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首页> 外文期刊>International Journal of Thermophysics >A New Primary Dew-Point Generator at TUBITAK UME
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A New Primary Dew-Point Generator at TUBITAK UME

机译:Tubitak Ume的新型初级露点发生器

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An implementation of a new low-range primary humidity generator as a part of an international collaboration between TUBITAK UME and VTT MIKES was initiated as a EURAMET Project Number 1259. The dew-point generator was designed and constructed within the scope of the cooperation between TUBITAK UME and VTT MIKES in order to extend the dew-point temperature measurement capability of Humidity Laboratory of TUBITAK UME down to -80 degrees C. The system was thoroughly characterized and validated at TUBITAK UME to support the evidence for dew-point temperature uncertainties. The new generator has a capability of operating in the range of -80 degrees C to + 10 degrees C, but at the moment, it was characterized down to -60 degrees C. The core of the generator system is a saturator which is fully immersed in a liquid bath. Dry air is supplied to the saturator through a temperature-controlled pre-saturator. The operation of the system is based on the single-pressure generation method with a single pass, i.e., the dew-point temperature is only controlled by the saturator temperature, and the humidity-controlled air is not returned to the system after leaving of the saturator. The metrological performance of the saturator was investigated thoroughly at both National Metrology Institutes. The pre-saturator was also tested using a thermostatic bath at VTT MIKES prior to sending them to TUBITAK UME. This paper describes the principle and design of the generator in detail. The dew-point measurement system and the corresponding uncertainty analysis of the dew-point temperature scale realized with the generator in the range from - 60 degrees C to 10 degrees C is also presented.
机译:作为一部分是大桶ume和VTT MIKES之间的国际合作的新的低级初级湿度发生器的实施被启动为EURAMET项目编号1259.露点发生器是在大桶之间的合作范围内设计和构建的UME和VTT MIKES为了扩展Tubitak UME湿度实验室的露点温度测量能力下降至-80摄氏度。该系统在Tubitak Ume提供了彻底的特征和验证,以支持露点温度不确定性的证据。新发生器的能力在-80摄氏度至+ 10摄氏度的范围内工作,但目前其特征在于-60℃。发电机系统的核心是完全浸没的饱和器在液体浴中。干燥空气通过温度控制的预饱和器供应到饱和器。系统的操作基于单个通行的单压产生方法,即,露点温度仅被饱和温度控制,并且在离开后,湿度控制的空气不会返回到系统。饱和炉。在国家计量机构彻底研究了饱和器的计量性能。还在将它们发送到Tubitak Ume之前在VTT MIKES的恒温浴中测试预饱和器。本文详细介绍了发电机的原理和设计。还介绍了用发电机实现的露点测量系统和对露点温度级的相应不确定性分析在-60℃至10摄氏度范围内。

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