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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Experimental study on the solid velocity in horizontal dilute phase pneumatic conveying of fine powders
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Experimental study on the solid velocity in horizontal dilute phase pneumatic conveying of fine powders

机译:细粉水平稀相气力输送中固体速度的实验研究

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摘要

The calculation reliability of pressure drop and gas-solid drag force in horizontal dilute phase pneumatic conveying strongly depends on the accuracy of gas-solid velocity correlation. However, there are limited studies on the solid velocity in horizontal dilute phase pneumatic conveying and it is important to further validate suitability of existing correlation of gas-solid velocity, especially for fine particles (such as pulverized coal). Consequently, in this paper, a negative pressure pneumatic conveying test rig is set up and two kinds of powders with different sizes are adopted. Optical fiber probe (OFP) was used to measure the volumetric solid concentration and particle velocity. The volumetric solid concentration was also calculated by using the measured particle velocity. The results show that the solid concentrations obtained by the two methods have good agreement, and discrepancy is within ± 20%. It was found the particle velocities are different in the upper and lower part of the cross-section in the horizontal pipe. However, the difference is generally no more than 2 m/s. The velocity difference will decrease with the increasing gas velocity, and increases with the solid mass flow rate. In the experimental condition of 0.06 mm < d_s < 0.35 mm, 1400 kg/m~3 < ρ_s < 2600 kg/m~3, the implicit correlation based on Yang's Unified Theory gives the best prediction of particle velocity among existing studies but still with noticeable discrepancy with the comparison of the present experimental data. By modifying the solid friction factor, an improved correlation of the particle velocity was obtained, which agrees better with the experimental data given in the present and literature studies.
机译:水平稀相气力输送中压降和气固阻力的计算可靠性很大程度上取决于气固速度相关性的准确性。但是,关于水平稀相气力输送中的固体速度的研究很少,重要的是进一步验证现有的气固速度相关性的适用性,特别是对于细颗粒(例如煤粉)。因此,本文建立了负压气力输送试验台,并采用了两种不同尺寸的粉末。光纤探针(OFP)用于测量体积固体浓度和颗粒速度。还通过使用测得的颗粒速度来计算体积固体浓度。结果表明,两种方法得到的固体浓度吻合良好,偏差在±20%以内。发现水平管横截面的上部和下部的颗粒速度不同。但是,差异通常不超过2 m / s。速度差将随着气体速度的增加而减小,并随着固体质量流量的增加而增加。在0.06 mm

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