激振电路是科里奥利质量流量计的重要组成部分。
The excitation circuit is one of the important parts of Coriolics mass flowmeters.
驱动系统是科里奥利质量流量计的重要组成部分之一。
The driving system is an important part of Coriolis mass flow meter.
研究基于正交解调的科里奥利质量流量计的信号处理方法。
A quadrature demodulation-based signal processing method of coriolis mass flowmeter is studied.
本论文给出了吉林油田扶余采油厂科里奥利质量流量计的现场测试结果。
This article gives the field testing results of coriolis mass flowmeter at Fuyu of Jilin Oil field.
基于DTFT递推算法,提出了一种计及负频率影响的科里奥利质量流量计信号处理方法。
A new signal processing method for Coriolis mass flowmeter is proposed, which is based on the recursive DTFT algorithm and considers the contribution of negative frequency.
科里奥利质量流量计的工作原理是流体作用于测量管产生一微弱力,该力的大小可反映质量流量的变化。
The operational principle of Coriolis mass flow meter is that fluid generates acting force to the measuring tube, and the size of this acting force reflects the change of mass flow.
以直管科里奥利质量流量计为研究对象,给出被测流体脉动时测量管的振动微分方程,讨论了方程的求解过程。
The vibrational equation of the tube was given with the straight tube Coriolis mass flow meter as the investigated object, and the solving process is discussed.
对于两种进口质量流量计的使用技术和工作性能进行了介绍,并将国产和进口同类型科里奥利质量流量计进行了对比测试。
The operation technology and performance of two imported mass flowmeters were discussed, and domestic and imported Coriolis mass flowmeters of the same type were tested contrastively.
实际的谐振式科里奥利质量流量计工作过程中,普遍存在传感器的外部和内部耦合振动现象,直接影响流量计的稳定性和测量精度。
Actually the external coupling and the internal coupling vibration are widely existent, the operating stability and the measurement precision are directly influenced.
科里奥利质量流量计(CMF)是利用科里奥利原理实现的一种高精度、低机械损耗的直接式质量流量计,变送器是CMF重要的组成部分。
Coriolis quality flow meter (CMF) which categorized in direct-style quality flow meter utilizes Coriolis principle to realize its high degree of accuracy and low degree of mechanical loss.
科里奥利质量流量计(CMF)是利用科里奥利原理实现的一种高精度、低机械损耗的直接式质量流量计,变送器是CMF重要的组成部分。
Coriolis quality flow meter (CMF) which categorized in direct-style quality flow meter utilizes Coriolis principle to realize its high degree of accuracy and low degree of mechanical loss.
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