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    • 23. 发明公开
    • Rotating blade bodies for turbines using the Magnus effect with rotation axis of the turbine at right angle to the direction of the fluid
    • 旋转刀片体用于使用与以直角与涡轮机的旋转轴线的马格努斯效应以流体的方向涡轮机
    • EP2716905A1
    • 2014-04-09
    • EP12425163.8
    • 2012-10-05
    • E.R. Energie Rinnovabili S.R.L.
    • F03D1/06F03D3/00F03D3/06
    • F03D3/007F03D3/061F05B2240/201Y02E10/721Y02E10/74
    • The present invention relates to a rotating body (10) for turbines using the Magnus effect with an axis of rotation of the turbine parallel to the direction of the working fluid, wherein it is obtained by an ovoid of construction of Rankine-Fuhrman, arranged with major axis (L RL ) parallel to the axis of rotation of the rotating body (10), said major axis (L RL ) of the ovoid being equal to 10 times the minor axis (D RL ), of the same ovoid, the diameter (D) of said rotating body (10) being variable along the axis of rotation of said rotating body (10) up to a maximum value comprised between 1/5 and 1/6 of the length (L) of said rotating body (10), said ovoid of construction of Rankine-Fuhrmann being divided into four sectors obtained dividing the major axis (L RF ) of the same ovoid into four segments (1, 2, 3, 4) having the same length, the profile of said rotating body being realised, respectively
      - following the profile of the second and third sectors into which the ovoid of construction of Rankine-Fuhrmann was divided, i.e. the sectors of the ovoid of Rankine-Fuhrmann corresponding to the second (2) and third (3) segments into which the major axis (L RF ) of the ovoid was divided,
      - following the profile obtained through the combined transposition of the third sector to the second sector into which the ovoid of construction of Rankine-Fuhrmann was divided, so to form two opposing trapezoids, welded along the minor base,
      or
      - following the profile obtained through the combined transposition of the fourth sector, i.e. the sector of the ovoid of construction corresponding to the fourth segment (4) into which the major axis (L RF ) of the ovoid was divided, to the first sector, i.e. the sector of the ovoid of construction corresponding to the first segment (1) into which said major axis (L RF ) of the ovoid was divided, so to form an hourglass, wherein the two sectors are connected, at the respective points of maximum curvature, by means of sections of prolated spheroid, i.e. with surfaces of quadrics of rotation with one flap.
    • 本发明涉及到的旋转体(10),用于使用在平行于所述工作流体,worin它是由在结构朗肯富尔曼的卵形获得的方向上的涡轮机的旋转轴线与所述马格努斯效应涡轮机,布置有 主轴(L RL)平行于所述旋转体(10)的旋转轴线,所述卵形的长轴(L RL)等于所述短轴10倍(D RL),相同的卵形的,直径 说的(D)旋转体(10)沿所述的转动旋转轴体(10)是可变的约1/5和Said旋转体的长度(L)的1/6之间包含的最大值(10 ),所述结构朗肯了Fuhrmann的卵形被分成获得分割长轴相同卵形的(L RF)分成四个区段(1,2,3四个扇区,4)具有相同的长度,所述的轮廓旋转 体正在实现,分别为 - 继第二和第三扇区的轮廓为卵形哪个常量的 朗肯福尔曼的乱子什么分歧,即 朗肯福尔曼的对应于第二(2)和第三(3)段中的卵形的扇区到卵形什么划分的哪一个长轴(L RF) - 继至第3区段的组合换位获得的轮廓 到所述第二扇区成施工朗肯了Fuhrmann的什么划分卵形,所以,以形成两个相对的梯形沿辅基焊接,或 - 继通过第四扇区,即合并的换位获得的轮廓 结构的对应于第四分段(4)的卵形的扇区到卵形什么除,所述第一扇区,即其中主轴线(L RF) 构造对应于所述第一分段的卵形的扇区(1)插入其中所述卵形什么划分的主轴(L RF),所以,以形成沙漏,worin的两个扇区被连接,在最大曲率respectivement点 通过prolated球体,即部分的手段 与一个襟翼旋转二次曲面的表面。