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首页> 外文期刊>Agricultural and Forest Meteorology >Improved parameterization of the commonly used exponential equation for calculating soil-atmosphere exchange fluxes from closed-chamber measurements
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Improved parameterization of the commonly used exponential equation for calculating soil-atmosphere exchange fluxes from closed-chamber measurements

机译:改进了常用指数方程的参数化,用于计算闭合室测量的土壤 - 大气交换通量

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Highlights ? Proposing new parameterization of exponential equation for calculating soil fluxes. ? Advantage of physically meaningful parameters with less dependency on each other. ? Parameter dependencies investigated through bootstrapping. ? Results demonstrated for N2O, CH4, and CO2 data from different analyzer types. ? Review of and comparison to other commonly used parameterizations. Abstract The concentration change in a closed chamber derived from Fick’s law for a steady flux leads to a differential equation which describes an exponential curve of limited growth. Here we introduce and compare an alternative parameterization with those commonly used in the chamber flux community when investigating soil-atmosphere exchange of N2O, CH4, or CO2 using classical gas chromatography systems, infrared gas analyzers, or novel laser absorption spectrometers. This new parameterization has the advantages that the parameters are mathematically less dependent leading to a more stable regression and that all parameters are physically meaningful with one of them being the main quantity of interest, i.e. the initial flux at chamber closure. ]]>
机译:<![cdata [ 突出显示 提出计算土壤通量指数方程的新参数化。 物理有意义的参数的优势,彼此更少依赖。 参数依赖项通过自举调查。 结果显示对于N 2 O,CH 4 ,以及CO 2 来自不同分析仪类型的数据。 与其他常用参数化的审查和比较。 抽象 闭合腔室的浓度变化来自Fick的稳定通量导致微分方程,其描述了有限的生长的指数曲线。在这里,我们在调查N 2 O,CH 4> 4 ,或CO 2 使用古典气相色谱系统,红外气体分析仪或新型激光吸收光谱仪。这个新的参数化具有参数的优点,即在数学上依赖于导致更稳定的回归,并且所有参数与其中一个物理有意义,其中一个是兴趣的主要数量,即室内闭合的初始通量。 ]]>

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