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DOI10.1016/j.agrformet.2013.06.020
Eddy covariance measurements with a new fast-response, enclosed-path analyzer: Spectral characteristics and cross-system comparisons
Novick, K. A.1,4; Walker, J.2; Chan, W. S.3; Schmidt, A.3; Sobek, C.1; Vose, J. M.1
发表日期2013-11-15
ISSN0168-1923
卷号181页码:17-32
英文摘要

A new class of enclosed path gas analyzers suitable for eddy covariance applications combines the advantages of traditional closed-path systems (small density corrections, good performance in poor weather) and open-path systems (good spectral response, low power requirements), and permits estimates of instantaneous gas mixing ratio. Here, the extent to which these advantages are realized in field deployment is assessed, with a focus on the suitability of such an analyzer (the EC155, manufactured by Campbell Scientific) for long-term flux measurements in a new flux monitoring site in the southern Appalachians (NC, USA). The scalar-vertical velocity co-spectra for CO2 fluxes measured with the EC155 were similar to those measured with a co-located open-path system. When humidity was high, attenuation of the EC155 water vapor fluxes for non-dimensional frequencies greater than similar to 2 was noted, though results from an ogive analysis suggest that eddies operating on these time scales contributed <2% of the total turbulent flux in this tall forest ecosystem. Inertial sub-range decay of the vertical velocity-scalar co-spectra generally conformed to a -7/3 power law during near-neutral atmospheric stability conditions, supporting the use of an analytical spectral correction approach to the raw measured fluxes. The EC155 fluxes computed directly from instantaneous mixing ratio agreed with will those calculated from mass-density concentration measurements, provided density terms for temperature, water vapor, and pressure were applied. Biases were observed when the EC155 flux records were compared to those measured with the open-path system. These differences were related to wind angle of attack and to an estimate of apparent fluxes related to instrument self-heating, and the biases were minimized after the application of a friction velocity filter. Finally, the EC155 considerably outperformed open-path analyzers during adverse weather conditions favorable to fog development, which occur frequently in the study site. Published by Elsevier B.V.


英文关键词Eddy covariance;Spectra;Density corrections;Instrument heating;Closed-path;Open-path
语种英语
WOS记录号WOS:000325242500002
来源期刊AGRICULTURAL AND FOREST METEOROLOGY
来源机构美国环保署
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/60831
作者单位1.Forest Serv, USDA, Coweeta Hydrol Lab, Otto, NC 28734 USA;
2.US EPA, Natl Risk Management Res Lab, Durham, NC USA;
3.Oregon State Univ, Dept Forest Ecosyst & Soc, Corvallis, OR 97331 USA;
4.Indiana Univ, Sch Publ & Environm Affairs, Bloomington, IN 47405 USA
推荐引用方式
GB/T 7714
Novick, K. A.,Walker, J.,Chan, W. S.,et al. Eddy covariance measurements with a new fast-response, enclosed-path analyzer: Spectral characteristics and cross-system comparisons[J]. 美国环保署,2013,181:17-32.
APA Novick, K. A.,Walker, J.,Chan, W. S.,Schmidt, A.,Sobek, C.,&Vose, J. M..(2013).Eddy covariance measurements with a new fast-response, enclosed-path analyzer: Spectral characteristics and cross-system comparisons.AGRICULTURAL AND FOREST METEOROLOGY,181,17-32.
MLA Novick, K. A.,et al."Eddy covariance measurements with a new fast-response, enclosed-path analyzer: Spectral characteristics and cross-system comparisons".AGRICULTURAL AND FOREST METEOROLOGY 181(2013):17-32.
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