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Experimental Investigation of De-oiling Hydrocyclone

机译:脱油水力旋流器的实验研究

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Even though the hydrocyclone can be well used for de-oiling, the major problem with normal hydrocyclones is that they discharge relatively large amounts of oil with the water through the underflow. Therefore, the suitable hydrocyclone proportion and optimum hydrocyclone operating conditions should be investigated carefully to achieve better separation efficiency. In this research, a 35 mm hydrocyclone was studied for separating 25% of oil and 75% of water. The objective of the present manuscript was to investigate the important parameter and operating conditions that affected the oil recovery in the overflow. The investigated factors were inlet diameter, inlet velocity and flow ratio. From the experimental results obtained it could be concluded that 1) a decrease in inlet diameter led to an increase in the oil recovery in the overflow; 2) an increase in inlet velocity led to an increase in the oil recovery in overflow. In fact, the inlet velocity that provided the best oil recovery in this research was 8 m/s; 3) an increase in the flow ratio led to an increase in the oil recovery in the overflow.
机译:尽管水力旋流器可以很好地用于去油,但正常氢旋流器的主要问题是它们通过底部流动将相对大量的油排放。因此,应仔细研究合适的水力旋流比例和最佳水力旋流器操作条件,以获得更好的分离效率。在本研究中,研究了35mm的水力旋流器,用于分离25%的油和75%的水。本手稿的目的是调查影响溢出中的溢油的重要参数和操作条件。研究的因子是入口直径,入口速度和流量比。从获得的实验结果中可以得出结论,1)入口直径的降低导致溢出中的溢油中的增加; 2)入口速度的增加导致溢出中的溢油中的增加。事实上,提供本研究中最佳油回收的入口速度为8米/秒; 3)流量比的增加导致溢出中的溢油中的增加。

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