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一种用于新生儿通气应用热湿控制的基于晶体管的气流传感器。

A transistor based air flow transducer for thermohygrometric control of neonatal ventilatory applications.

作者信息

Schena Emiliano, Silvestri Sergio

机构信息

Faculty of Biomedical Engineering, University Campus Bio-Medico, Via Alvaro del Portillo, 21-00128 Rome, Italy.

出版信息

Rev Sci Instrum. 2008 Oct;79(10):104301. doi: 10.1063/1.2999908.

Abstract

An air flow transducer for controlling heated humidifiers used in neonatal artificial ventilation, suitable for in-line application in monopatient breathing circuits, is described here. The sensor is built with two nominally identical bipolar junction transistors, with different packages, as hot elements operated at a regulated constant voltage. The operation principle is based on the differential convective heat power exchanged with the fluid stream due to the different thermal conductivities of the transistors' packages. The underlying theory is described in mathematical terms and the theoretical model is validated with experimental data in the mass flow rate range from 4 to 215 mg s(-1). The nonlinear behavior allows sensitivities from -5 mV/(mg s(-1)) at flow rates in the range of 4-130 mg s(-1) to -2 mV/(mg s(-1)) at higher flow rates up to 215 mg s(-1). The linear range extends from 40 to 130 mg s(-1), with constant sensitivity equal to -5 mV/(mg s(-1)). The differential nature of the output allows to obtain repeatabilities in the order of 2% for fluid temperatures between 20 and 25 degrees C and of about 6% if the fluid temperature lies in the range of 15-35 degrees C. The relatively long time constant, in the order of 20+/-5 s, makes the sensor suitable for average flow rate measurements. Using the sensor's output as a control variable of a heated humidifier for artificial ventilation, the relative humidity of gases varies by only 20% in the flow rate range of the sensor (from 95% to 75%), whereas the same parameter shows a variation of about 40% (from 100% to 60%) with the same humidifier without flow control.

摘要

本文介绍了一种用于控制新生儿人工通气中使用的加热加湿器的气流传感器,适用于单患者呼吸回路中的在线应用。该传感器由两个标称相同但封装不同的双极结型晶体管构成,作为在稳定恒压下工作的热元件。其工作原理基于由于晶体管封装的热导率不同而与流体流交换的差分对流热功率。从数学角度描述了基础理论,并用质量流量范围为4至215 mg s(-1)的实验数据对理论模型进行了验证。非线性行为使得灵敏度在4 - 130 mg s(-1)流量范围内为 - 5 mV/(mg s(-1)),在高达215 mg s(-1)的较高流量下为 - 2 mV/(mg s(-1))。线性范围从40至130 mg s(-1),恒定灵敏度等于 - 5 mV/(mg s(-1))。输出的差分特性使得在20至25摄氏度的流体温度下可获得约2%的重复性,而如果流体温度在15 - 35摄氏度范围内,则重复性约为6%。相对较长的时间常数,约为20±5 s,使得该传感器适用于平均流量测量。将传感器的输出用作人工通气加热加湿器的控制变量时,在传感器的流量范围内(从95%至75%),气体的相对湿度仅变化20%,而对于没有流量控制的同一加湿器,相同参数显示变化约40%(从100%至60%)。

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