Invention Grant
- Patent Title: Gas-mapping 3D imager measurement techniques and method of data processing
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Application No.: US15285787Application Date: 2016-10-05
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Publication No.: US10527412B2Publication Date: 2020-01-07
- Inventor: Michael Thorpe , Aaron Kreitinger , Stephen Crouch
- Applicant: Bridger Photonics, Inc.
- Applicant Address: US MT Bozeman
- Assignee: Bridger Photonics, Inc.
- Current Assignee: Bridger Photonics, Inc.
- Current Assignee Address: US MT Bozeman
- Agency: Dorsey & Whitney LLP
- Main IPC: G01B21/20
- IPC: G01B21/20 ; G01M3/28 ; G01M3/38 ; G01N21/53 ; G01P5/00 ; G06K9/00 ; G01C15/00 ; G01N21/39 ; G01N21/17

Abstract:
Measurement approaches and data analysis methods are disclosed for combining 3D topographic data with spatially-registered gas concentration data to increase the efficiency of gas monitoring and leak detection tasks. Here, the metric for efficiency is defined as reducing the measurement time required to achieve the detection, or non-detection, of a gas leak with a desired confidence level. Methods are presented for localizing and quantifying detected gas leaks. Particular attention is paid to the combination of 3D spatial data with path-integrated gas concentration measurements acquired using remote gas sensing technologies, as this data can be used to determine the path-averaged gas concentration between the sensor and points in the measurement scene. Path-averaged gas concentration data is useful for finding and quantifying localized regions of elevated (or anomalous) gas concentration making it ideal for a variety of applications including: oil and gas pipeline monitoring, facility leak and emissions monitoring, and environmental monitoring.
Public/Granted literature
- US20170097274A1 GAS-MAPPING 3D IMAGER MEASUREMENT TECHNIQUES AND METHOD OF DATA PROCESSING Public/Granted day:2017-04-06
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