首页> 外文会议>ASME International Conference on Energy Sustainability >CONCEPTS DEVELOPED FOR A MULTIPHASED, VERTICAL AXIS WIND TURBINE SYSTEM WITH AN ADJUSTABLE INLET AIR SCOOP AND EXIT DRAG CURTAIN
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CONCEPTS DEVELOPED FOR A MULTIPHASED, VERTICAL AXIS WIND TURBINE SYSTEM WITH AN ADJUSTABLE INLET AIR SCOOP AND EXIT DRAG CURTAIN

机译:用于多相,垂直轴风力涡轮机系统开发的概念,具有可调节入口空气铲和出口拖曳窗帘

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A conceptual design is presented of a roof-top type, MULTI-PHASED VERTICAL AXIS WIND TURBINE SYSTEM with an ADJUSTABLE INLET AIR SCOOP and EXIT DRAG CURTAIN at a 100 Watt to 50 kWe commercial scale. The MULTI-PHASED VERTICAL AXIS WIND TURBINE (MVAWT) SYSTEM is cost effective in an environmentally friendly manner. It is especially useful in areas where it can benefit from the wind velocity increasing and streamlining effects that may occur around small hills, rooftops and tall buildings. The MVAWT system concentrates, collects and utilizes the available energy in the wind by way of a naturally yawed, downwind seeking, vertical axis orientated flow tube and integrated air turbine assembly with adjustable inlet air scoop and outlet drag sections mounted on the flow tube. The MVAWT system's air turbine is a combination radial or mixed out-flow and reaction cross-flow type centrifugal fan design as mounted on the discharge end of the flow tube. This air turbine, being more of a radial instead of an axial flow or propeller type design, can potentially exceed the Betz limit of 59.26% energy recovery or effectiveness from the maximum energy available from the wind flowing through the inlet flow tube. A low pressure drop screen can be provided at the inlet and outlet to protect flying birds and mammals from being drawn into the integrated flow tube and air turbine assembly. Additionally, access to the rotating components for inspection and maintenance purposes is much safer, easier and less costly than with conventional propeller type wind turbine systems mounted on tall towers. No multiple staged wind turbine system as described herein has as yet been researched as to its technical feasibility and developed to the point of a prototype demonstration at a commercial size. Such parameters as overall performance, energy conversion efficiency, costs (installed, operating and maintenance), system reliability, public acceptance and environmental impacts have not yet been truly assessed. A Phase I - technical feasibility assessment and Phase II - prototype demonstration program for a nominal 10 kWe sized Multi-Phased Vertical Axis Wind Turbine system with an average power output in a 16 mph wind of as much as 2 kWe (kW-hr/hr) and as much as 10 kWe (kW-hr/hr) at a 28 mph wind velocity is suggested to provide this essential information to both the authors and the public at large.
机译:概念设计呈现出屋顶类型,多相位的垂直轴风力涡轮机系统,可调节入口空气舀出,以100瓦至50 kWe商业规模出口拖曳窗帘。多相垂直轴风力涡轮机(MVAWT)系统以环保方式具有成本效益。它在可能在小山丘,屋顶和高层建筑物周围可能出现的风速增加和精简效果的区域特别有用。 MVAWT系统的浓缩物,通过自然的偏航,下行寻找,垂直轴定向流量管和集成的入口空气勺和插座拖动部分安装在风中的可用能量。 MVAWT系统的风力涡轮机是安装在流管的排出端上的组合径向或混合流出和反应横流式离心式离心风扇设计。该燃气轮机更像径向而不是轴流或螺旋桨式设计,可能可能超过从流过入口流管的最大能量的能量回收或有效性的β限制。可以在入口和出口处提供低压滴筛,以保护飞鸟和哺乳动物被吸入到集成的流管和空气涡轮机组件中。另外,对于检查和维护目的的旋转部件的进入比安装在高塔上的传统螺旋桨式风力涡轮机系统更安全,更容易更安全,更容易,更昂贵。没有如本文所述的多个上阶段风力涡轮机系统,尚未研究其技术可行性,并以商业规模的原型演示开发。这些参数作为整体性能,能量转换效率,成本(安装,运营和维护),系统可靠性,公众接受和环境影响尚未得到真正评估。一期 - 技术可行性评估和第II电相 - 标称10 KWE大小的多相垂直轴风力涡轮机系统的原型演示计划,平均功率输出为16英里/小时(KW-HR / HR) )并且建议在28英里/小时的风速下多达10 kWe(kW-hr / hr),以便为作者和公众提供这一基本信息。

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