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Theoretical and Experimental Reflection Coefficients in Flexible Tubes as a Function of the Mach Number

机译:柔性管中的理论和实验反射系数作为马赫数的函数

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The standard formulation of Wave Intensity Analysis (WIA) assumes that the flow velocity (U) in the conduit is $ll$ the velocity of propagation of waves (c) in the system, and Mach number, M=U/c, is negligible. However, in the large conduit arteries, U is relatively high due to ventricular contraction and c is relatively low due to the large compliance; thus M is > 0, and may not be ignored. Therefore, the aim of this study is to identify experimentally the relationship between M and the reflection coefficient in vitro. Combinations of flexible tubes, of 2 m in length with isotropic and uniform circular cross sectional area along their longitudinal axes, were used to present mother and daughter tubes to produce a range of reflection coefficients. An approximately semi-sinusoidal pulse was generated at the inlet of the mother tube using a syringe pump, first in the condition of initial velocity, U0=0, and when U0>0 with steady flow to superimpose the pulse. Pressure (P) and Velocity (U) were measured in the mother tube, wave speed was determined using the foot to foot and PU-loops methods. The theoretical reflection coefficient, Rt at M=0, has been compared to the experimental reflection coefficient, R at M>0, which was determined as dP-/dP+ as calculated using WIA. The function R(M) changes significantly with the geometrical and mechanical features of the connected tubes. In our experiments, R increased significantly with small values of M In the range of M=0-0.02, R increased by 4-36%. Therefore, we conclude that M significantly affects the magnitude of reflections.
机译:波强度分析(WIA)的标准制剂假定在导管中的流速(U)是 $ LL $ 在系统波(c)中的传播,和马赫数,M = U / C的速度,是微不足道的。然而,在大的动脉导管,U是心室收缩相对高的由于和c是大的合规性相对低的因;从而M是> 0,并且可以不被忽略。因此,本研究的目的是通过实验确定M和体外的反射系数之间的关系。柔性管的组合中,采用在沿着它们的纵向轴线各向同性的均匀的圆形横截面区域长度2米,分别用于本母女管以产生一系列反射系数。使用注射泵在母管的入口产生大致半正弦脉冲,首先在初始速度,U的条件 0 = 0,并且当U 0 > 0稳流叠加的脉冲。压力(P)和速度(U)在母管进行测定,波使用脚到脚测定速度和PU-循环方法。理论反射系数,R T 在M = 0时,相比已经实验反射系数,R在M> 0,这被确定为DP- / DP +如使用WIA计算。函数R(M)与连接管的几何和机械特征显著变化。在我们的实验中,R与M的小值。在M = 0-0.02的范围显著增加,R增加了4-36%。因此,我们得出结论的M显著影响反射的幅度。

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