METHOD AND ARRANGEMENT FOR THE ANALYSIS OF GAS CHARACTERISTICS
20180011058 ยท 2018-01-11
Inventors
Cpc classification
G01N29/32
PHYSICS
G01N29/024
PHYSICS
International classification
G01N29/024
PHYSICS
G01N29/44
PHYSICS
Abstract
A method for the measurement of the speed of sound in a gas suitable for the determination of gas characteristics, especially the composition of the gas, the temperature and/or the humidity of the gas, and a speed of sound based gas sensor arrangement adapted to measure that gas characteristics comprising sound sending means and sound receiving means and signal processing unit. A sound sender is used as sound sender and a first sound receiver and a second sound receiver as sound receiving means, all three of them being arranged such that the travel distance of the sound provided by the sender to the first receiver is different from the travel distance of the sound provided by the sender to the second receiver. Further the arrangement includes the signal processing means connected with the sender and the receivers which operate the sender and determine gas characteristics, especially the composition of the gas, the temperature and/or the humidity of the gas, from the different signals provided by the first and the second receiver.
Claims
1. A method for measuring the speed of sound in a gas suitable for the determination of gas characteristics, comprising providing a sound sender and a first sound receiver and a second sound receiver, such that the travel distance of the sound provided by the sender to the first receiver is different from the travel distance of the sound provided by the sender to the second receiver, sending the sound from the sender to both of the receivers, determining gas characteristics from the different signals provided by the first and the second receiver.
2. The method according to claim 1, comprising arranging the second receiver near the first receiver in the same direction from the sender thereby providing in general only one measuring section of the sound excited by the sender.
3. The method according to claim 1, comprising determining the phase angle difference of the signals of the first and the second receiver for determination of gas characteristics.
4. The method according to claim 1, comprising differentially measuring the voltage amplitude between the first and the second receiver for determination of gas characteristics.
5. The method according to claim 3, comprising suppressing a phase shift of the phase of the sender signal due to the operation mode of the sender by common-mode rejection based on the signals of the first and second receiver.
6. The method according to claim 1, comprising separately measuring the phase angles of the signals of the receivers and calculating the phase angle difference in a further step.
7. A method comprising determining humidity of an engine scavenge air using the method of claim 1.
8. A speed of sound based gas sensor arrangement adapted to measure gas characteristics according to the method as recited in claim 1.
9. A speed of sound based gas sensor arrangement (12) adapted to measure gas characteristics, comprising a sound sender and a sound receiver connected to signal processing means, wherein the sound receiver comprises at least a first sound receiver and a second sound receiver, arranged such that the travel distance of the sound provided by the sender to the first receiver is different from the travel distance of the sound provided by the sender to the second receiver, and the signal processing means operate the sender and determine gas characteristics from the different signals provided by the at least first and the second receiver.
10. The arrangement according to claim 9, wherein the second receiver is arranged near the first receiver in the same direction from the sender thereby providing in general only one measuring working section of the sound excited by the sender.
11. The arrangement according to claim 9, wherein the signal processing means determine the phase angle difference of the signals of the first and the second receiver for determination of gas characteristics.
12. The arrangement according to claim 9, wherein the signal processing means measure the voltage amplitude between the first and the second receiver for determination of gas characteristics.
13. The arrangement according to claim 11, wherein the signal processing means suppress a phase shift of the phase of the sender signal due to the operation mode of the sender by common-mode rejection based on the signals of the first and second receiver.
14. The arrangement according to claim 9, wherein the signal processing means separately measure the phase angles of the signals of the receivers and calculates the phase angle difference in a further step.
15. The arrangement according to claim 9, wherein the signal processing means differentially measure the signals of the receivers and calculate gas characteristics.
16. The arrangement according to claim 9, wherein the measured gas characteristics is at least one of gas composition, humidity and temperature.
17. The method according to claim 1, wherein the measured gas characteristics is at least one of gas composition, humidity and temperature.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0023] The figures show:
[0024]
[0025]
DETAILED DESCRIPTION
[0026] In the following the invention is explained in connection with the arrangement in a gas pipe for example for the detection of engineering scavenge air humidity. However, the method and the arrangement also can be used in other applications, especially in applications with extreme environmental conditions for the arrangement and in which a wide range of measurement values are required.
[0027]
[0028] However, the propagation paths 4 are of different length. Thus, sound emitted from sender 1 has to travel different distances to reach the receiver 2 or 2a. The propagation of the scavenge air is depicted with numeral 5.
[0029] The propagation paths 4 can also include a reflection of the sound at wall 3b of the gas pipe 3.
[0030] Sender 1 and the two receivers 2, 2a are connected to a signal processing unit 7 which comprises a sound function generator 8, which in this case is capable to provide ultrasound and is connected with the sender 1. The signal processing unit 7 further comprises a first pre-amplifier/AD converter 10 connected with the first receiver 2 and a second pre-amplifier/AD converter 10a connected with the second receiver 2a. The sound function generator 8 and the two pre-amplifier/AD converters 10, 10a are all connected with a lock-in amplifier 11 which is connected with a microprocessor 13, which controls the function of the total sensor arrangement. The lock-in amplifier 11 provides a signal indicating the phase angle between the signals provided by the first receiver 2 and the second receiver 2a. Number 14 indicates the output of the result for further processing the measured characteristic of the gas. In another advantageous embodiment, the lock-in amplifier 11 can be integrated digitally within the microprocessor 13. It is clear, that the lock-in amplifier 11 has two separate input channels and output channels and input for the reference signal in view of the independent measurement of the phases.
[0031]