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A portable miniaturized laser heterodyne radiometer (mini-LHR) for remote measurements of column CH_4 and CO_2

机译:便携式小型激光外差辐射计(mini-LHR),用于遥测CH_4和CO_2列

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摘要

We present the design of a portable version of our miniaturized laser heterodyne radiometer (mini-LHR) that simultaneously measures methane (CH4) and carbon dioxide (CO2) in the atmospheric column. The mini-LHR fits on a backpack frame, operates autonomously, and requires no infrastructure because it is powered by batteries charged by a folding 30 W solar panel. Similar to our earlier instruments, the mini-LHR is a passive laser heterodyne radiometer that operates by collecting sunlight that has undergone absorption by CH4 and CO2. Within the mini-LHR, sunlight is mixed with light from a distributive feedback (DFB) laser centered at approximately 1.64 mu m where both gases have absorption features. The laser scans across these absorption features roughly every minute and the resulting beat signal is collected in the radio frequency (RF). Scans are averaged into half hour and hour data products and analyzed using the Planetary Spectrum Generator (PSG) retrieval to extract column mole fractions. Instrument performance is demonstrated through two deployments at significantly different sites in interior Alaska and Hawaii. The resolving power (lambda/ increment lambda) is greater than 500,000 at 1.64 mu m with precisions of better than 20 ppb and 1 ppm for CH4 and CO2, respectively. Because mini-LHR instruments are portable and can be co-located, they can be used to characterize bias between larger, stationary, column observing instruments. In addition, mini-LHRs can be deployed quickly to respond to transient events such as methane leaks or can be used for field studies targeting geographical regions.
机译:我们介绍了便携式激光外差辐射计(mini-LHR)的便携式版本,该便携式版本同时测量大气柱中的甲烷(CH4)和二氧化碳(CO2)。 mini-LHR安装在背包框架上,可自主运行,并且不需要基础设施,因为它由可折叠的30 W太阳能电池板充电的电池供电。与我们的早期仪器类似,mini-LHR是一种被动激光外差辐射计,其工作原理是收集已被CH4和CO2吸收的阳光。在mini-LHR中,阳光与来自分布反馈(DFB)激光器的光混合,该激光器的中心约为1.64μm,两种气体均具有吸收功能。激光大约每分钟扫描一次这些吸收特征,然后将产生的差拍信号收集到射频(RF)中。将扫描结果平均为半小时和半小时的数据乘积,并使用行星光谱发生器(PSG)检索进行分析,以提取色谱柱的摩尔分数。通过在阿拉斯加和夏威夷内部明显不同的地点进行的两次部署,证明了仪器的性能。在1.64微米处,分辨力(拉姆达/增量拉姆达)大于500,000,对于CH4和CO2的分辨率分别优于20 ppb和1 ppm。由于mini-LHR仪器是便携式的并且可以放置在同一地点,因此它们可以用于表征较大的固定立柱观测仪器之间的偏差。此外,微型LHR可以快速部署以响应甲烷泄漏等瞬态事件,也可以用于针对地理区域的野外研究。

著录项

  • 来源
    《Applied physics》 |2019年第11期|211.1-211.9|共9页
  • 作者单位

    NASA Atmospher Chem & Dynam Lab Goddard Space Flight Ctr 8800 Greenbelt Rd Greenbelt MD 20771 USA;

    Sci Syst & Applicat Inc 10210 Greenbelt Rd 20 Lanham MD 20706 USA;

    NASA Planetary Syst Lab Goddard Space Flight Ctr 8800 Greenbelt Rd Greenbelt MD 20771 USA;

    Univ Maryland CRESST College Pk MD 20740 USA;

    NASA Planetary Environm Lab Goddard Space Flight Ctr 8800 Greenbelt Rd Greenbelt MD 20771 USA;

    NASA Goddard Space Flight Ctr Planetary Geol Geophys & Geochem Lab 8800 Greenbelt Rd Greenbelt MD 20771 USA;

    Univ Alaska Fairbanks Inst Arctic Biol 902 N Koyukuk Dr POB 757000 Fairbanks AK 99775 USA;

    Explorat Class Management 414 Bayoo View Dr El Lago TX USA;

    Univ Hawaii Manoa Dept Earth Sci POST Bldg Suite 701 1680 East West Rd Honolulu HI 96822 USA;

    Univ Hawaii Manoa Dept Informat & Comp Sci POST Bldg Suite 303D 1680 East West Rd Honolulu HI 96822 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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