流动液体介质状态控制系统,用于制造过程的自动调节

V. Davydov, V. Rud, T. I. Davydova
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引用次数: 0

摘要

本文研究了流体介质状态最有效的非接触控制方法。在使用过程中,用于确定这种或那种方法的有效性的必要条件和要求被标记。确定了在各种工业过程、农产品加工企业、各种装置的冷却系统中使用这些方法的可能性。展示了它们同时用于监测各种困难情况下环境状态的可能性。对于每种方法,给出了一种介质参数测量方案。根据这些参数,在自动模式下对流场进行介质状态控制。确定了这些方法在不同设备运行条件下的应用特点。考虑到对当前环境参数的要求,这些参数定义了这些调查方法可能使用的边界。确定了改变流动介质电流温度的边界,在该边界内携带测量装置,误差不超过1%。确定了应用这些装置控制流动介质的管道参数。给出了不同介质的实验研究结果。将所考虑的几种非接触式测量装置对流动介质的研究结果与其他仪表的数据进行了比较。确定了今后改进所用仪器计量特性和扩大其应用范围的方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
System of flowing liquid medium condition control for automatic regulation of manufacturing process
The paper considers the most effective non-contact control methods of the liquid mediums condition in the flowing stream. The necessary conditions and requirements that allow establishing how effective this or that method of during use are marked. The possibilities of using these methods in various industrial processes, processing enterprises of agricultural products, cooling systems of various installations are determined. The possibility of their simultaneous use for monitoring the state of the environment in various difficult situations are showed. For each of these methods a scheme of the medium parameters measuring are shown. According to these parameters the medium state control of the flowing stream was carried out in auto mode. The peculiarities of the application of these methods in different operating conditions of equipment are determined. The requirements for the parameters of current environments that are defining the boundaries of the possible use of these methods for investigations are considered. The border changing the current temperature of the flowing medium within which the measurement devices is carried with an error of no more than 1% are determined. The parameters of the pipelines in which to control the flowing medium can apply these devices are determined. The results of experimental researches of different mediums are presented. A comparison of the results of research of the flowing mediums, which is obtained of considered types of non-contact measuring devices with data from other meters are conducted. The further directions for improvements of metrological characteristics of the used devices and expanding of their application range are determined.
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