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DISCHARGE COEFFICIENTS OF FLAT-FAN NOZZLES

机译:平板喷嘴的放电系数

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摘要

The discharge coefficient (Cd) is a measure of how much of the pressure energy of a nozzle is converted into kinetic energy. With the discharge coefficient known, the exit velocity of the liquid sheet from the nozzle can be calculated from the pressure. It is important to be able to accurately calculate this nozzle exit velocity for use in initializing computational simulations such as AGDISP or CFD. The objective of this work was to measure the discharge coefficients for different types of flat-fan nozzles. In this work, a phase-Doppler interferometer was used to measure the exit velocity for standard, pre-orifice, and air-induction flat-fan nozzles, for rated sizes from 01 to 06, at pressures from 1 to 6 bar. From these velocities, discharge coefficients were calculated. The standard flat-fan nozzles had the highest discharge coefficients, while the air-induction nozzles had the lowest discharge coefficients. For a fixed type of nozzle design, the discharge coefficient increased slightly with the rated flow rate. The discharge coefficient decreased slightly with increasing pressure for a given nozzle. Much of the differences in droplet size for different types of nozzles can be explained by atomization theory as a result of the differences in discharge coefficients for the different nozzle designs.
机译:放电系数(CD)是衡量喷嘴的大部分压力被转换为动能的量。通过已知的放电系数,可以根据压力计算来自喷嘴的液体片的出口速度。重要的是能够准确地计算这种喷嘴退出速度,以便用于初始化诸如Agdisp或CFD之类的计算模拟。这项工作的目的是测量不同类型的平风扇喷嘴的放电系数。在这项工作中,使用相位多普勒干涉仪来测量标准,预孔和空气感应平板喷嘴的出口速度,从01至06的额定尺寸,在1至6巴的压力下。从这些速度,计算放电系数。标准平面风扇喷嘴具有最高的放电系数,而空气感应喷嘴具有最低放电系数。对于固定类型的喷嘴设计,放电系数随着额定流速而略微增加。排出系数随着给定喷嘴的增加而略微降低。由于不同喷嘴设计的放电系数的差异,可以通过雾化理论来解释不同类型喷嘴的液滴尺寸的大部分差异。

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