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Drag reduction efficiency of solid particles in pipelines of two phase flow

机译:两相流管道中固体颗粒的减阻效率

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Pipe is a common channel to transport fluid from one location to another. Skin frictions formed by turbulent flow in pipe become the main aspect for researchers to explore the field of fluid mechanics. Frictional drag formed in pipelines transporting water can be reduced spectacularly by adding minute amount of drag reducing agents (DRA). Experiments have been conducted to test the performance of titanium dioxide manufacturing wastes (red gypsum) as DRA. The purpose of using an industrial waste is to reduce the amount of waste land filled (waste to wealth) as well as the capability of red gypsum which doesn''t influence or change the properties of water. Investigated parameters for this study are solid concentrations (50ppm–200ppm), pipe diameter (0.0127m, 0.0254m and 0.0381m), length of testing section and Reynolds number (Re) or known as fluid flow rate. The results showed that, percentage drag reduction (%DR) increases by increasing the solid concentration at larger pipe with higher water flow rate (Re). A maximum drag reduction of 56.44% has been achieved in 0.0381m pipe diameter at Re=149648.3 and 200 ppm solid concentrations. On the other hand, while testing the effect of pipe length, effective %DR (40.18%) accomplished at 2m (for 200ppm solid concentration). With demonstrated experimental results, it can be concluded that red gypsum regarded as DRA.
机译:管道是将流体从一个位置传输到另一位置的常用通道。由管道中的湍流形成的皮肤摩擦成为研究人员探索流体力学领域的主要方面。通过添加微量减阻剂(DRA),可以显着减少输水管道中形成的摩擦阻力。已经进行了实验以测试作为DRA的二氧化钛生产废料(红色石膏)的性能。使用工业废料的目的是减少填满的废土量(从废物转化为财富),以及减少不影响或改变水质的红石膏的能力。这项研究的研究参数是固体浓度(50ppm–200ppm),管道直径(0.0127m,0.0254m和0.0381m),测试段的长度和雷诺数(Re)或称为流体流速。结果表明,在较高的水流率(Re)下,较大管道中的固体浓度增加时,减阻百分数(%DR)会增加。在Re = 149648.3和200 ppm固体浓度下,0.0381m的管径可实现最大减阻56.44%。另一方面,在测试管道长度的影响时,有效百分率(40.18%)在2m(对于200ppm固体浓度)下达到。通过证明的实验结果,可以得出结论,红色石膏被视为DRA。

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