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Investigations on the dynamics of particle clouds in stagnant water using response surface methodology

机译:响应面法研究停滞水中颗粒云动力学的研究

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摘要

Disposal of sediments during land reclamation and dredging is an important component in many environmental engineering projects. Dredged material can be discharged into the ambient water either instantaneously to form a particle cloud or continuously to form a slurry jet. This paper presents the results of laboratory experiments to understand the dynamics of particle cloud in stagnant water. Different independent parameters such as particle size, nozzle diameter, cumulative mass of sand particles, and release height were tested. Due to wide ranges of selected variables and interactions between parameters, response surface methodology (RSM) technique was employed to determine the importance and effectiveness of each parameter on the growth and motion of particle clouds. A narrow range of non-dimensional cloud buoyancy in thermal regime was selected for design of experiments. Particle size was found to be the most significant parameter for the response predictions. The RSM results showed that increasing the nozzle diameter from 5 mm to 14 mm slightly increased the cloud width if all other parameters were kept unchanged. Statistical analysis of results indicated that the effect of the release height on growth of particle cloud was not significant; however, it was effective on variations of frontal velocity.
机译:土地填海和疏浚期间沉积物处置是许多环境工程项目中的重要组成部分。挖出的材料可以瞬间排出到环境水中以形成颗粒云或连续形成浆料射流。本文介绍了实验室实验的结果,以了解滞留水中颗粒云的动态。测试了不同的独立参数,如粒度,喷嘴直径,砂粒的累积质量和释放高度。由于所选变量范围的范围和参数之间的相互作用,采用响应面方法(RSM)技术来确定每个参数对粒子云的生长和运动的重要性和有效性。选择了热调节中的窄范围的无维云浮力,用于设计实验。粒度被发现是响应预测的最重要参数。 RSM结果表明,如果保持所有其他参数保持不变,则将喷嘴直径从5毫米到14毫米略微增加。结果统计分析表明,释放高度对粒子云生长的影响不显着;然而,它对正速的变化有效。

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