电热模拟器的相对评价替代婴儿孵化器环境。

Medical instrumentation Pub Date : 1988-02-01
J S Ultman, S Berman, P Kirlin, J M Vreslovic, C B Baer, K H Marks
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引用次数: 0

摘要

对直径10.9 cm的铜椭球进行电加热,模拟新生儿的显热传递。在三个商业孵化器中演示了使用该模拟器来确定平均辐射温度和对流换热系数:Isolette(型号C-86, Narco/Air Shields);Armstrong Care-ette(俄亥俄州医疗产品);和i.c.(大田)。这些环境治疗设备在保护婴儿免受辐射热损失方面的相对性能是通过平均辐射温度与培养箱空气温度的偏差来判断的,该偏差在32-36摄氏度之间变化,而I. C培养箱的辐射温度总是比空气温度低0.5摄氏度,Care-ette培养箱的辐射温度比空气温度低4.0-5.5摄氏度。Isolette显示的辐射温度比空气温度低2.7-4.7℃(去除内壁)和2.0-3.8℃(插入内壁)。从对流换热系数hv的大小来判断培养箱在防止对流热损失方面的相对性能。培养箱的hv = 4.52 W/m2/℃;卡瑞特,5.55 W/m2/℃;隔离液7.19 W/m2/℃(去除内壁)和6.23 W/m2/℃(插入内壁)。虽然椭球模拟器不是一个解剖学上正确的婴儿替代品,但它确实提供了一个可靠和方便的替代环境设备的稳态传热特性的比较。
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Electrically heated simulator for relative evaluation of alternative infant incubator environments.

A 10.9-cm diameter, copper ellipsoid was electrically heated to provide a simulation of sensible heat transfer from a newborn infant. The use of this simulator to determine mean radiant temperature and convective heat-transfer coefficient was demonstrated in three commercial incubators: the Isolette (Model C-86, Narco/Air Shields); the Armstrong Care-ette (Ohio Medical Products); and the I. C. (Ohmeda). The relative performance of these environmental therapeutic devices in shielding an infant against radiant heat loss was judged by the deviation of mean radiant temperature from incubator air temperature, which was varied from 32-36 degrees C. Whereas the I. C. incubator exhibited a radiant temperature always 0.5 degrees C less than air temperature, the Care-ette incubator showed radiant temperatures of 4.0-5.5 degrees C below air temperature, and the Isolette displayed radiant temperatures of 2.7-4.7 degrees C (inner wall removed) and 2.0-3.8 degrees C (inner wall inserted) below air temperature. The relative performance of the incubators in preventing convective heat loss was judged from the magnitude of the convective heat-transfer coefficient, hv. The I. C. incubator had an hv = 4.52 W/m2/degrees C; the Care-ette, 5.55 W/m2/degrees C; and the Isolette 7.19 W/m2/degrees C (inner wall removed) and 6.23 W/m2/degrees C (inner wall inserted). Although an ellipsoid simulator is not an anatomically correct substitute for an infant, it does provide a reliable and convenient comparison of steady-state heat transfer characteristics of alternative environmental devices.

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