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Stable stream producing flexible orifice independent of fluid pressure

机译:稳定的流产生与流体压力无关的柔性孔

摘要

A self-adjusting orifice for fluids nozzle includes a membrane constructed of a single piece of flexible or elastic material. This flexible material is shaped to fit into the outlet of a nozzle. The body of the membrane has at least two flow channels, from one face to the other, which directs two streams of water to cross at the opening of the nozzle or at some point beyond. The elasticity and thickness of the membrane is selected to match the range of expected pressures and fluid velocities. The orifice may have more than two flow channels, as long as they are aligned adjacent to one another and directed towards each other at the exit face. In a three orifice embodiment, one is directed upward, one is directed downward, and the one in the middle is directed forward. In this embodiment all three fluid streams intersect at some point past the nozzle opening. Under increased pressure the membrane will deform causing the orifices to realign in a more forward direction, causing the streams to intersect at a smaller angle. This reduces the force with which the separate streams impact each other, still allowing the separate streams to unify into a single stable spiralling stream in spite of the increased pressure.
机译:用于流体的自调节孔口包括由单件柔性或弹性材料构成的膜。将该柔性材料成形为适合喷嘴的出口。膜的主体具有至少两个从一个面到另一个面的流动通道,该流动通道引导两股水流在喷嘴的开口处或越过的某个点处交叉。选择膜的弹性和厚度以匹配预期压力和流体速度的范围。孔口可以具有两个以上的流动通道,只要它们彼此相邻对准并且在出口面上彼此指向即可。在三孔实施例中,一个指向上方,一个指向下方,而中间的一个指向前方。在该实施例中,所有三个流体流在经过喷嘴开口的某个点处相交。在增加的压力下,膜将变形,从而导致孔口在更向前的方向上重新对齐,从而使流以较小的角度相交。这减小了分离的流彼此碰撞的力,尽管压力增加,仍允许分离的流统一为单个稳定的螺旋流。

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