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A Custom, High-Channel Count Data Acquisition System for Chemical Species Tomography of Aero-Jet Engine Exhaust Plumes

机译:定制的高通道计数数据采集系统,用于航空喷气发动机尾气柱化学物质层析成像

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The fiber-laser imaging of gas turbine exhaust species project aims to provide a video-rate imaging (100 frames/s) diagnostic tool for application to the exhaust plumes of the largest civil aero-jet engines. This remit, enabled by chemical species tomography (CST) currently targeting carbon dioxide (CO2), requires system design that facilitates expansion of multiple parameters. Scalability is needed in order to increase imaging speeds and spatial resolutions and extends the system toward other pertinent gases such as the oxides of nitrogen and sulfur and unburnt hydrocarbons. This paper presents a fully scalable, noninvasive instrument for installation in a commercial engine testing facility, technical challenges having been tackled iteratively through bespoke optical and mechanical design, and it specifically presents the high-speed data acquisition (DAQ) system required. Measurement of gas species concentration is implemented by tunable diode laser absorption with wavelength modulation spectroscopy (TDLAS-WMS) using a custom, high-speed 10-40-MS/s/channel 14-bit DAQ. For CO2 tomography, the system uses six angular projections of 21 beams each. However, the presented DAQ has capacity for 192 fully parallel 10-Hz-3-MHz differential inputs, achieving a best-case signal-to-noise ratio (SNR) of 56.5 dB prior to filtering. A 12 Ethernet-connected digitization nodes based on field-programmable gate array technology with software control are distributed around a 7-m-diameter mounting "ring." Hence, the high data rates of 8.96-Gb/s per printed circuit board and 107.52 Gb/s for the whole system can be reduced by using local digital lock-in amplifiers. We believe that this DAQ system is unique in both the TDLAS and CST literatures.
机译:燃气轮机排气物质的光纤激光成像项目旨在提供一种视频速率成像(100帧/秒)诊断工具,以应用于最大的民用航空发动机的排气羽流。目前通过针对二氧化碳(CO2)的化学物种断层扫描(CST)来启用此汇款,需要进行系统设计以利于扩展多个参数。为了提高成像速度和空间分辨率,并使系统向其他相关气体(例如氮和硫的氧化物以及未燃烧的碳氢化合物)扩展,需要可伸缩性。本文提出了一种完全可扩展的,无创的,可安装在商用发动机测试设施中的仪器,通过定制的光学和机械设计来迭代地解决了技术难题,并且特别提出了所需的高速数据采集(DAQ)系统。气体种类浓度的测量是通过使用定制的高速10-40-MS / s /通道14位DAQ的波长调制光谱仪(TDLAS-WMS)通过可调二极管激光吸收来实现的。对于CO2层析成像,该系统使用六个角投影,每个21束。但是,提出的DAQ可以容纳192个完全并行的10-Hz-3-MHz差分输入,在滤波之前达到56.5 dB的最佳情况信噪比(SNR)。一个基于现场可编程门阵列技术和软件控制的12个以太网连接的数字化节点分布在直径7米的安装“环”周围。因此,通过使用本地数字锁定放大器,可以降低每个印刷电路板8.96 Gb / s和整个系统107.52 Gb / s的高数据速率。我们认为,该数据采集系统在TDLAS和CST文献中都是独一无二的。

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