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Coupling processes and exchange of energy and reactive and non-reactive trace gases at a forest site – results of the EGER experiment

机译:在森林现场耦合过程和能量和反应性和非反应性痕量气体的交流 - Eger实验的结果

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To investigate the energy, matter and reactive and non-reactive trace gas exchange between the atmosphere and a spruce forest in the German mountain region, two intensive measuring periods were conducted at the FLUXNET site DE-Bay (Waldstein-Weidenbrunnen) in September/October 2007 and June/July 2008. They were part of the project "ExchanGE processes in mountainous Regions" (EGER). Beyond a brief description of the experiment, the main focus of the paper concerns the coupling between the trunk space, the canopy and the above-canopy atmosphere. Therefore, relevant coherent structures were analyzed for different in- and above canopy layers, coupling between layers was classified according to already published procedures, and gradients and fluxes of meteorological quantities as well as concentrations of non-reactive and reactive trace compounds have been sorted along the coupling classes. Only in the case of a fully coupled system, it could be shown, that fluxes measured above the canopy are related to gradients between the canopy and the above-canopy atmosphere. Temporal changes of concentration differences between top of canopy and the forest floor, particularly those of reactive trace gases (NO, NO2, O3, and HONO) could only be interpreted on the basis of the coupling stage. Consequently, only concurrent and vertically resolved measurements of micrometeorological (turbulence) quantities and fluxes (gradients) of trace compounds will lead to a better understanding of the forest-atmosphere interaction.
机译:为了研究德国山区的大气和云杉林之间的能量,物质和反应性和非反应性痕量气体交换,在9月/ 10月在浮动网站De-Bay(Waldstein-Weidenbrunnen)进行了两个强化测量时间2007年和2008年6月/ 7月。他们是项目“山区交流进程”(EGER)的一部分。除了实验简要说明之外,纸张的主要重点涉及行李箱空间,树冠和上述大气之间的耦合。因此,对不同的相干结构进行了分析,用于不同的冠层层,层之间的偶联根据已经公布的程序,以及气象量的梯度和势次,以及非反应性和反应性痕量化合物的浓度耦合类。只有在完全耦合系统的情况下,可以示出,上面测得的磁通量与顶篷和上述大气之间的梯度有关。顶部顶部和森林地板之间的浓度差异的时间变化,特别是反应性痕量气体(NO,NO2,O3和Hono)只能在耦合阶段解释。因此,只有痕量化合物的微观气象(湍流)量和助熔剂(梯度)的同时和垂直解决的测量将导致对森林 - 气氛相互作用的更好理解。
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