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Indirect method to estimate convective gas flow through culms of a Phragmites australis stand

机译:间接估算通过芦苇林分对流气流的方法

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We propose an indirect method to estimate continuously the rate of convective gas flow in a Phragmites australis stand. In this method, the rate of gas flow is estimated using the dynamic pressure differential in a culm and the convective conductance of the culm. The rate of gas flow obtained by this indirect method coincided well with that obtained by the direct method in which a calm is detached and then reconnected to the stubble using a mass flow meter. We monitored the total gas flux through a P. australis stand in a field and found that it fluctuated diurnally with the dynamic pressure differential in culms, showing a highest rate of 261 air m(-2) ground area h(-1) at noon. The total daily gas flux was about 1701air m(-2). Our indirect method has advantages in simultaneous and continuous measurements for a cluster of culms. This method will be of use not only to quantify various gas dynamics through aquatic plants in aquatic ecosystems but also to elucidate the ecosystem processes and properties that regulate these gas dynamics. [References: 27]
机译:我们提出了一种间接方法来连续估算澳大利亚芦苇林对流的流速。在此方法中,使用茎杆中的动压差和茎杆的对流传导率来估算气体流速。通过这种间接方法获得的气体流速与通过直接方法获得的气体流速非常吻合,在该直接方法中,分离出平静的部分,然后使用质量流量计将其重新连接至残茬。我们监测了通过田间假单胞菌立场的总气体通量,发现它随动压差的变化而昼夜波动,显示中午最高风速为261 m(-2)地面h(-1) 。每日总气体通量约为1701air m(-2)。我们的间接方法在同时和连续测量茎簇方面具有优势。该方法不仅可用于量化水生生态系统中通过水生植物产生的各种气体动力学,而且可阐明调节这些气体动力学的生态系统过程和特性。 [参考:27]

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