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Study of Lighter than air wind turbine systems and feasibility test of wind turbine before mounting it on an aerostat

机译:比空气风力涡轮机系统轻,在将其安装在空气螺柱前的风力涡轮机系统和可行性试验

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Wind energy is the leading renewable source of energy. It can be used as most reliable alternative source of energy. Nowadays for producing electricity from renewable resources a new class of wind energy converters i.e. lighter-than-air wind turbine platform are being used. Buoyant airborne wind turbines are devices capable of harnessing stronger wind at higher altitudes. A wind-based power generating system provides a wind energy converter for converting wind energy into electrical energy using an aerostat. This paper encapsulates concepts that can be used in designing of turbine to enhance the power output. It reviews techniques used for wind profiling, aerostat lift calculation and theoretical power calculation of a given turbine. Various measures have also been discussed in detail, to eliminate risk that can occur when the aerostat is aloft. Tethering mechanism and attachment mentioned in this paper gives a brief idea about concept used for stabilizing aerostat. Materials which can elevate the performance of a given aerostat have also been elucidated further.
机译:风能是领先的可再生能源来源。它可以作为最可靠的替代能源来源。如今,用于从可再生资源生产电力一类新的风能转换器,即,正在使用较轻的风力涡轮机平台。浮力空气载体风力涡轮机是能够在较高海拔地区利用更强的风的装置。基于风力的发电系统提供了一种风能转换器,用于使用空气静渗者将风能转换为电能。本文封装了可用于设计涡轮机以增强功率输出的概念。它评论了用于风分析的技术,避风气升降计算和给定涡轮机的理论功率计算。还已经详细讨论了各种措施,以消除空气电垫乐于宽松的风险。本文提到的束缚机构和附件给出了关于用于稳定空气蒸汽垫的概念的简要概述。可以进一步阐明能够提高给定空气源的性能的材料。

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