Suppr超能文献

用于气体动力学和燃烧流的二极管激光吸收传感器。

Diode laser absorption sensors for gas-dynamic and combustion flows.

作者信息

Allen M G

机构信息

Physical Sciences Inc., Andover, MA 01810, USA.

出版信息

Meas Sci Technol. 1998 Apr;9(4):545-62. doi: 10.1088/0957-0233/9/4/001.

Abstract

Recent advances in room-temperature, near-IR and visible diode laser sources for tele-communication, high-speed computer networks, and optical data storage applications are enabling a new generation of gas-dynamic and combustion-flow sensors based on laser absorption spectroscopy. In addition to conventional species concentration and density measurements, spectroscopic techniques for temperature, velocity, pressure and mass flux have been demonstrated in laboratory, industrial and technical flows. Combined with fibreoptic distribution networks and ultrasensitive detection strategies, compact and portable sensors are now appearing for a variety of applications. In many cases, the superior spectroscopic quality of the new laser sources compared with earlier cryogenic, mid-IR devices is allowing increased sensitivity of trace species measurements, high-precision spectroscopy of major gas constituents, and stable, autonomous measurement systems. The purpose of this article is to review recent progress in this field and suggest likely directions for future research and development. The various laser-source technologies are briefly reviewed as they relate to sensor applications. Basic theory for laser absorption measurements of gas-dynamic properties is reviewed and special detection strategies for the weak near-IR and visible absorption spectra are described. Typical sensor configurations are described and compared for various application scenarios, ranging from laboratory research to automated field and airborne packages. Recent applications of gas-dynamic sensors for air flows and fluxes of trace atmospheric species are presented. Applications of gas-dynamic and combustion sensors to research and development of high-speed flows aeropropulsion engines, and combustion emissions monitoring are presented in detail, along with emerging flow control systems based on these new sensors. Finally, technology in nonlinear frequency conversion, UV laser materials, room-temperature mid-IR materials and broadly tunable multisection devices is reviewed to suggest new sensor possibilities.

摘要

用于电信、高速计算机网络和光数据存储应用的室温近红外和可见二极管激光源的最新进展,正在催生新一代基于激光吸收光谱的气体动力学和燃烧流传感器。除了传统的物质浓度和密度测量外,温度、速度、压力和质量通量的光谱技术已在实验室、工业和技术流中得到验证。结合光纤分布网络和超灵敏检测策略,紧凑便携的传感器现已出现在各种应用中。在许多情况下,与早期低温中红外设备相比,新型激光源具有更优异的光谱质量,这使得痕量物质测量的灵敏度提高、主要气体成分的高精度光谱分析以及稳定的自主测量系统成为可能。本文旨在回顾该领域的最新进展,并提出未来研究和发展可能的方向。简要回顾了与传感器应用相关的各种激光源技术。回顾了气体动力学特性激光吸收测量的基本理论,并描述了针对弱近红外和可见吸收光谱的特殊检测策略。描述并比较了典型传感器配置在从实验室研究到自动化现场和机载设备等各种应用场景中的情况。介绍了气体动力学传感器在气流和痕量大气物质通量测量方面的最新应用。详细介绍了气体动力学和燃烧传感器在高速气流航空推进发动机研发以及燃烧排放监测方面的应用,以及基于这些新型传感器的新兴流量控制系统。最后,回顾了非线性频率转换技术、紫外激光材料、室温中红外材料和宽可调多段器件技术,以提出新的传感器可能性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验