Gas-liquid two-phase flow phase holdup and separate phase flow rate detection device and detection method
A flow detection device, gas-liquid two-phase flow technology, applied in the direction of volume flow measurement device, measurement device, liquid/fluid solid measurement, etc. The problems have been solved well to achieve the effect of realizing online monitoring and reducing the impact
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Embodiment 1
[0049] Embodiment 1, a gas-liquid two-phase flow phase holdup and phase separation flow detection device.
[0050] Such as figure 1 As shown, the gas-liquid two-phase flow phase holdup and phase separation flow detection device provided by the present invention specifically includes an outer tube 1, an inner tube 2, an LCR tester, a differential pressure transmitter, a data acquisition unit and a data processing unit.
[0051] The outer tube 1 is a hollow round straight tube structure; the inner tube 2 passes through the inner cavity of the outer tube 1, and the axis line of the inner tube 2 coincides with the axis line of the outer tube 1; the length of the inner tube 2 is longer than the outer tube 1, and the two ends of the inner tube 2 respectively extend from the two ends of the outer tube 1. The outer diameter of the inner tube 2 is smaller than the inner diameter of the outer tube 1, so that an annular cavity is formed between the outer side wall of the inner tube 2 and the ...
Embodiment 2
[0058] Embodiment 2, a method for detecting the phase holdup and the split-phase flow of a gas-liquid two-phase flow.
[0059] Such as figure 1 As shown, the gas-liquid two-phase flow phase holdup and phase separation flow detection method provided by the present invention includes the following steps:
[0060] a. Set the inner tube 2 in the outer tube 1. The outer tube 1 is a hollow round straight tube structure, the inner tube 2 is placed in the outer tube 1, the length of the inner tube 2 is greater than the length of the outer tube 1, and the two ends of the inner tube 2 respectively extend from the two ends of the outer tube 1. Out; the axis of the inner tube 2 coincides with the axis of the outer tube 1. The inner tube 2 includes a barrier zone in the middle that does not allow gas-liquid two-phase flow and a flow zone at both ends that allows gas-liquid two-phase flow. The parts where the two flow zones and the barrier zone are connected are located in the outer tube 1 and ...
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