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Spray characterization measurements of a pendent fire sprinkler

机译:悬挂式消防喷淋头的喷雾特性测量

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The spray patterns of a pendent fire sprinkler were characterized through experimental measurements in the near and far field of the sprinkler. A laser-based shadow-imaging system was used to measure the droplet size, velocity and number density in the spray. An array of pressure-transducer-equipped water collection tubes and containers provided a separate set of water volume flux measurements. A large-scale traverse was constructed to move the laser optics and water collection tubes and containers to the designated measurement locations. A pendent fire sprinkler with K-factor of 205 lpm/ bar~(1/2) (14.2 gpm/psi~(1/2)) was characterized at two discharge pressures 3.5 bar and 5.2 bar (50 and 75 psi). In the near field at 0.76 m from the sprinkler, measurements were performed in a spherical coordinate at different azimuthal and elevation angles with respect to the sprinkler deflector. In the far field, the sprays were mapped out in a 110° circular sector at 3.05 m and 4.57 m below the ceiling. The shadow-imaging based water flux measurements were verified by the measurements obtained from water collection containers. The measurements show that the spatial distributions of water volume flux, droplet size and velocity of sprinkler sprays are strongly influenced by the sprinkler frame arms and the configuration of sprinkler deflector's tines and slots. For the purpose of fire protection analysis, empirical correlations were developed from the near-field measurements to prescribe the spray starting conditions for the numerical modeling of spray transport through fire plumes. The far-field measurements can be used to evaluate the spray transport calculations.
机译:通过在喷头近场和远场的实验测量来表征悬垂式消防喷头的喷雾方式。基于激光的阴影成像系统用于测量喷雾中的液滴尺寸,速度和数量密度。配备压力传感器的集水管和容器的阵列提供了单独的一组水体积通量测量值。进行了大规模的移动,以将激光光学系统和集水管和容器移动到指定的测量位置。 K系数为205 lpm / bar〜(1/2)(14.2 gpm / psi〜(1/2))的侧喷式洒水器的特点是在两个排气压力3.5 bar和5.2 bar(50和75 psi)下进行了测试。在距喷头0.76 m的近场中,在球形坐标中相对于喷头偏转器以不同的方位角和仰角进行测量。在远场中,喷雾被绘制在天花板下方3.05 m和4.57 m的110°圆形区域中。通过从集水容器中获得的测量值来验证基于阴影成像的水通量测量值。测量表明,水量通量,液滴尺寸和洒水速度的空间分布受洒水车架臂以及洒水偏转器尖齿和缝隙的配置影响很大。出于防火分析的目的,从近场测量中得出了经验相关性,从而规定了通过火焰羽流进行喷雾传输数值模拟的喷雾起始条件。远场测量可用于评估喷雾传输计算。

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