首页> 外国专利> KORIOLISOV MASSIVE FLOW METER, METHOD FOR MEASURING MASS CONSUMPTION FLOWING IN MEDIA PIPELINE, APPLICATION OF MASS FLOW METER AND METHOD FOR MEASURING MASS CONSUMPTION IN MEDIA PIPING

KORIOLISOV MASSIVE FLOW METER, METHOD FOR MEASURING MASS CONSUMPTION FLOWING IN MEDIA PIPELINE, APPLICATION OF MASS FLOW METER AND METHOD FOR MEASURING MASS CONSUMPTION IN MEDIA PIPING

机译:克罗列索夫质量流量计,测量介质管道中质量流量的方法,质量流量计的应用和介质管道中质量消耗的方法

摘要

The invention relates to a Coriolis mass flowmeter comprising a vibration-type measuring sensor (1) comprising at least one measuring tube (10) through which a medium can flow during operation. During operation, the measuring tube moves by mechanical vibrations, especially bending vibrations, by means of an exciter arrangement (40). The Coriolis mass flowmeter also comprises a sensor arrangement (50) for generating vibration measuring signals (sl, s2) representing inlet-side and outlet-side vibrations of the measuring tube (10). Flowmeter electronics (2) controlling the exciter arrangement generate an intermediate value (X'm) which is derived from the vibration measuring signals (s1, s2) and represents an uncorrected mass flow, and an exciter current (iexc) driving the exciter arrangement. An intermediate value (X2) is derived from the exciter current and/or from part of the exciter current (iexc), said value corresponding to a dampening of the vibrations of the measuring tube (11), dependent on an apparent viscosity and/or a viscosity-density product of the medium guided in the measuring tube (11). Furthermore, a correction value (XK) for the intermediate value (X'm) is generated using the intermediate value (X2) and a viscosity measuring value (Xeta) that is determined previously or during operation and corresponds to a viscosity of the medium guided in the measuring tube and/or a pre-determined reference viscosity. On the basis of the intermediate value (X'm) and the correction value (XK), the flowmeter electronics can then generate an accurate mass flow measuring value (Xm).
机译:本发明涉及一种科里奥利质量流量计,该科里奥利质量流量计包括振动型测量传感器(1),该振动型测量传感器包括至少一个测量管(10),在运行过程中介质可以流过该测量管。在运行中,测量管借助于激励器装置(40)通过机械振动,特别是弯曲振动运动。科里奥利质量流量计还包括传感器装置(50),用于产生表示测量管(10)的入口侧和出口侧振动的振动测量信号(s1,s2)。控制激振器装置的流量计电子装置(2)产生一个中间值(X'm),该中间值从振动测量信号(s1,s2)得出并代表未校正的质量流量,并产生一个驱动激振器装置的激振器电流(iexc)。中间值(X2)从励磁电流和/或从励磁电流的一部分(iexc)得出,所述值对应于视在表观的粘度和/或衰减测量管(11)的振动。在测量管(11)中引导的介质的粘度密度乘积。此外,使用中间值(X2)和粘度测量值(Xeta)生成中间值(X'm)的校正值(XK),该粘度测量值(Xeta)对应于所引导介质的粘度在测量管中的粘度和/或预定的参考粘度。然后,基于中间值(X'm)和校正值(XK),流量计电子设备可以生成准确的质量流量测量值(Xm)。

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