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Analysis of Air Pressure Fluctuations and Topsoil Gas Concentrations within a Scots Pine Forest

机译:苏格兰松树森林内的气压波动和表土气体浓度分析

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High-precision differential air pressure measurements were conducted in the below-canopy space of a Scots pine forest and in the forest soil to investigate small air pressure fluctuations and their effect on soil gas flux. In addition to air pressure measurements, tracer gas concentration in the soil and airflow characteristics above and below the canopy were measured. Results suggest that air pressure fluctuations in the frequency range of 0.01 Hz–0.1 Hz are strongly dependent on above-canopy wind speed. While amplitudes of the observed air pressure fluctuations (<10 Pa) increase significantly with increasing above-canopy wind speed, the periods decrease significantly with increasing above-canopy wind speed. These air pressure fluctuations are associated with the pressure-pumping effect in the soil. A pressure-pumping coefficient was defined, which describes the strength of the pressure-pumping effect. During the measurement period, pressure-pumping coefficients up to 0.44 Pa·s ?1 were found. The dependence of the pressure-pumping coefficient on mean above-canopy wind speed can be described well with a polynomial fit of second degree. The knowledge of this relation simplifies the quantification of the pressure-pumping effect in a Scots pine forest considerably, since only the mean above-canopy wind speed has to be measured. In addition, empirical modeling revealed that the pressure-pumping coefficient explains the largest fraction of the variance of tracer gas concentration in the topsoil.
机译:在苏格兰松林冠层以下空间和森林土壤中进行高精度差压测量,以研究较小的气压波动及其对土壤气体通量的影响。除了测量气压外,还测量了土壤中示踪气体的浓度以及冠层上方和下方的气流特征。结果表明,在0.01 Hz至0.1 Hz频率范围内的气压波动强烈取决于冠层以上的风速。尽管观察到的气压波动幅度(<10 Pa)随冠层上方风速的增加而显着增加,但周期随冠层上方风速的增加而明显减小。这些气压波动与土壤中的压力作用有关。定义了压力泵系数,该系数描述了压力泵作用的强度。在测量期间,发现高达0.44 Pa·s?1的压力泵系数。可以用二阶多项式拟合很好地描述压力泵系数对冠层平均风速的依赖性。该关系的知识大大简化了苏格兰松树林中压力泵作用的量化,因为仅需要测量平均冠层以上的风速。另外,经验模型表明压力泵系数解释了表层土壤中示踪气体浓度变化的最大部分。

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