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THE COMPARISON OF THE TRANSDUCER CIRCUITS FOR THE TWO-PHASE FLOW CONDUCTIVITY PROBE

机译:两相流电导率传感器电路的比较

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The void fraction of two-phase flow can be measured by conductivity probe due to the difference of conductivity between air and water. It's difficult to detect the conductivity of the probe directly so transducer circuits should be used to transfer the conductivity to voltage, and the voltage can be sampled by DAQ device. Two transducer circuits are designed for two-phase flow double sensor conductivity probe. One is a simple DC circuit, it's made up of a constant DC voltage and a resistance, and the resistance is cascaded with the probe. Voltage drop across the resistance is depend on conductivity of surrounding media of probe tip. The other is AC circuit that utilizes a DDS (Direct Digital Synthesizer) as an excitation power supply which links to a transimpedance amplifier through the probe. The current that flow to the amplifier would change according to the surrounding's medium of the probe. The transimpedance amplifier transfers the current to voltage. Then we use AD8302, an amplitude detection chip, to detect the amplitude of the s output. The experiments show that the DC circuit has a higher SNC (signal to noise ratio) and shorter responding time. However, the needle of probe is covered with electrochemical corrosion products and its performance degrades significantly when DC circuit is used and the probe is immersed in 80 °C hot water for 8 hours. This kind of phenomenon is not appeared on the probe when DDS-based circuit is used. The result of the experiment verifies the SNC and responding time of DDS-based circuit is approximately equal to that of the DC circuit.
机译:由于空气和水之间的电导率不同,可以用电导率探针测量两相流的空隙率。直接检测探针的电导率很困难,因此应使用换能器电路将电导率转换为电压,并且可以通过DAQ设备对电压进行采样。两个换能器电路设计用于两相流量双传感器电导率探头。一个是一个简单的直流电路,它由恒定的直流电压和一个电阻组成,并且电阻与探头级联。电阻两端的电压降取决于探针周围介质的电导率。另一个是交流电路,它利用DDS(直接数字合成器)作为激励电源,并通过探头链接到跨阻放大器。流向放大器的电流将根据探头周围的介质而变化。跨阻放大器将电流转换为电压。然后,我们使用幅度检测芯片AD8302来检测s输出的幅度。实验表明,直流电路具有较高的SNC(信噪比)和较短的响应时间。但是,探针的针头上覆盖有电化学腐蚀产物,当使用直流电路并将探针浸入80°C的热水中8个小时后,其性能会大大降低。当使用基于DDS的电路时,这种现象不会出现在探头上。实验结果验证了基于DDS的电路的SNC和响应时间大约等于DC电路的响应时间。

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