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Feasibility Study of Fluctuating Wind Pressure around High-Rise Buildings as a Potential Energy-Harvesting Source

机译:高层建筑物波动风压的可行性研究作为潜在的能量收集来源

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摘要

As the importance of sustainable energy increases, wind power generation systems utilizing wind energy around high-rise buildings are being developed. However, in existing wind turbine systems, it is necessary to solve noise, vibration problems, and structural issues for the installation of large-sized systems. In addition, small wind turbine systems can be installed only in limited areas such as roofs and corners, because their efficiency is limited to high and stable wind speed. For this reason, the distribution of fluctuating wind pressure around high-rise buildings was analyzed, and its feasibility as an energy source was evaluated, reflecting that fluctuating wind pressure can be used in vibration-based energy-harvesters. To achieve this, firstly, experimental conditions and theories were established to check the characteristic of wind pressure around high-rise buildings. The experiment was divided into the environment without surrounding buildings and the urban environment. Next, the pressure distribution around high-rise buildings and the quantitative results obtained from the experiment were determined. Finally, based on the results obtained from the experiments, the feasibility of fluctuating wind pressure as an energy-harvesting source was analyzed. From this study, it was found that fluctuating wind pressure can be used as a new energy source at new locations of high-rise buildings that were not utilized previously.
机译:随着可持续能源的重要性,正在开发利用风能围绕高层建筑物的风力发电系统。然而,在现有的风力涡轮机系统中,有必要解决噪声,振动问题和安装大型系统的结构问题。此外,小型风力涡轮机系统只能在诸如屋顶和角落的有限区域安装,因为它们的效率仅限于高稳定的风速。因此,分析了高层建筑物周围的风压的波动的分布,并评估其作为能量源的可行性,反映波动风压可用于基于振动的能量收割机。为实现这一目标,建立了实验条件和理论,以检查高层建筑周围风压的特征。实验分为环境,没有周围建筑物和城市环境。接下来,确定高层建筑物周围的压力分布和从实验中获得的定量结果。最后,基于从实验获得的结果,分析了风压作为能量收集源的波动的可行性。从本研究开始,发现波动风压可以用作以前未使用的高层建筑物的新位置处用作新能源。

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