Aerosol concentration sensor calibration device
An aerosol concentration sensor calibration device includes a mixing column, a sensor, and a collection vessel. The mixing column extends in a vertical orientation between an inlet at a bottom of the mixing column and an outlet at a top of the mixing column, the mixing column configured to receive a mixture of a powder and a compressed gas at the inlet. The sensor is disposed in the mixing column and configured to measure the concentration of the powder in the mixing column. The collection vessel has an inlet fluidly coupled to the outlet of the mixing column. The collection vessel is configured to collect the powder received from the mixing column.
1 . An aerosol concentration sensor calibration device comprising:
a mixing column extending in a vertical orientation with respect to gravity from an inlet at a bottom of the mixing column and an outlet at a top of the mixing column, the mixing column configured to receive a mixture of a powder and a flow of compressed gas at the inlet, wherein the powder is aerosolized in the flow of compressed gas;
a sensor disposed in the mixing column adjacent to the outlet of the mixing column and configured to measure an aerosolized concentration of the powder within the flow of the compressed gas, in the mixing column; and
a collection vessel having an inlet fluidly coupled to the outlet of the mixing column, the collection vessel configured to collect the powder exiting the mixing column at the outlet;
wherein the sensor is further configured to be adjusted as needed to compensate for any difference between the aerosolized concentration of the powder measured by the sensor and an average aerosolized concentration of the powder calculated based on a weight of powder collected in the collection vessel after delivery of the powder and the flow of compressed gas to the mixing column is terminated.
2 . The aerosol concentration sensor calibration device of claim 1 , wherein a section of the mixing column extending from the inlet to the sensor has a vertical length and a lateral width transverse to the length, such that a ratio of the length to the lateral width is greater than or equal to 10.
3 . The aerosol concentration sensor calibration device of claim 1 , wherein the collection vessel is non-destructively removably fastened to the mixing column.
4 . The aerosol concentration sensor calibration device of claim 3 , wherein the collection vessel has an outlet filter, the outlet filter configured to exhaust compressed gas received from the mixing column while retaining the powder in the collection vessel.
5 . The aerosol concentration sensor calibration device of claim 4 , and further comprising:
a compressed gas source for supplying the compressed gas to the mixing column; and
a powder vessel for supplying the powder to the mixing column, wherein the powder vessel has an inlet and an outlet,
wherein the compressed gas source is fluidly coupled to the inlet of the powder vessel and the mixing column.
6 . The aerosol concentration sensor calibration device of claim 5 , further comprising:
a first conduit fluidly connecting the compressed gas source to the mixing column and bypassing the powder vessel;
a second conduit fluidly connected to the first conduit and parallel to a portion of the first conduit, wherein the powder vessel is disposed along the second conduit;
a first valve disposed along the second conduit, upstream of the powder vessel; and
a second valve disposed along the second conduit, upstream of the powder vessel.
7 . The aerosol concentration sensor calibration device of claim 6 , wherein the compressed gas source is fluidly coupled to the mixing column through the portion of the first conduit via a third valve.
8 . The aerosol concentration sensor calibration device of claim 5 , wherein the compressed gas source is a source of compressed nitrogen or air.
9 . The aerosol concentration sensor calibration device of claim 5 , wherein the powder is a dry chemical agent.
10 . The aerosol concentration sensor calibration device of claim 5 , and further comprising a gas flowmeter disposed in a conduit upstream of the first and second conduits, the gas flow meter configured to measure a mass flow rate of the compressed gas.
11 . The aerosol concentration sensor calibration device of claim 1 , wherein the sensor is a light obscuration sensor.
12 . A method of calibrating an aerosol concentration sensor device, the method comprising:
delivering a mixture of a powder and a compressed gas to a mixing column, the mixing column extending in a vertical orientation with respect to gravity between an inlet at a bottom of the mixing column and an outlet at a top of the mixing column, such that the powder and the compressed gas flow upward through the mixing column;
aerosolizing the powder within the compressed gas flow in the mixing column;
measuring, via a sensor disposed proximate an outlet of the mixing column, an aerosolized concentration of the powder in the mixing column;
collecting the powder in a collection vessel fluidly coupled to the outlet of the mixing column;
terminating delivery of the mixture of the powder and the compressed gas to the mixing column;
calculating an average aerosolized concentration of the powder in the mixing column based on a measured weight of the collected powder;
comparing the average aerosolized concentration of the powder in the mixing column based on the measured weight of the collected powder to the aerosolized concentration of the powder measured by the sensor; and
adjusting the concentration sensor as needed to compensate for any difference between the average aerosolized concentration of the powder in the mixing column based on the measured weight of the collected powder and the aerosolized concentration of the powder measured by the sensor.
13 . The method of claim 12 , and further comprising comparing the average aerosolized concentration to the measured aerosolized concentration.
14 . The method of claim 12 further comprising removing the collection vessel from the mixing column to weigh the powder.
15 . The method of claim 14 further comprising:
removing any deposits of the powder collected on walls of the mixing column between the concentration sensor and the outlet; and
weighing the removed powder,
wherein the aerosolized concentration of the powder in the mixing column is calculated based on the measured weight of the collected powder in the collection vessel and the measured weight of the removed powder.
16 . The method of claim 12 and further comprising controlling, via a regulator, a flow rate of the compressed gas to the mixing column.
17 . The method of claim 12 and further comprising measuring, via a flow meter, a flow rate of the compressed gas through the regulator.
18 . The method of claim 12 and further comprising exhausting the compressed gas through an outlet filter of the collection vessel.
19 . The method of claim 12 , wherein delivering the mixture of compressed gas and aerosolized powder comprises releasing powder from a powder vessel into a flow of compressed gas and further comprising regulating, via a valve, a concentration of the powder delivered to the mixing column.