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High-temperature molten salt, with a temperature of 660 degrees. Its characteristics include a high temperature, high density, and viscosity that varies with temperature. The differential pressure method was rejected by the client, who stated that the differential pressure transmitters are at room temperature and therefore cannot be placed in the positive and negative pressure chambers. Are there any other methods? ? Long-term cooperation possible, QQ: 1908104947
High-temperature, high-viscosity solutions can be measured using differential pressure methods; wedge flow meters can be used to measure such media. Alternatively, external ultrasonic sensors, gear pumps, scrapers, and other devices can also be employed
I don’t think so; my master said that the differential pressure transmitter should be in an environment at room temperature, and it’s a problem when differential pressure enters the positive and negative pressure chambers
Your master said that a differential pressure gauge should be used for measurement, while wedge flow meters utilize dual flanges for measurement, so there is no issue of excessive temperature differences
The temperature is too high; even flow meters should be unable to measure it; P
This post was last edited by “Matchstick Seller of Girls” on May 27, 2022, at 19:41. I came across an ultrasonic vortex flowmeter online; I wonder if it’s actually being used in practice. I thought it might be possible to combine a non-contact flowmeter with a vortex flowmeter. This non-contact flowmeter could potentially be used alongside the currently existing contact-type flowmeters capable of measuring molten salts at such high temperatures
For such a special fluid, it is best to use a special flow meter, namely a radioisotope flow meter; it seems that the Lanzhou Institute of Automation used to have such meters.
It depends on the flow rate; split electric targets should be fine