Nova Patents
CA2292009C

Underground conduit defect localization

Abstract

The present invention relates to a method of determining the flow rate and direction of a medium within a conduit. The method is comprised the steps of coupling a pair of sensors to the conduit at a first and second location thereof. A first vibration is imposed upon the conduit at a position proximate a first sensor in the pair of sensors, the position being outside of a region located between the pair of sensors which are separated by a distance and mounted to the conduit. A first transmitted vibration is detected, propagating along the conduit in response to the imposed vibration at both sensors. The above defined steps are repeated wherein a second vibration is imposed at a second location proximate a second sensor in the pair of sensors, the position being outside of said region located between the pair of sensors. The center velocity of each transmitted vibration is determined by computing an envelope correlation function. The direction of fluid flow and the velocity of the medium within the conduit is then calculated.

CA2292009C, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Expired 20 September 2015, 11 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

8 claims: 2 independent, 6 dependent

  1. 1
    Claims:1. A method of determining the flow rate and direction of a medium within a conduit comprising the steps of: coupling a pair of sensors to said conduit at a first and second location thereof;imposing a first vibration upon the conduit at a position proximate a first sensor in said pair of sensors, said position being outside of a region located between said pair of sensors which are separated by a distance and mounted to the conduit;detecting a first transmitted vibration propagating along the conduit in response to said imposed vibration at both sensors ;repeating the steps above wherein a second vibration is imposed at a second position proximate a second sensor in said pair of sensors, said position being outside of said region located between said pair of sensors;determining the center velocity of each transmitted vibration by computing an envelope correlation function;and calculating the direction of fluid flow and its velocity.
  2. 7
    An acoustic method of determining the flow rate and direction of steam flowing in a conduit, comprising the steps of :attaching a pair of sensors to the conduit at a first and second location along the conduit, where each location is separated by a known distance from the other;imposing a first vibration upon the conduit at a position proximate a first sensor in said pair of sensors, said position being outside of a region located between said pair of sensors;detecting a first transmitted vibration propagating along the conduit in response to said imposed vibration at both sensors ;imposing a second vibration upon the conduit at a second position proximate a second sensor in said pair of sensors, said second position being outside of said region located between said pair of sensors;detecting a second transmitted vibration propagating along the conduit in response to said imposed vibration at both sensors;converting signals produced from said sensors from analog to digital form;recording each signal in digital form for preserving it;filtering each signal to pass a frequency band from 4000 to 8500 Hz for discriminating against turbulent flow noise in CA 02292009 1999-12-16 the steam, noise transmitted by the conduit;filtering each signal to exclude single frequency tones;computing a cross-correlation function from data obtained from the sensors from the first imposed vibration propagating along the conduit for obtaining a raw plot of a first time differential;computing a cross-correlation function from data obtained from the sensors from the second imposed vibration propagating located along the conduit for obtaining a raw plot of a second time differential;smoothing each raw plot of time differential for obtaining a peak time differential in each plot;determining the first center velocity of propagation of imposed vibration in the conduit using the first peak time differential and the known spacing between the sensors;determining the second center velocity of propagation of imposed vibration in the conduit using the second peak time differential and the know spacing between the sensors;and calculating the flow rate and direction of the steam flowing in the conduit, wherein said flow rate is calculated as half of the difference between said first and second center velocity and said direction corresponds to the greater one of said first and second velocity.