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Method for on-demand design and fabrication of calibrated jet spoon turbines

机译:标定喷射勺式涡轮的按需设计和制造方法

摘要

Method for the design and on-demand manufacture of calibrated jet spinner turbines, characterized in that the skeletons of the turbines presented on the screen make it possible to design them and then to manufacture them in all dimensions, in all materials and in all all quantities, and they are built using blades designed with the arithmetic principle CARPYZ of the 5 parameters, the skeleton of the turbine is represented on the screen using "virtual neutral fibers" which are subsequently dressed with material, the turbines being contained over their entire length in a circular envelope in principle slightly curved whose diameter over the length changes according to its content, the length of this monobloc envelope is shown on drawing and divided into four areas cut by disks ephemeral virtual machines that separate each zone according to the functions performed at these locations, the front edge of this envelope is It is very tapered or on request provided with a flange Br to allow the connection to installations, the four zones comprising: a first zone (1) for introducing the fluid, empty space or occupied by sashes or inductors, of the type corkscrew, which possibly generate a pre-rotation of the fluid which enters a second zone (2), a pointed shield spreading at the arrival the vein of fluid from the center, and the leader by spreading it towards the second zone ( 2), the second zone (2) where the fluid is rotated, in channels which spiral out and which open at the rear of the second zone (2) by rotating the fluid, a third zone ( 3) is the rotary wheel provided with calibrated jet spoons which capture the energy provided by the fluid jets exiting the second zone (2), and a fourth zone (4) where there is a housing fixed to the stationary sleeve of the turbine, placed after the rotating wheel, which contains t channels that direct the fluid to the outlet at the rear of the turbine, and the fluid is conducted as soon as it arrives in the second zone (2) by channels, contained in tubes that are put in continuity face to face, along the entire length of the turbine.
机译:用于校准和按需制造喷流旋转涡轮机的方法,其特征在于,出现在屏幕上的涡轮机骨架可以进行设计,然后以各种尺寸,所有材料和所有数量制造它们。 ,并使用根据5个参数的算术原理CARPYZ设计的叶片建造,涡轮机的骨架在屏幕上使用“虚拟中性纤维”表示,随后用材料进行覆盖,涡轮机的整个长度都包含在其中一个原则上略微弯曲的圆形信封,其直径随长度的变化而变化,该整体信封的长度显示在图纸上,并分为四个临时磁盘虚拟磁盘切割的区域,这些虚拟磁盘根据在这些磁盘上执行的功能将每个区域分开位置,此封套的前边缘是非常锥形的,或根据要求提供法兰Br以允许与设备连接时,这四个区域包括:第一区域(1),用于引入开瓶器类型的流体,空的空间或由窗扇或感应器占据的流体,该流体可能会产生进入第二区域的流体的预旋转。 2),一个尖锐的护罩在到达中心处扩散流体的静脉,并通过将流体散布到第二区域(2),第二区域(2)(流体在其中旋转)的先导,并在螺旋状流出的通道中扩散通过旋转流体在第二区域(2)的后部打开的区域,第三区域(3)是装有已校准的喷射勺的旋转轮,该勺捕获从第二区域(2)流出的流体喷射所提供的能量,并且第四区域(4),其中有一个固定在涡轮机固定套上的壳体,位于旋转轮之后,壳体上有t个通道,这些流体将流体引导到涡轮机后部的出口,并且流体按照一旦通过通道到达第二区域(2),包含在沿涡轮机整个长度面对面连续的管中。

著录项

  • 公开/公告号LU100749B1

    专利类型

  • 公开/公告日2019-10-01

    原文格式PDF

  • 申请/专利权人 CARPYZ SAS;

    申请/专利号LU20180100749

  • 发明设计人 CARROUSET PIERRE;

    申请日2018-03-28

  • 分类号F03B1;

  • 国家 LU

  • 入库时间 2022-08-21 12:01:59

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