Four-Dimensional Reconstruction of Leaked Gas Cloud Based on Computed Tomography Processing of Multiple Optical Paths Infrared Measurement

D. Shiozawa, Masaki Uchida, Yuki Ogawa, T. Sakagami, S. Kubo
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引用次数: 1

Abstract

Currently, gas leakage source detection is conducted by the human senses and experience. The development of a remote gas leakage source detection system is required. In this research, an infrared camera was used to detect gas leakage. The gas can be detected by the absorption of infrared rays by the gas and the infrared rays emitted from the gas itself. A three-dimensional reconstruction of a leaked gas cloud was performed to identify the gas leakage source and the flow direction of the gas. The so-called four-dimensional reconstruction of the leaked gas cloud, i.e., reconstruction of three-dimensional images of a gas cloud varying with time, was successfully performed by applying the ART (Algebraic Reconstruction Techniques) method to the multiple optical paths of infrared measurement.
基于多光路红外测量计算机层析处理的泄漏气体云四维重建
目前,气体泄漏源检测是通过人的感官和经验进行的。需要开发一种远程气体泄漏源检测系统。在本研究中,使用红外摄像机检测气体泄漏。通过气体对红外线的吸收和气体本身发出的红外线,可以探测到气体。对泄漏气体云进行了三维重建,以确定泄漏气源和气体流动方向。将ART (Algebraic reconstruction Techniques)方法应用于红外测量的多光路,成功地实现了所谓的泄漏气体云的四维重建,即对气体云随时间变化的三维图像进行重建。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
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