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Optimizing Wind Power Generation while Minimizing Wildlife Impacts in an Urban Area

机译:优化风力发电,同时最大程度减少对城市野生生物的影响

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摘要

The location of a wind turbine is critical to its power output, which is strongly affected by the local wind field. Turbine operators typically seek locations with the best wind at the lowest level above ground since turbine height affects installation costs. In many urban applications, such as small-scale turbines owned by local communities or organizations, turbine placement is challenging because of limited available space and because the turbine often must be added without removing existing infrastructure, including buildings and trees. The need to minimize turbine hazard to wildlife compounds the challenge. We used an exclusion zone approach for turbine-placement optimization that incorporates spatially detailed maps of wind distribution and wildlife densities with power output predictions for the Ohio State University campus. We processed public GIS records and airborne lidar point-cloud data to develop a 3D map of all campus buildings and trees. High resolution large-eddy simulations and long-term wind climatology were combined to provide land-surface-affected 3D wind fields and the corresponding wind-power generation potential. This power prediction map was then combined with bird survey data. Our assessment predicts that exclusion of areas where bird numbers are highest will have modest effects on the availability of locations for power generation. The exclusion zone approach allows the incorporation of wildlife hazard in wind turbine siting and power output considerations in complex urban environments even when the quantitative interaction between wildlife behavior and turbine activity is unknown.
机译:风力涡轮机的位置对其功率输出至关重要,而风力输出受到本地风场的强烈影响。涡轮机操作员通常会在地面上最低的位置寻找风量最大的位置,因为涡轮机的高度会影响安装成本。在许多城市应用中,例如当地社区或组织拥有的小型涡轮机,由于可用空间有限,并且由于必须经常添加涡轮机而又不移除包括建筑物和树木在内的现有基础设施,因此涡轮机的放置面临挑战。使涡轮机对野生生物的危害最小化的需求使这一挑战更加复杂。我们使用了禁区法进行涡轮机布置优化,该方法将风速分布和野生动植物密度的空间详细地图与俄亥俄州立大学校园的功率输出预测相结合。我们处理了公共GIS记录和机载激光雷达点云数据,以绘制所有校园建筑物和树木的3D地图。高分辨率大涡模拟和长期风气候相结合,提供了受地表影响的3D风场和相应的风力发电潜力。然后将此功率预测图与鸟类调查数据相结合。我们的评估预测,排除鸟类数量最多的地区将对发电场所的可用性产生适度的影响。禁区法允许在复杂的城市环境中将风力涡轮机选址中的野生动植物危害纳入考虑范围,并考虑到复杂的城市环境中的功率输出,即使野生生物行为和涡轮机活动之间的定量相互作用未知。

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