首页> 外文学位 >Methodologie de design de turbomachines de petite taille appliquee au developpement d'une pompe d'assistance cardiaque (French text).
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Methodologie de design de turbomachines de petite taille appliquee au developpement d'une pompe d'assistance cardiaque (French text).

机译:小型涡轮机械的设计方法应用于心脏辅助泵的开发(法文)。

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摘要

This thesis presents a new design methodology for small size turbomachinery, applied to the development of a ventricular assist blood pump (VAD).; A review of mechanical circulatory support systems allows to identify the suitable one for our application, which is a rotary pump with continuous flow. The choice of a mixed topology for the latter is given with the assistance of the characteristic parameters of pumps, Ns and Ds, evaluated at the point of operation, that is 5 l/min against 100 mmHg.; The rotor produces the sought effect of pumping, it is thus significant and we make an exhaustive analysis of it in order to understand it better. With this intention, the geometrical parameters of the rotor are studied through variations, determined by a Design of Experiment.; The implementation of each experiment follows a well defined procedure of resolution.; Then we apply this methodology to the conception of the prototype V of Cardianove Inc. It is noted that this prototype presents a mixed topology. The rotor design depends on nondimensional geometrical parameters: D1/D2, L1/D2, h1/D2, i2/D2, αinlet, αoutlet inlet. The execution of the DOE through the use of Cordier algorithm, makes it possible to generate response surfaces for three response variables: the hydraulic efficiency η, the rotation speed N and the diameter D. One then seeks the optimum parameter configuration in order to obtain a pump maximizing simultaneously the efficiency and the diameter while minimizing the rotation speed. The responses are strongly influenced by the following factors: α outletinlet, h1/D2, L1/D2 and αinlet. One can thus conclude that the factors D1/D2 and i2/D2 have little influence on the process. The optimal geometry is validated using numerical simulations, then again subjected to the Cordier algorithm in order to have a pump operating with the best performance at the nominal point of operation. One thus obtains a pump of internal diameter of 8.06 mm having an efficiency of 37.5%, at a rotation speed of 1200 rad/s. We conclude with the methodology validation through experimental inquiries on the hydraulic and hemolysis performance of the prototype V. The hydraulic performance behaves as well as numerically, while the hemolysis index obtained suggests the need of design modifications in order to improve it. (Abstract shortened by UMI.)
机译:本文提出了一种用于小型涡轮机械的新设计方法,该方法应用于心室辅助血泵(VAD)的开发。回顾一下机械循环支持系统,可以确定适合我们应用的系统,即具有连续流量的旋转泵。后者的混合拓扑的选择是借助泵的特性参数Ns和Ds在运行时评估得出的,即相对于100 mmHg为5 l / min。转子产生了所需的泵送效果,因此很重要,我们对其进行了详尽的分析,以便更好地理解它。为此,通过实验设计确定的变化来研究转子的几何参数。每个实验的实施均遵循定义明确的解决程序。然后,我们将此方法应用于Cardianove Inc.原型V的概念。请注意,该原型呈现了混合拓扑。转子设计取决于无量纲几何参数:D1 / D2,L1 / D2,h1 / D2,i2 / D2,α入口,α出口入口。通过使用Cordier算法执行DOE,可以生成三个响应变量的响应面:液压效率η,转速N和直径D。然后人们寻求最佳参数配置以获得一个泵同时使效率和直径最大化,同时使转速最小。响应受以下因素的强烈影响:α出口入口,h1 / D2,L1 / D2和α入口。因此可以得出结论,因素D1 / D2和i2 / D2对过程的影响很小。使用数值模拟验证最佳几何形状,然后再次进行Cordier算法,以使泵在标称运行点上以最佳性能运行。因此,人们以1200 rad / s的转速获得了内径为8.06 mm,效率为37.5%的泵。我们通过对原型V的水力和溶血性能进行实验性查询来对方法学进行验证,得出结论。水力性能的表现与数值一样好,而获得的溶血指数表明需要进行设计更改以改善它。 (摘要由UMI缩短。)

著录项

  • 作者

    Farinas, Marie-Isabelle.;

  • 作者单位

    Ecole Polytechnique, Montreal (Canada).;

  • 授予单位 Ecole Polytechnique, Montreal (Canada).;
  • 学科 Engineering Mechanical.; Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 208 p.
  • 总页数 208
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;生物医学工程;
  • 关键词

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