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A Geospatial Database for Wind and Solar Energy Applications: The Kingdom of Bahrain Study Case

机译:风能和太阳能应用的地理空间数据库:巴林研究案例

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This research is aimed at designing, implementing, and testing a geospatial database for wind and solar energy applications in the Kingdom of Bahrain. All decision making needed to determine economic feasibility and establish site location for wind turbines or solar panels depends primarily on geospatial feature theme information and non-spatial (attribute) data for wind, solar, rainfall, temperature and weather characteristics of a particular region. Spatial data includes, but is not limited to, digital elevation, slopes, land use, zonings, parks, population density, road utility maps, and other related information. Digital elevations for over 450,000 spot at 50 m spatial horizontal resolution plus field surveying and GPS (at selected locations) was obtained from the Surveying and Land Registration Bureau (SLRB). Road, utilities, and population density are obtained from the Central Information Organization (CIO). Land use zoning, recreational parks, and other data are obtained from the Ministry of Municipalities and Agricultural Affairs. Wind, solar, humidity, rainfall, and temperature data are obtained from the Ministry of Transportation, Civil Aviation Section. LandSat Satellite and others images are obtained from NASA and online sources respectively. The collected geospatial data was geo-referenced to Ain el-Abd UTM Zone 39 North. 3D Digital Elevation Model (DEM)-50 m spatial resolutions was created using SLRB spot elevations. Slope and aspect maps were generate based on the DEM. Supervised image classification to identify open spaces was performed utilizing satellite images. Other geospatial data was converted to raster format with the same cell resolution. Non-spatial data are entered as an attribute to spatial features. To eliminate ambiguous solution, multi-criteria GIS model is developed based on, vector (discrete point, line, and polygon representations) as well as raster model (continuous representation). The model was tested at the Al-Areen proposed project, a relatively small area (15 km2). Optimum site spatial location for the location of wind turbines and solar panels was determined and initial results indicates that the combination of wind and solar energy would be sufficient for the project to meet the energy demand at the present per capita consummation rate..Key words: Bahrain / GIS / renewable energy / Multi criteria modeling
机译:该研究旨在设计,实施和测试Bahrain王国风和太阳能应用的地理空间数据库。确定风力涡轮机或太阳能电池板的经济可行性和建立现场位置所需的所有决策主要取决于地理空间特征主题信息和非空间(属性)数据,用于风,太阳能,降雨,温度和天气特性的特定区域。空间数据包括,但不限于数字海拔,斜坡,土地使用,分区,公园,人口密度,道路效用图和其他相关信息。从测量和土地登记局(SLRB)获得数字高度超过450,000点以上的450,000点斑点,以50米空间水平分辨率加上现场测量和GPS(在所选地点)。从中央信息组织(CIO)获得道路,公用事业和人口密度。土地利用分区,娱乐公园和其他数据是从市政当局和农业部获得的。风,太阳能,湿度,降雨和温度数据是从交通部,民用航空部门获得的。 Landsat卫星和其他图像分别从美国宇航局和在线来源获得。收集的地理空间数据是AIN EL-ABD UTM区39北的地理学。 3D数字高度模型(DEM)使用SLRB Spot Evations创建了250米空间分辨率。基于DEM生成斜率和方面图。监督图像分类以识别打开空间的利用卫星图像进行。其他地理空间数据被转换为具有相同单元格分辨率的栅格格式。将非空间数据作为空间特征作为属性输入。为了消除模糊的解决方案,基于矢量(离散点,线和多边形表示)以及光栅模型(连续表示)开发了多标准GIS模型。该模型在Al-iseen拟议的项目中进行了测试,一个相对较小的区域(15 km2)。确定风力涡轮机和太阳能电池板位置的最佳场地空间位置,初始结果表明,风能和太阳能的结合将足以满足目前人均完善率的能源需求.Key言语:巴林/ GIS /可再生能源/多标准建模

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