Method of using a device for measuring the back pressure in chemical reactor tubes
View Patent ↗A device and method for measuring the back pressure in chemical reactor tubes includes many automated features. Inflatable tube seals may be automatically inflated. The device may measure several tubes at once. It may transmit data electronically to a remote computer for analysis and graphic display.
1. A method for monitoring the quality of catalyst loading of tubes in a chemical reactor containing a large number of tubes, comprising the steps of:
calibrating a first injector tube by inserting the injector tube into a calibration tube; sealing between the first injector tube and the calibration tube; injecting gas through the first injector tube into the calibration tube; measuring the back pressure for the calibration tube; and generating a first correction factor in order to standardize the measurement made by the first injector tube;
calibrating a second injector tube by inserting the second injector tube into a calibration tube; sealing between the second injector tube and the calibration tube; injecting gas through the second injector tube into the calibration tube; measuring the back pressure for the calibration tube; and generating a second correction factor in order to standardize the measurement made by the second injector tube;
using the first and second injector tubes to measure the back pressure in a plurality of chemical reactor tubes;
applying the first and second correction factors to standardize the respective back pressure measurements made using the first and second injector tubes;
electronically recording the back pressure measurements;
establishing a standard pressure;
comparing the back pressure measurements to the standard pressure to determine which measurements fail to meet the standard; and
generating a list identifying the tubes that fail to meet the standard.
2. A method for monitoring the quality of catalyst loading of tubes in a chemical reactor containing a large number of tubes as recited in claim 1 , and sorting the list based on the type of failure.
3. A method for monitoring the quality of catalyst loading of tubes in a chemical reactor containing a large number of tubes as recited in claim 1 , wherein the steps of comparing the back pressure measurements to the standard and generating the list are done by electronic means.
4. A method for monitoring the quality of catalyst loading of tubes in a chemical reactor containing a large number of tubes as recited in claim 3 , wherein the step of generating a list identifying the tubes that fail to meet the standard includes graphically displaying the layout of the reactor tubes in an electronic medium and using different colors on the graphic display to indicate which tubes meet the standard and which tubes fail to meet the standard.
5. A method for monitoring the quality of catalyst loading of tubes in a chemical reactor containing a large number of tubes as recited in claim 4 , wherein the step of comparing the back pressure measurements to the standard and generating the list are done in real time as the pressure measurements are being taken.