热传递心输出量测量的数值研究

P. Fotheringham, A. Gourlay, S. McKee, S. Andrews
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引用次数: 2

摘要

心输出量的测量通常使用基于热膜风速测量的技术进行研究。在这里,我们讨论了一种改进的热膜风速计,它涉及一个圆柱形加热元件安装在一个典型的Swan-Ganz导管的表面上。与传统的热稀释相比,本文讨论的方法具有允许连续监测心输出量的潜力。本文证明,在设备的功率输入之间有一个简单的近似关系,以保持温度高于血热一度的心脏输出量。由于传热与流体流动不耦合,建立了圆柱形导管(带加热元件)同心放置于刚性圆柱形动脉内的传热数值模型。数值结果得到了广泛的选择流型,包括实验数据。结果表明,心输出量/功率输入关系在流量分布和系统参数变化方面是非常稳健的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A numerical investigation of heat transfer cardiac output measurements
Measurement of cardiac output is often investigated using a technique based on hot-film anemometry. Here, we discuss a modification to hot-film anemometry, which involves a cylindrical heating element mounted flush on the surface of a typical Swan-Ganz catheter. In contrast to traditional thermodilution, the method discussed here has the potential to allow continuous monitoring of cardiac output. This paper demonstrates that there is a simple approximate relationship between the power input to the device to maintain a temperature of one degree above blood heat and cardiac output. Since, the heat transfer and the fluid flow decouple, a numerical model of the heat transfer of a cylindrical catheter (with heating element) sitting concentrically within a rigid cylindrical artery is developed. Numerical results were obtained for a wide selection of flow profiles, including experimental data. The results indicate that the cardiac output/power input relationship is extremely robust with respect to flow profile and system parameter variation.
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