Effect of the gas distribution system structure of a radial flow adsorber on gas distribution
-
摘要: 徑向流吸附器內的均勻布氣對其性能有重要影響.本文以實驗室用小型徑向流吸附器為研究對象,建立了三維流動數學模型,并對徑向流吸附器內部的流場進行了數值模擬.對比研究了徑向流吸附器內氣體流動型式、中心流道與外流道的截面積比、中心流道開孔率、外流道開孔率等對流場均勻分布的影響.結果表明:徑向流吸附器采用向心流動的最為合適,并且Π型向心流動略優于Z型向心流動;中心流道與外流道的截面積比為18.9%時,獲得最佳布氣效果;中心流道開孔率越小,徑向流速度不均勻度值越小,布氣效果越好,但開孔率過低將導致布氣孔附近局部布氣不均勻,能耗增大;外流道開孔率變化對徑向流吸附器內氣流均布影響有限.Abstract: Uniform gas distribution in a radial flow adsorber plays an essential part in its performance. A 3D hydrodynamic and mathematical model of the radial flow adsorber was developed based on experimental studies. The effects of flow patterns, the cross-section ratio of central channel to outer channel, and the opening ratios of the central channel and the outer channel were comparatively studied by using this model. Radial inward flow was proved to have a better performance than radial outward flow, and the∏ type of inward flow is a little better than that of the Z type of inward flow. The best effect can be obtained when the cross-section ratio of central channel to outer channel is 18.9%. The radial non-uniformity of velocity decreases with the decrease of the opening ratio of the central channel, and the effect of flow distribution is better. But if the opening ratio of the central channel is too low, it will cause uneven local flow distribution and high energy consumption. The opening ratio of the outer channel has a little influence on flow distribution in the radial flow adsorber.
-
Key words:
- adsorbers /
- radial flow /
- flow distribution /
- flow pattern /
- numerical analysis
-

計量
- 文章訪問數: 176
- HTML全文瀏覽量: 58
- PDF下載量: 11
- 被引次數: 0