首页> 外文会议>International Conference on Combustion, Incineration/Pyrolysis and Emission Control(3rd i-CIPEC); 20041021-23; Hangzhou(CN) >A Numerical and Experimental Study on a Cyclone Separator for Difficult Operating Conditions
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A Numerical and Experimental Study on a Cyclone Separator for Difficult Operating Conditions

机译:困难工况下旋风分离器的数值和实验研究

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Considering the design high efficiency cyclone, the important thing to note is to minimize the pressure drop with the enhancement of efficiency of dust collection. Thus the numerical and experimental study has been made for the development of high efficiency cyclone dust separator applicable to the extreme environments of high pressure of 6 bar and temperature up to 400℃. The main objective of this study is to develop a handy and reliable computer program and thereby to figure out the physical mechanism of dust collection for high temperature and pressure condition. The calculated results predict well the general trend and its magnitude of the experimentally measured pressure drop with the condition of increased pressure and temperature as a function of flow rate. Further, experiment shows that the increase of pressure and temperature generally affect significantly the collection efficiency of fine particle less than 10 microns but the effect of pressure and temperature appears contrary each other. That is, the increase of pressure increases the collection efficiency, while the increase of the temperature results in the decrease of the efficiency over a certain range of flow rate. This is explained well by the variation of the gaseous density and viscosity effect on the drag force and also confirmed successfully by the result of numerical calculation. Therefore the decrease of fractional collection efficiency caused by the high operating temperature can be remedied by the increase of operating pressure. In order to investigate in more detail the effect on the physics of collection efficiency, a series of parametric numerical investigations are performed in terms of major cyclone design or operational parameters such as tangential velocity, vortex finder length and diameter. Tangential velocity plays an important role in collecting particles as different cyclone dimensions. And the length of vortex finder has relatively insignificant effect on collection characteristics but the diameter of vortex finder plays an important role for the enhancement of collection efficiency.
机译:考虑到设计高效的旋风分离器,需要注意的重要事项是在提高集尘效率的同时将压降降至最低。因此,为开发适用于6 bar高压和最高400℃温度的极端环境的高效旋风除尘器进行了数值和实验研究。这项研究的主要目的是开发一种方便可靠的计算机程序,从而弄清高温高压条件下集尘的物理机理。计算结果很好地预测了随着压力和温度升高作为流量函数的情况,实验测得的压降的总体趋势及其大小。此外,实验表明,压力和温度的升高通常会显着影响小于10微米的微粒的收集效率,但压力和温度的影响似乎是相反的。即,压力的增加增加了收集效率,而温度的增加导致在一定流速范围内效率的降低。气体密度和粘度对拖曳力的影响变化可以很好地解释这一点,并且通过数值计算的结果也可以成功地证实这一点。因此,可以通过增加工作压力来弥补由于较高的工作温度引起的部分收集效率的降低。为了更详细地研究对收集效率的物理影响,针对主要的旋风分离器设计或操作参数(例如切线速度,涡流探测器长度和直径)进行了一系列参数数值研究。切向速度在收集不同旋风尺寸的颗粒中起着重要作用。涡流收集器的长度对收集特性的影响相对较小,但涡流收集器的直径对于提高收集效率起着重要作用。

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