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Stream-Reach Identification for New Run-of-River Hydropower Development through a Merit Matrix-Based Geospatial Algorithm

机译:基于功绩矩阵的地理空间算法对新河道水电开发的河道识别

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摘要

Even after a century of development, the total hydropower potential from undeveloped rivers is still considered to be abundant in the United States. However, unlike evaluating hydropower potential at existing hydropower plants or nonpowered dams, locating a feasible new hydropower plant involves many unknowns; hence, the total undeveloped potential is harder to quantify. In light of the rapid development of multiple national geospatial data sets for topography, hydrology, and environmental characteristics, a merit matrix-based geospatial algorithm is proposed to identify possible hydropower stream reaches for future development. These hydropower stream reaches-sections of natural streams with suitable head, flow, and slope for possible future development-are identified and compared by using three different scenarios. A case study was conducted in the Alabama-Coosa-Tallapoosa and Apalachicola-Chattahoochee-Flint hydrologic subregions. It was found that a merit matrix-based algorithm, which is based on the product of hydraulic head, annual mean flow, and average channel slope, can effectively identify stream reaches with high power density and small surface inundation. These identified stream reaches can then be evaluated for their potential environmental impact, land development cost, and other competing water usage in detailed feasibility studies. Given that the selected data sets are available nationally (at least within the conterminous U.S.), the proposed methodology will have wide applicability across the country.
机译:即使经过一个世纪的发展,美国仍认为来自未开发河流的总水电潜力仍然很大。但是,与评估现有水力发电厂或无动力大坝的水电潜力不同,找到可行的新水力发电厂涉及许多未知因素。因此,总的未开发潜力很难量化。鉴于针对地形,水文学和环境特征的多个国家地理空间数据集的快速发展,提出了一种基于绩效矩阵的地理空间算法,以识别可能的水力发电量以用于未来的开发。通过使用三种不同的方案,确定并比较了这些水电到达自然流的断面,这些断面具有合适的扬程,流量和坡度,以备将来可能使用。在阿拉巴马州-库萨-塔拉普萨和阿拉帕拉科拉-查塔胡奇-弗林特水文分区域进行了案例研究。研究发现,基于优点矩阵的算法基于水头,年平均流量和平均河道斜率的乘积,可以有效地识别高功率密度和小水面淹没的河段。然后,可以在详细的可行性研究中评估这些确定的河段的潜在环境影响,土地开发成本以及其他竞争用水。鉴于所选的数据集在全国范围内可用(至少在美国本土范围内可用),因此建议的方法将在全国范围内广泛应用。

著录项

  • 来源
    《Journal of Water Resources Planning and Management》 |2014年第8期|04014016.1-04014016.11|共11页
  • 作者单位

    Dept. of Civil and Geomatics Engineering, California State Univ., 2320 E. San Ramon Ave. M/S EE94, Fresno, CA 93740;

    Environmental Sciences Division, Oak Ridge National Laboratory, 1 Bethel Valley Rd., Building 1505/Rm 356/MS 6038, Oak Ridge, TN 37831;

    Environmental Sciences Division, Oak Ridge National Laboratory, 1 Bethel Valley Rd., Building 1505/Rm 356/MS 6038, Oak Ridse, TN 37831;

    Energy-Water-Ecosystem Engineering Group, Environmental Sciences Division, Oak Ridge National Laboratory, 1 Bethel Valley Rd., Building 1505/Rm 356/MS 6038, Oak Ridge, TN 37831;

    Environmental Sciences Division, Oak Ridge National Laboratory, 1 Bethel Valley Rd., Building 1505/Rm 356/MS 6038, Oak Ridge, TN 37831;

    Energy-Water-Ecosystem Engineering Group, Environmental Sciences Division, Oak Ridge National Laboratory, 1 Bethel Valley Rd., Building 1505/Rm 356/MS 6038, Oak Ridge, TN 37831;

  • 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

    Hydropower resource assessment; New hydropower development; Stream-reach selection; Flood elevation;

    机译:水电资源评估;新水电开发;流范围选择;洪水高度;

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