首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >THREE DIMENSIONAL DYNAMIC ANALYSIS OF A PIEZOELECTRIC VALVELESS MICROPUMP: EFFECTS OF WORKING FLUID
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THREE DIMENSIONAL DYNAMIC ANALYSIS OF A PIEZOELECTRIC VALVELESS MICROPUMP: EFFECTS OF WORKING FLUID

机译:压电无阀微泵的三维动态分析:工作流体的影响

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Coupled structural and fluid flow analysis ot a piezoelectric valveless micropump is carried out for liquid transport applications. The valveless micropump consists of trapezoidal prism inlet/outlet elements; the pump chamber, a thin structural layer (Pyrex glass) and a piezoelectric element (PZT-5A), as the actuator. Two-way coupling of forces and displacements between the solid and the liquid domains in the systems are considered where actuator deflection and motion causes fluid flow and vice-versa. Flow contraction and expansion (through the trapezoidal prism inlet and outlet respectively) generates net fluid flow. The pressure, velocity, flow rate and pump membrane deflections of the micropump are investigated for six different working fluids (acetone, methanol, ethanol, water, and two hypothetical fluids). For the compressible flow formulation, an isothermal equation of state for the working fluid is employed. Three-dimensional governing equations for the flow fields and the structural-piezoelectric bi-layer membrane motions are considered. Comparison of the pumping characteristics of the micropumps operating with different working fluids can be utilized to optimize the design of MEMS based micropumps in drug delivery and biomedical applications.
机译:耦合结构和流体流动分析OT压电型无阀门微泵用于液体运输应用。 Valveless Micropump由梯形棱镜入口/出口元件组成;作为致动器,泵室,薄的结构层(Pyrex玻璃)和压电元件(PZT-5A)。在系统中的固体和液体结构之间的力和位移的双向耦合被认为是致动器偏转和运动导致流体流动和反之亦然。流动收缩和膨胀(分别通过梯形棱镜入口和出口)产生净流体流动。研究了微泵的压力,速度,流速和泵膜偏转,用于六种不同的工作流体(丙酮,甲醇,乙醇,水和两个假想流体)。对于可压缩的流动制剂,采用用于工作流体的等温方程。考虑了流场的三维控制方程和结构压电双层膜运动。使用不同工作流体操作的微泵的泵送特性的比较可用于优化药物输送和生物医学应用中基于MEMS的微泵的设计。

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