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Estimating heat sources and fluxes in thermally stratified canopy flows using higher-order closure models

机译:使用高阶封闭模型估算热分层冠层流中的热源和通量

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Over the past two decades, several inverse methods have been proposed to estimate scalar source and sink strengths from measured mean concentration profiles within the canopy volume (hereafter termed the 'inverse' problem). These inverse methods commonly assumed neutral atmospheric stability conditions for the entire canopy volume. For non-neutral conditions, atmospheric stability corrections in inverse schemes were limited to adjusting the integral time scale or other flow statistics to match well-established surface-layer similarity relations above the canopy. Such stability corrections do not explicitly consider the local stability effects within the canopy volume. Currently, there is no satisfactory inverse scheme that explicitly accounts forlocal atmospheric stability for canopy turbulence. A Eulerian inverse method that explicitly accounts for local atmospheric stability within the canopy is developed using second-order closure principles. Field testing the method is conducted using temperature measurements from two field experiments collected in an even-aged uniform loblolly pine forest. It is demonstrated that by accounting for local atmospheric stability in the inversion scheme, the agreement between modelled sensible heat flux calculations and measurements improve by 60 percent for stable conditions, 10 percent for near-neutral conditions and 220 percent for unstable conditions
机译:在过去的二十年中,已经提出了几种反演方法,可以根据测得的树冠体积内的平均浓度分布来估计标量源和下沉强度(以下称为“反演”问题)。这些反演方法通常假设整个树冠体积处于中性大气稳定条件。对于非中性条件,逆向方案中的大气稳定性校正仅限于调整积分时标或其他流量统计信息,以匹配树冠上方已建立的表层相似关系。此类稳定性校正未明确考虑冠层体积内的局部稳定性影响。当前,没有令人满意的逆方案明确地解释了冠层湍流的局部大气稳定性。使用二阶封闭原理开发了一种欧拉逆方法,该方法明确考虑了冠层内部的局部大气稳定性。使用从均匀老化的均匀火炬松林中收集的两个田间实验的温度测量值进行田间测试。结果表明,通过考虑反演方案中的局部大气稳定性,在合理的条件下,模型化的显热通量计算与测量之间的一致性提高了60%,在接近中性的条件下提高了10%,在不稳定的条件下提高了220%

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