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Investigating the Discharge Conditions of the Circular Buoyant Co-flow Jet in the Infinitely Shallow Water

机译:无限浅水中圆形浮流并流射流的排放条件研究

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Discharge of contaminants in the acceptor ambient has negative environmental impacts. Extremely shallow acceptor ambient conditions will have a significant impact on the diffusion of the contaminants flow. To achieve the effect of the hydraulic, geometric and environmental conditions of the contaminant flow in the acceptor ambient, an experimental model of surface draining was applied. The model consisted of a flume with 3.2 meters length, 0.6 meters width and 0.9 height. Accordingly, by considering three simple single drainers with the diameters of 1.2, 1.6 and 2.2 centimeters, a dense flow with 20, 40 and 60 g/L concentrations occurred in an acceptor ambient with H/d = 2. The results showed that equilibrium length was extremely decreased by increasing the concentrations; this was such that with increasing the concentration three times from 20 to 60 g/L, this length was decreased from 25 to 10. However, based on the results, it was found that the effect of the changes of the viscosity parameter over the relative length was significant, as its effect was high in all concentrations to 100; then it tended to become a constant value.. In this regard, the effect of changes in the surface tension parameters over the relative length was investigated; the results showed that this parameter was always effective in the extremely shallow acceptor ambient at all stages from the beginning to the end of the progress. It is important to note that this had a constant slope in all concentrations and surface tension had an effect on flow diffusion with a certain trend in all concentrations. In fact, surface tension in all concentrations reached to 5 after the equilibrium length and jet energy dissipation area.
机译:受体环境中污染物的排放会对环境造成负面影响。极端浅的受体环境条件将对污染物流的扩散产生重大影响。为了获得在受体环境中污染物流的水力,几何和环境条件的影响,应用了表面排水的实验模型。该模型由长3.2米,宽0.6米,高0.9的水槽组成。因此,通过考虑三个直径分别为1.2、1.6和2.2厘米的简单排水器,在H / d = 2的受体环境中发生了浓度分别为20、40和60 g / L的致密流。结果表明,平衡长度通过增加浓度使其大大降低;结果是,随着浓度从20 g / L增至3倍,长度从25降低至10。但是,根据结果,发现粘度参数变化对相对粘度的影响长度是显着的,因为在所有浓度至100的情况下,其效果都很高;在这方面,研究了表面张力参数在相对长度上变化的影响。结果表明,该参数在从开始到结束的所有阶段的极浅受体环境中始终有效。重要的是要注意,这在所有浓度下都具有恒定的斜率,并且表面张力对流量扩散有影响,在所有浓度下都有一定的趋势。实际上,在平衡长度和射流能量耗散区域之后,所有浓度的表面张力均达到5。

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