Elad D, Sahar M, Avidor J M, Einav S
Biomedical Engineering Program, Faculty of Engineering, Tel Aviv University, Israel.
J Biomech Eng. 1992 Feb;114(1):84-91. doi: 10.1115/1.2895454.
Compliant tubes attain a complex three-dimensional geometry when the external pressure exceeds the internal pressure and the tube is partially collapsed. A new technique for remote measurement of dynamic surfaces was applied to classical experiments with collapsible tubes. This work presents measurements of the three-dimensional structure of the tube as well as pressure and flow measurements during static loading and during steady-state fluid flow. Results are shown for two tubes of the same material and internal diameter but with different wall thicknesses. The measured tube laws compare well with previously published data and suggest the possible existence of a similarity tube law. The steady flow measurements did not compare well with the one-dimensional theoretical predictions.
当外部压力超过内部压力且管子部分塌陷时,柔顺管会呈现出复杂的三维几何形状。一种用于动态表面远程测量的新技术被应用于可塌陷管的经典实验。这项工作展示了管子三维结构的测量结果,以及静态加载和稳态流体流动过程中的压力和流量测量结果。给出了两根由相同材料和内径但壁厚不同的管子的结果。测量得到的管子定律与先前发表的数据吻合良好,并表明可能存在相似的管子定律。稳态流动测量结果与一维理论预测结果不太吻合。