;Wave power potential is studied in an area bounded by latitudes 27°N and 38°N and longitudes 82°W and 72°W (i.e. North Carolina, South Carolina, Georgia, and northern Florida). The available data from National Data Buoy Center wave stations in the study area are examined. Temporal trends of the wave heights, wave periods and the wave power are analyzed for seasonal variations with a time scale of weeks. The time series from the wave stations are downsampled with a 15-day moving average filter with near 50% overlapping to study the seasonal trends. Power calculated from hourly significant wave heights and average wave periods is compared to power calculated using spectral wave energy density. It is found that a factor of 0.61 needs to be applied to the wave power calculated from hourly significant wave heights and average periods in order get the same results with the power calculated from spectral wave density. The mean power within 50 km of the shore is determined to be ∼9 kW/m, whereas higher power (∼15 kW/m) is available further offshore beyond the 3500 m contour line.;The tidal stream power potential along the coast of the state of Georgia is evaluated based on the available data and numerical modeling of the currents. This region has low (0.5 m/s) to moderate (0.8 m/s) average tidal currents along most of the coast, but with the possibility of relatively very strong (>1.0 m/s) local currents within its complex network of tidal rivers and inlets between barrier islands. The limited number of tidal current prediction locations is not sufficient to resolve the temporal and spatial changes in the current speeds and patterns. Therefore, the currents are modeled with the Regional Ocean Modeling System (ROMS) to determine the locations with high tidal stream power potential. The modeling results show that the areas with the highest tidal power density on the Georgia coast are a part of the Intercoastal Waterway between the Altamaha and Doboy Sounds and a part of the Canoochee River. The tidal power densities based on one-month simulations at these locations are computed to be on the level of 1600 W/m2, 1400 W/m2 and 1100 W/m2, respectively. The Savannah River is also found to have areas with high tidal power density in the region. One-year time series are generated by harmonic analysis of model results, and used to calculate the annual average power and energy at selected locations in the Savannah, Ogeechee and Altamaha Rivers. Annual average power at these locations are found to be respectively, 1.3 MW, 3.0 MW and 1.9 MW, which corresponds to annual energy of 112 GWh/year, 258 GWh/year, and 162 GWh/year. The distribution of tidal current magnitudes and tidal power densities in a year is provided with histograms for each location.;The effect of power extraction on estuarine hydrodynamics is simulated by implementing an additional retarding force in the governing momentum equations in ROMS. Two different power extraction schemes are simulated in the Ogeechee River. The first scheme involves power extraction across the entire cross-section of the river, and causes considerable changes in the original currents, water levels and original undisturbed tidal power. The second extraction scheme, where power is extracted from a part of the cross-section is found to have substantially lower impact on the original flow than the first scheme, but extracts higher power from the flow despite having a smaller area to capture power. This is attributed to the recovery in the flow momentum on the unconstructed part of the river cross-section in the second scheme.;A multi-criteria assessment methodology that accounts for the physical, environmental and socioeconomic constraints is proposed to select the most suitable locations for tidal stream power converters. The proposed method is applied to the Georgia coast to find and rank the best locations for power conversion. A demonstrative ranking procedure shows that Medway River has one of the best locations for tidal power conversion on the coast of Georgia.
机译:在河口范围内研究了潮汐流功率转换对潮汐状态的影响。开发了一种多准则的潮汐能转换方案方法,以选择合适的位置并根据其适合性进行排序,并将其应用于乔治亚州海岸。;在纬度为27°N和38°N的区域内研究波功率潜力经度分别为82°W和72°W(即北卡罗来纳州,南卡罗来纳州,乔治亚州和北佛罗里达州)。检查了研究区域内国家数据浮标中心波浪站的可用数据。分析了波浪高度,波浪周期和波浪功率的时间趋势,以了解几周时间范围内的季节性变化。利用15天的移动平均滤波器对波浪站的时间序列进行下采样,该滤波器的重叠率接近50%,以研究季节趋势。将根据每小时重要波高和平均波周期计算出的功率与使用频谱波能量密度计算出的功率进行比较。已经发现,需要将系数0.61应用于从每小时重要波高和平均周期计算出的波功率,以便获得与根据频谱波密度计算出的功率相同的结果。距海岸50公里以内的平均功率确定为〜9 kW / m,而在3500 m等高线以外的远海地区可获得更高的功率(〜15 kW / m)。佐治亚州的评估是根据现有数据和洋流的数值模型进行的。该地区大部分沿海地区的平均潮流低(<0.5 m / s)至中等(<0.8 m / s),但其复杂网络中的局部潮流可能相对较强(> 1.0 m / s)。潮汐河和屏障岛之间的入口。有限数量的潮流预测位置不足以解决当前速度和模式的时间和空间变化。因此,用区域海洋建模系统(ROMS)对洋流进行建模,以确定具有高潮汐能潜力的位置。模拟结果表明,佐治亚州沿海地区潮汐功率密度最高的地区是阿尔塔玛哈与多博伊桑德斯之间的沿海水路的一部分,以及卡努奇河的一部分。在这些位置基于一个月模拟的潮汐功率密度分别计算为1600 W / m2、1400 W / m2和1100 W / m2。萨凡纳河还发现该地区的潮汐能密度高。通过对模型结果进行谐波分析来生成一年的时间序列,并将其用于计算萨凡纳河,奥热奇河和阿尔塔马哈河中选定位置的年平均功率和能量。这些位置的年平均功率分别为1.3 MW,3.0 MW和1.9 MW,分别对应于112 GWh /年,258 GWh /年和162 GWh /年的年能源。通过每个位置的直方图提供一年中的潮流强度和潮流功率密度的分布。通过在ROMS的控制动量方程中施加附加的阻尼力,模拟了功率提取对河口水动力的影响。在Ogeechee河中模拟了两种不同的功率提取方案。第一种方案涉及整个河流断面的功率提取,并导致原始水流,水位和原始不受干扰的潮汐能发生相当大的变化。发现从第一横截面的一部分中提取功率的第二提取方案比第一方案对原始流的影响大为降低,但是尽管具有较小的面积来捕获功率,但是从流中提取了更高的功率。这归因于第二个方案中河流横截面未构造部分的水流动量恢复。提出了一种考虑物理,环境和社会经济约束的多标准评估方法,以选择最合适的位置用于潮流电源转换器。所提出的方法被应用于佐治亚州沿海地区,以找到最佳功率转换位置并对其进行排名。示范性排名程序表明,梅德韦河是乔治亚州海岸上转换潮汐能的最佳地点之一。

著录项

  • 作者

    Defne, Zafer.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Alternative Energy.;Engineering Civil.;Engineering Marine and Ocean.;Sustainability.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 228 p.
  • 总页数 228
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号