化工进展
化工進展
화공진전
CHEMICAL INDUSTRY AND ENGINEERING PROGRESS
2014年
1期
25-29
,共5页
周振江%王广全%郭成峰%计建炳
週振江%王廣全%郭成峰%計建炳
주진강%왕엄전%곽성봉%계건병
折流式旋转床%静圈%传质%压降%功耗
摺流式鏇轉床%靜圈%傳質%壓降%功耗
절류식선전상%정권%전질%압강%공모
rotating zigzag bed%stationary baffle%mass transfer%pressure drop%power consumption
折流式旋转床是一种新型的超重力旋转床,其核心部件是动、静结合的转子,转子由安装了动圈的动盘和安装了静圈的静盘上下相互嵌套而成。本实验中使用了一个常规的折流式转子(转子Ⅰ)和一个具有较短静圈的折流式转子(转子Ⅱ),在常压下分别以乙醇-水体系和空气-水体系对两个折流式转子进行了传质性能与流体力学实验,考察了静圈对折流式旋转床的传质、压降和功耗的影响。结果表明,静圈能明显强化传质过程,与转子Ⅰ相比,转子Ⅱ理论塔板数大约降低了的50%;转子Ⅰ的传质效率随转速的增大而增大,当转子的转速从400 r/min增加到1200 r/min,转子Ⅰ的传质效率增大了约40%,而转子Ⅱ的理论塔板数变化不明显;静圈使折流式转子具有较大的压降和功耗,转子Ⅱ的压降为转子Ⅰ的20%~50%,轴功率为转子Ⅰ的60%~80%。
摺流式鏇轉床是一種新型的超重力鏇轉床,其覈心部件是動、靜結閤的轉子,轉子由安裝瞭動圈的動盤和安裝瞭靜圈的靜盤上下相互嵌套而成。本實驗中使用瞭一箇常規的摺流式轉子(轉子Ⅰ)和一箇具有較短靜圈的摺流式轉子(轉子Ⅱ),在常壓下分彆以乙醇-水體繫和空氣-水體繫對兩箇摺流式轉子進行瞭傳質性能與流體力學實驗,攷察瞭靜圈對摺流式鏇轉床的傳質、壓降和功耗的影響。結果錶明,靜圈能明顯彊化傳質過程,與轉子Ⅰ相比,轉子Ⅱ理論塔闆數大約降低瞭的50%;轉子Ⅰ的傳質效率隨轉速的增大而增大,噹轉子的轉速從400 r/min增加到1200 r/min,轉子Ⅰ的傳質效率增大瞭約40%,而轉子Ⅱ的理論塔闆數變化不明顯;靜圈使摺流式轉子具有較大的壓降和功耗,轉子Ⅱ的壓降為轉子Ⅰ的20%~50%,軸功率為轉子Ⅰ的60%~80%。
절류식선전상시일충신형적초중력선전상,기핵심부건시동、정결합적전자,전자유안장료동권적동반화안장료정권적정반상하상호감투이성。본실험중사용료일개상규적절류식전자(전자Ⅰ)화일개구유교단정권적절류식전자(전자Ⅱ),재상압하분별이을순-수체계화공기-수체계대량개절류식전자진행료전질성능여류체역학실험,고찰료정권대절류식선전상적전질、압강화공모적영향。결과표명,정권능명현강화전질과정,여전자Ⅰ상비,전자Ⅱ이론탑판수대약강저료적50%;전자Ⅰ적전질효솔수전속적증대이증대,당전자적전속종400 r/min증가도1200 r/min,전자Ⅰ적전질효솔증대료약40%,이전자Ⅱ적이론탑판수변화불명현;정권사절류식전자구유교대적압강화공모,전자Ⅱ적압강위전자Ⅰ적20%~50%,축공솔위전자Ⅰ적60%~80%。
Rotating zigzag bed (RZB) is a new kind of contactor using HIGEE technology and is characterized by a rotor consisting of a stationary disc fixed with stationary baffles and a rotating disc fixed with rotating baffles. A conventional rotor (RotorⅠ) and a rotor equipped with shorter stationary baffle (RotorⅡ) of RZB were used in the experiments,and the mass transfer performance and hydraulics of the proposed device were studied using ethanol-water and air-water systems at atmospheric pressure. The effects of stationary baffle on the mass transfer,pressure drop,and power consumption in the RZB were investigated. The experimental results indicated that stationary baffle can significantly intensify the mass transfer process,and the theoretical plate number of Rotor Ⅱ was about 50% lower in comparison with RotorⅠ. The mass transfer efficiency of RotorⅠ increased as rotational speed increased,and it was enhanced by 40% when rotational speed increased from 400 r/min to 1200 r/min. The mass transfer efficiency of RotorⅡ was not significantly affected by increasing rotational speed. Stationary baffle made the rotor of RZB have a higher pressure drop,and power consumption. The pressure drop and shaft power in RotorⅡ was 20%-50%,60%-80%that of RotorⅠ,respectively.