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Development and validation of a quasi-Gaussian plume model for the transport of botanical spores

机译:植物孢子运输的准高斯羽流模型的开发和验证

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Aerial dispersal of inoculum is the primary means of movement for many plant diseases. One of the challenges of modern decision support for plant health is to provide predictions of the influx of viable pathogen inoculum from sources outside a crop. Such prediction in a practical setting requires prediction tools that have modest computing and input requirements, yet provide sufficiently accurate predictions. In this paper a hybrid dispersion model is developed, combining Taylor's statistical theory of diffusion for horizontal dispersal with the eddy diffusion theory as implemented in the Lagrangian similarity diffusion model of [van Ulden, A.P., 1978. Simple estimates for vertical diffusion from sources near the ground. Atmos. Environ. 12, 2119-2124] and [Gryning, S.E., van Ulden, A.P., Larsen, S.E., 1983. Dispersion from a continuous ground-level source investigated by a K model. Q. J. Roy. Meteor. Soc. 109, 355-364]. The model is extended with a dry deposition method and an effective source strength. Model results are compared with experimental data for the transport of artificially released spores of Lycopodium clavatum above a potato canopy. The numerical results are in close agreement with the experimental data, which cover distances up to 100m. Numerical predictions are compared to those produced by two alternative model versions and a previously published Gaussian plume model for the transport of spores above potato canopies. The potential for practical implementation of atmospheric dispersion models in plant disease decision support systems is discussed.
机译:空中传播接种物是许多植物疾病的主要移动手段。对植物健康的现代决策支持所面临的挑战之一是提供对来自农作物外部来源的可行病原菌接种物的涌入的预测。在实际环境中的这种预测需要具有适度的计算和输入要求但仍提供足够准确的预测的预测工具。本文开发了一种混合扩散模型,将泰勒的水平扩散扩散统计理论与涡流扩散理论相结合,该扩散扩散理论是在[van Ulden,AP,1978]的拉格朗日相似扩散模型中实现的。地面。大气环境。 12,2119-2124]和[Gryning,S.E.,van Ulden,A.P.,Larsen,S.E.,1983。通过K模型研究的来自连续地面源的分散。问:罗伊。流星。 Soc。 109,355-364]。该模型通过干法沉积方法和有效的源强度进行了扩展。将模型结果与实验数据进行了比较,结果表明,人工释放的石蒜狼毒孢子在马铃薯冠层上方的运输。数值结果与实验数据非常吻合,后者的覆盖距离可达100m。将数值预测与由两个替代模型版本和先前发布的用于在马铃薯冠层上方运输孢子的高斯羽流模型产生的预测进行了比较。讨论了在植物病害决策支持系统中实际实施大气扩散模型的潜力。

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