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Evaluation of heat transfer coefficient of tungsten filaments at low pressures and high temperatures

机译:低压高温下钨丝的传热系数评估

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摘要

The paper presents an experimental method for the evaluation of the heat transfer coefficient of tungsten filaments at low pressures and high temperatures. For this purpose an electrode of a T5 fluorescent lamp was tested under low pressures with simultaneous heating in order to simulate the starting conditions in the lamp. It was placed in a sealed vessel in which the pressure was varied from 1 kM (kilo micron) to 760 kM. The voltage applied to the electrode was in the order of the filament's voltage of the lamp at the normal operation with the ballast during the preheating process. The operating frequency ranged from DC to 50 kHz. The experiment targeted on estimating the temperature of the electrode at the end of the first and the ninth second after initiating the heating process. Next, the heat transfer coefficient was calculated at the specific experimental conditions. A mathematical model based on the results was developed that estimates the heat transfer coefficient. The experiments under different pressures confirm that the filament's temperature strongly depends on the pressure.
机译:本文提出了一种在低压和高温下评估钨丝传热系数的实验方法。为此目的,在低压下同时加热测试T5荧光灯的电极,以模拟灯的启动条件。将其置于压力从1kM(千微米)变化至760kM的密封容器中。在预热过程中,镇流器正常工作时,施加在电极上的电压约为灯丝的灯丝电压。工作频率范围为DC至50 kHz。该实验的目的是估计在开始加热过程后第一和第九秒结束时电极的温度。接下来,在特定的实验条件下计算传热系数。建立了基于结果的数学模型,该模型估计了传热系数。在不同压力下进行的实验证实,灯丝的温度很大程度上取决于压力。

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