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Disentangling the confounding effects of PAR and air temperature on net ecosystem exchange at multiple time scales

机译:解析PAR和气温在多个时间尺度上对净生态系统交换的混杂影响

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摘要

Net ecosystem exchange of CO_2 (NEE) in temperate forests is modulated by multiple microclimatic factors. The effects of these factors vary across time scales, with some correlated to produce confounding effects. Photosynthetically active radiation (PAR) and air temperature (Ta) are among the two most important drivers of NEE in temperate forests and are highly correlated because of their similar diel and annual cycles. In this study, we attempted to disentangle the confounding effects of them on NEE at multiple time scales. We applied innovative spectral analysis techniques, including the continuous wavelet transformation (CWT), cross wavelet transformation (XWT), wavelet coherent (WTC), and partial wavelet coherence (PWC), on a seven-year time series (2004-2010) of PAR, Ta, and NEE from the Ohio Oak Openings Ameriflux site (N 41.5545°, W 83.8438°), USA. We found that PAR was the primary driver at short time scales (e.g., multi-hour and daily), while Ta dominated NEE at long time scales (e.g., seasonal to annual). At the daily scale, PAR co-varied with NEE without time lag, while Ta lagged PAR for 2-3 h during growing seasons, which could be explained by the strong dependence of NEE on photosynthesis, which has a similar time lag of 2-3 h of Ta to PAR. At the daily scale, during the non-growing seasons, NEE varied little and co-varied with Ta and PAR with no high common power. At the annual scale, Ta co-varied with NEE with no time delay, but PAR led NEE by about one month. This can be explained by the strong dependence of leaf area index (LAI) on Ta as well as the lag between the LAI/ biomass development and the progress of sunlight. We also found that NEE distributes most of its variation at seasonal and annual scales, suggesting that Ta is more important than PAR in determining the annual and long-term carbon budget.
机译:温带森林中CO_2(NEE)的净生态系统交换受到多种微气候因素的调节。这些因素的影响随时间尺度而变化,有些因素会产生混淆的影响。光合有效辐射(PAR)和气温(Ta)是温带森林中NEE的两个最重要驱动因素,并且由于它们的diel和年度周期相似,因此高度相关。在这项研究中,我们试图消除它们在多个时间尺度上对NEE的混杂影响。我们在7年的时间序列(2004-2010)中应用了创新的频谱分析技术,包括连续小波变换(CWT),交叉小波变换(XWT),小波相干(WTC)和部分小波相干(PWC)。美国俄亥俄州Oak Opening Ameriflux站点(北41.5545°,西83.8438°)的PAR,Ta和NEE。我们发现PAR是短时标(例如,数小时和每天)的主要驱动因素,而Ta则是长时标(例如,季节到年度)主导的NEE。在日尺度上,PAR与NEE协变量无时间滞后,而Ta在生长季节滞后PAR 2-3小时,这可以用NEE对光合作用的强烈依赖性来解释,这与2相似的时滞。 Ta到PAR需要3小时。在非生长季节的日常尺度上,NEE变化很小,并且与Ta和PAR共同变化,而没有较高的共同功效。在年尺度上,Ta与NEE协变没有时间延迟,但是PAR领先NEE约一个月。这可以用叶面积指数(LAI)对Ta的强烈依赖性以及LAI /生物量发展与日光进程之间的滞后性来解释。我们还发现,NEE在季节和年度尺度上分布了大部分变化,这表明Ta在确定年度和长期碳预算中比PAR更重要。

著录项

  • 来源
    《Ecological Complexity》 |2014年第9期|46-58|共13页
  • 作者单位

    Department of Environmental Sciences, University of Toledo, Toledo, OH 43606, USA;

    Department of Environmental Sciences, University of Toledo, Toledo, OH 43606, USA;

    Department of Environmental Sciences, University of Toledo, Toledo, OH 43606, USA;

    Department of Environmental Sciences, University of Toledo, Toledo, OH 43606, USA;

    Department of Environmental Sciences, University of Toledo, Toledo, OH 43606, USA;

    Department of Environmental Sciences, University of Toledo, Toledo, OH 43606, USA;

    Department of Environmental Sciences, University of Toledo, Toledo, OH 43606, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Carbon flux; Wavelet analysis; Temperate forest; Environmental drivers;

    机译:碳通量小波分析;温带森林;环境驱动力;

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