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作 者:王灵秀[1] 张仁元[1] 陈观生[1] 李石栋[1]
机构地区:[1]广东工业大学材料与能源学院,广州510090
出 处:《功能材料与器件学报》2008年第6期1049-1053,共5页Journal of Functional Materials and Devices
基 金:国家自然科学基金(No:50576014):旋流式微混合器内旋流流动及相变过程研究
摘 要:本文以三层聚甲基丙稀酸甲脂材料黏合制作一种双通道旋流式微混合器。实验探讨了相同直径不同深度的微混合器中,不同进口流速下0.05%罗丹明B溶液和去离子水两流体的混合特性。利用带高分辨数字摄像机的体视显微镜观察并记录混合过程,Image J软件进行混合图像处理,分析流体从进口到出口沿半径方向上浓度变化趋势,比较各类情况下的混合效益。结果表明,随着进口速率和混合腔深度的增加,混合效益得到提高,混合腔内的旋转绕流有利于增加流体间的界面,缩减流层厚度,改进混合质量。The two- channel vortex micromixer was fabricated by three PMMA plates which were bonded together by adhesive. Rhodamine B solution with 0.05 percent and de - ionized water were employed in experiments. The mixing behaviors of micromixer at three different depths and three different flow rates were investigated. The mixing processes were inspected and recorded through stereomicroscope with CCD. Image J software was implemented to analyze the concentration change trend from inlet to outlet in different conditions. Experimental results revealed that the mixing efficiency was significantly improved with the increase of inlet velocity and mixer depth. The results also conformed that swirling flows in vortex micromixer could increase contacting area and reduce flow layer thickness between two different fluids, and then enhanced the mixing performance.
分 类 号:TN303[电子电信—物理电子学]
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