Measurements of carbon sequestration by long-term eddy covariance: Methods and a critical evaluation of accuracy

被引:1101
作者
Goulden, ML
Munger, JW
Fan, SM
Daube, BC
Wofsy, SC
机构
[1] Division of Applied Sciences, Dept. of Earth and Planet. Sciences, Harvard University, Cambridge, MA
关键词
deciduous forest; eddy correlation; micrometeorology; NEP; net ecosystem production; photosynthesis; respiration; DECIDUOUS FOREST; TEMPERATE FOREST; SURFACE-LAYER; SENSIBLE HEAT; WATER-VAPOR; EXCHANGE; CO2; ATMOSPHERE; FLUXES; PHOTOSYNTHESIS;
D O I
10.1111/j.1365-2486.1996.tb00070.x
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
The turbulent exchanges of COP and water vapour between an aggrading deciduous forest in the north-eastern United States (Harvard Forest) and the atmosphere were measured from 1990 to 1994 using the eddy covariance technique. We present a detailed description of the methods used and a rigorous evaluation of the precision and accuracy of these measurements. We partition the sources of error into three categories: (1) uniform systematic errors are constant and independent of measurement conditions (2) selective systematic errors result when the accuracy of the exchange measurement varies as a function of the physical environment, and (3) sampling uncertainty results when summing an incomplete data set to calculate long-term exchange. Analysis of the surface energy budget indicates a uniform systematic error in the turbulent exchange measurements of -20 to 0%. A comparison of nocturnal eddy flux with chamber measurements indicates a selective systematic underestimation during calm (friction velocity < 0.17 m s(-1)) nocturnal periods. We describe an approach to correct for this error. The integrated carbon sequestration in 1994 was 2.1 t C ha(-1) y(-1) with a 90% confidence interval due to sampling uncertainty of +/-0.3 t C ha(-1) y(-1) determined by Monte Carlo simulation. Sampling uncertainty may be reduced by estimating the flux as a function of the physical environment during periods when direct observations are unavailable, and by minimizing the length of intervals without flux data. These analyses lead us to place an overall uncertainty on the annual carbon sequestration in 1994 of -0.3 to +0.8 t C ha(-1) y(-1).
引用
收藏
页码:169 / 182
页数:14
相关论文
共 31 条
[1]   PLANT AND SOIL RESPONSES TO CHRONIC NITROGEN ADDITIONS AT THE HARVARD FOREST, MASSACHUSETTS [J].
ABER, JD ;
MAGILL, A ;
BOONE, R ;
MELILLO, JM ;
STEUDLER, P ;
BOWDEN, R .
ECOLOGICAL APPLICATIONS, 1993, 3 (01) :156-166
[2]  
ABER JD, 1995, IN PRESS OECOLOGIA
[3]   Strategies for measuring and modelling carbon dioxide and water vapour fluxes over terrestrial ecosystems [J].
Baldocchi, D ;
Valentini, R ;
Running, S ;
Oechel, W ;
Dahlman, R .
GLOBAL CHANGE BIOLOGY, 1996, 2 (03) :159-168
[4]   MEASURING BIOSPHERE-ATMOSPHERE EXCHANGES OF BIOLOGICALLY RELATED GASES WITH MICROMETEOROLOGICAL METHODS [J].
BALDOCCHI, DD ;
HICKS, BB ;
MEYERS, TP .
ECOLOGY, 1988, 69 (05) :1331-1340
[5]   TRACE GAS-EXCHANGE ABOVE THE FLOOR OF A DECIDUOUS FOREST .1. EVAPORATION AND CO2 EFFLUX [J].
BALDOCCHI, DD ;
MEYERS, TP .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1991, 96 (D4) :7271-7285
[6]  
Denmead O. T., 1985, The forest-atmosphere interaction. Proceedings of the forest environmental measurements conference held at Oak Ridge, Tennessee, October 23-28, 1983, P421
[7]   ENVIRONMENTAL CONTROLS ON THE PHOTOSYNTHESIS AND RESPIRATION OF A BOREAL LICHEN WOODLAND - A GROWING-SEASON OF WHOLE-ECOSYSTEM EXCHANGE MEASUREMENTS BY EDDY-CORRELATION [J].
FAN, SM ;
GOULDEN, ML ;
MUNGER, JW ;
DAUBE, BC ;
BAKWIN, PS ;
WOFSY, SC ;
AMTHOR, JS ;
FITZJARRALD, DR ;
MOORE, KE ;
MOORE, TR .
OECOLOGIA, 1995, 102 (04) :443-452
[8]  
Field C. B., 1989, Plant physiological ecology: field methods and instrumentation., P209
[9]   MECHANISMS OF NOCTURNAL EXCHANGE BETWEEN THE RAIN-FOREST AND THE ATMOSPHERE [J].
FITZJARRALD, DR ;
MOORE, KE .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1990, 95 (D10) :16839-16850
[10]   SPECIES AND STAND RESPONSE TO CATASTROPHIC WIND IN CENTRAL NEW ENGLAND, USA [J].
FOSTER, DR .
JOURNAL OF ECOLOGY, 1988, 76 (01) :135-151