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Atmospheric Dispersion of Wheat Rust Spores: A New Theoretical Framework

机译:小麦锈菌孢子的大气扩散:一个新的理论框架

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Theoretical predictions for dispersion of heavy particles above an area source are used to formulate a new framework to interpret measurements of spore concentration above an infected field. Experimental measurements of mean spore concentration above an infected wheat field are used to validate theoretical predictions. The framework is then used to estimate total spore flux from the infected field and deposition patterns downwind. Results suggest that for the present case, consisting of a very low open canopy and friction velocity between 0.2 and 0.5 m s(-1), the properties of the spore plume above the source field are mostly determined by the source strength (i.e., spore release rate) and are approximately independent of turbulence properties. Turbulence conditions have a strong effect on the distance downwind from the source traveled by spores, however, and are therefore critical in the spread of the disease. In addition, effects of spore clumping on dispersal are explored, illustrating the strong effect of clumping on reducing spore dispersal distance.
机译:对重离子在面源上方的分散的理论预测被用来制定一个新的框架,以解释受感染场以上孢子浓度的测量结果。对被感染麦田上方平均孢子浓度的实验测量用于验证理论预测。然后,该框架用于估计受感染场和顺风沉积模式的总孢子通量。结果表明,在目前的情况下,由非常低的开放冠层和介于0.2和0.5 ms(-1)之间的摩擦速度组成,高于源场的孢子羽的特性主要取决于源强度(即孢子释放)。速率),并且几乎不受湍流特性的影响。但是,湍流条件对从孢子传播到源头的顺风距离有很大影响,因此对于疾病的传播至关重要。此外,探索了孢子结块对分散的影响,说明了结块对减小孢子分散距离的强烈作用。

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