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Experimental study of the concentration field of discharge from a boat propeller

机译:船用螺旋桨排放浓度场的实验研究

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Engines in boats and ships using total loss lubrication deposit a significant proportion of their lubricant and fuel directly into the water. Their impact on the Australian coastline and marine ecosystems is of great concern. The purpose of this study was to document the velocity and concentration field characteristics of a submerged swirling water jet emanating from a propeller in order to provide information on its fundamental characteristics. The properties of the jet were examined far enough downstream to be relevant to the eventual modelling of the mixing problem. Measurements of the velocity and concentration field were performed in a turbulent jet generated by a model boat propeller (0.02 m diameter) within a 0.4 m-wide and 0.15 m-deep flume, operating at 1,500 and 3,000 rpm in a weak co-flow of 0.04 m/s. The measurements were carried out in the Zone of Established Flow up to 50 propeller diameters downstream of the propeller. Results pertaining to radial distribution, self-similarity, standard deviation growth, maximum value decay and integral fluxes of velocity and concentration fitted with empirical correlations. Furthermore, propeller-induced mixing and pollutant source concentration from a two-stroke engine were estimated.
机译:使用全损润滑的船舶发动机中,很大一部分润滑剂和燃料直接沉积在水中。它们对澳大利亚海岸线和海洋生态系统的影响令人极为关注。这项研究的目的是记录螺旋桨发出的水下旋流水射流的速度和浓度场特征,以便提供有关其基本特征的信息。对射流的特性进行了足够远的下游检查,以与最终的混合问题建模相关。速度和浓度场的测量是在模型船螺旋桨(直径0.02 m)在0.4 m宽和0.15 m深的水槽中产生的湍流中进行的,在1,500和3,000 rpm的弱共流下运行0.04 m / s。测量是在螺旋桨下游最多50个螺旋桨直径的既定流量区域中进行的。与径向分布,自相似性,标准偏差增长,最大值衰减以及速度和浓度的积分通量相关的结果符合经验相关性。此外,还估算了二冲程发动机的螺旋桨引起的混合和污染物源浓度。

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