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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >The effect of initial conditions on the exit flow from a fluidic precessing jet nozzle
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The effect of initial conditions on the exit flow from a fluidic precessing jet nozzle

机译:初始条件对进动射流喷嘴出口流量的影响

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The fluidic precessing jet (FPJ) is a member of a family of self-excited oscillating jet flows that has found application in reducing oxides of nitrogen (NOx) from combustion systems in the high-temperature process industries. Its flow field is highly three-dimensional and unsteady, and many aspects of it remain unresolved. Velocity data, measured close to the exit plane, are presented for a variety of FPJ nozzles with three different inlet conditions, namely, a long pipe, a smooth contraction and an orifice. The results indicate that jet inlets that are known to have nonsymmetrically shedding initial boundary layers, namely those from the orifice or long pipe, cause jet precession to be induced more easily than the smooth contraction inlet, which is known to have a symmetrically shedding initial boundary layer. The nature of the exit flow is dominated by the degree to which a given configuration generates precession. Nevertheless, the three different inlet conditions also produce subtle differences in the exit profiles of mean velocity and turbulence intensity when the flow does precess reliably. [References: 26]
机译:流体进动射流(FPJ)是一系列自激振荡射流的成员,该射流已发现可用于减少高温过程工业中燃烧系统的氮氧化物(NOx)。它的流场是高度三维且不稳定的,并且它的许多方面仍未解决。给出了在三种不同入口条件下,即长管,平滑收缩和孔口的各种FPJ喷嘴附近测得的速度数据。结果表明,已知具有不对称脱落的初始边界层的射流入口,即来自孔口或长管的射流入口,比已知具有对称脱落的初始边界的平滑收缩入口更容易引起射流进动层。出口流的性质取决于给定配置产生旋进的程度。然而,当流量确实可靠进动时,三种不同的入口条件也会在平均速度和湍流强度的出口轮廓上产生细微差异。 [参考:26]

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