...
首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Improving the dynamic performance of continuous-flow mixing of pseudoplastic fluids possessing yield stress using Maxblend impeller
【24h】

Improving the dynamic performance of continuous-flow mixing of pseudoplastic fluids possessing yield stress using Maxblend impeller

机译:使用Maxblend叶轮改善具有屈服应力的假塑性流体连续流混合的动态性能

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The strategic approach of this article is to characterize the continuous-flow mixing of pseudoplastic fluids possessing yield stress in a stirred reactor with the Maxblend impeller. Dynamic experiments were carried out through the frequency-modulated random binary input of a brine solution to determine the extent of non-ideal flows. Mixing quality was determined on the basis of the extent of channeling and fully mixed volume. The effects of important parameters such as impeller speed (25-500rpm), absence of baffles, fluid rheology (0.5-1.5%), fluid flow rate (3.20-14.17 Lmin~(-1)), and the locations of inlet/outlet on the dynamic performance of the continuous-flow mixing vessel were explored. The performance of the Maxblend impeller was then compared to the performances of various types of impellers such as close-clearance (an anchor), axial-flow (a Lightnin A320), and radial-flow (a Scaba 6SRGT) impellers. It was found when the channeling approached zero and the fully mixed volume approached the total fluid volume in the vessel, the power drawn by the A320 impeller and the Scaba impeller were about 2.9 and 4.3 times greater than that of the Maxblend impeller. Thus, the Maxblend impeller was able to drastically improve the performance of continuous-flow mixing with huge power savings. The mixing quality was further improved by optimizing the impeller speed, decreasing the fluid flow rate, decreasing the fluid concentration, and using bottom inlet- top outlet configuration. The flow non-ideality of the mixing system increased in the absence of the baffles. Thus, better mixing quality and more energy savings can be achieved by employing the findings of this study.
机译:本文的策略性方法是在具有Maxblend叶轮的搅拌反应器中表征具有屈服应力的假塑性流体的连续流动混合。通过对盐水溶液进行频率调制的随机二进制输入进行动态实验,以确定非理想流动的程度。混合质量是根据通道的程度和完全混合的体积确定的。叶轮转速(25-500rpm),无挡板,流体流变性(0.5-1.5%),流体流速(3.20-14.17 Lmin〜(-1))和进/出口位置等重要参数的影响对连续流混合容器的动态性能进行了研究。然后将Maxblend叶轮的性能与各种类型的叶轮的性能进行了比较,例如紧密间隙(锚),轴向流(Lightnin A320)和径向流(Scaba 6SRGT)叶轮。发现当通道接近零且完全混合的体积接近容器中的总流体量时,A320叶轮和Scaba叶轮所消耗的功率分别是Maxblend叶轮的2.9和4.3倍。因此,Maxblend叶轮能够显着提高连续流混合的性能,并节省大量电能。通过优化叶轮速度,降低流体流速,降低流体浓度并使用底部入口-顶部出口配置,可以进一步提高混合质量。在没有挡板的情况下,混合系统的流动非理想性增加。因此,通过采用本研究的结果,可以实现更好的混合质量和更多的节能效果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号