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首页> 外文期刊>International Journal of Thermophysics >New Primary Dew-Point Generators at HMI/FSB-LPM in the Range from -70℃ to +60℃
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New Primary Dew-Point Generators at HMI/FSB-LPM in the Range from -70℃ to +60℃

机译:HMI / FSB-LPM上新型新型露点发生器,温度范围为-70℃至+ 60℃

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摘要

To extend the dew-point range and to improve the uncertainties of the humidity scale realization at HMI/FSB-LPM, new primary low- and high-range dewpoint generators were developed and implemented in cooperation with MIKES, in 2009 through EUROMET Project No. 912. The low-range saturator is designed for primary realization of the dew-point temperature scale from -70℃ to +5℃, while the high-range saturator covers the range from 1℃ to 60℃. The system is designed as a single-pressure, single-pass dew-point generator. MIKES designed and constructed both the saturators to be implemented in dew-point calibration systems at LPM. The LPM took care of purchasing and adapting liquid baths, of implementing the temperature and pressure measurement equipment appropriate for use in the systems, and development of gas preparation and flow control systems as well as of the computerbased automated data acquisition. The principle and the design of the generator are described in detail and schematically depicted. The tests were performed at MIKES to investigate how close both the saturators are to an ideal saturator. Results of the tests show that both the saturators are efficient enough for a primary realization of the dew-point temperature scale from -70℃ to +60℃, in the specified flow-rate ranges. The estimated standard uncertainties due to the non-ideal saturation efficiency are between 0.02℃ and 0.05℃.
机译:为了扩大露点范围并改善HMI / FSB-LPM上实现湿度标度的不确定性,2009年与MIKES合作开发并实施了新型初级低量程和高量程露点发生器,并通过EUROMET项目No. 912.低量程饱和器设计用于初步实现-70℃至+ 5℃的露点温度范围,而高量程饱和器的覆盖范围从1℃至60℃。该系统被设计为单压力,单通露点发生器。 MIKES设计和构造了两个饱和器,将在LPM的露点校准系统中实现。 LPM负责购买和改装液浴,实施适用于系统的温度和压力测量设备,开发气体制备和流量控制系统以及基于计算机的自动数据采集。详细描述了发电机的原理和设计并对其进行了示意性描述。测试是在MIKES进行的,旨在调查两个饱和器与理想饱和器的接近程度。测试结果表明,两个饱和器在指定的流量范围内足以有效实现-70℃至+ 60℃的露点温度标度。由于非理想的饱和效率,估计的标准不确定度在0.02℃至0.05℃之间。

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