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在复杂的岛屿环境中检查气候风模式和模拟花粉扩散。

Examination of climatological wind patterns and simulated pollen dispersion in a complex island environment.

机构信息

Atmospheric Technologies Group, Savannah River National Laboratory, Aiken, SC, 29808, USA.

Department of Agronomy, Iowa State University, Ames, IA, 50011, USA.

出版信息

Int J Biometeorol. 2017 Aug;61(8):1481-1492. doi: 10.1007/s00484-017-1325-1. Epub 2017 Mar 29.

Abstract

Complex terrain creates small-scale circulations which affect pollen dispersion but may be missed by meteorological observing networks and coarse-grid meteorological models. On volcanic islands, these circulations result from differing rates of surface heating between land and sea as well as rugged terrain. We simulated the transport of bentgrass, ryegrass, and maize pollen from 30 sources within the agricultural regions of the Hawaiian island Kaua'i during climatological conditions spanning season conditions and the La Niña, El Niño, and neutral phases of the El Niño-Southern Oscillation. Both pollen size and source location had major effects on predicted dispersion over and near the island. Three patterns of pollen dispersion were identified in response to prevailing wind conditions: southwest winds transported pollen inland, funneling pollen grains through valleys; east winds transported pollen over the ocean, with dispersive tails for the smallest pollen grains following the mean wind and extending as far as the island of Ni'ihau 35 km away; and northeast winds moved pollen inland counter to the prevailing flow due to a sea breeze circulation that formed over the source region. These results are the first to predict the interactions between complex island terrain and local climatology on grass pollen dispersion. They demonstrate how numerical modeling can provide guidance for field trials by illustrating the common flow regimes present in complex terrain, allowing field trials to focus on areas where successful sampling is more likely to occur.

摘要

复杂地形会产生影响花粉扩散的小规模环流,但这些环流可能会被气象观测网络和粗网格气象模型所忽略。在火山岛上,这些环流是由陆地和海洋之间不同的地表加热速率以及崎岖的地形造成的。我们模拟了夏威夷考艾岛农业区 30 个源内的弯叶狗尾草、黑麦草和玉米花粉在跨越季节条件以及厄尔尼诺-南方涛动的拉尼娜、厄尔尼诺和中性阶段的气候条件下的输送。花粉大小和源位置对岛屿上空和附近的预测扩散都有重大影响。根据盛行风条件,确定了三种花粉扩散模式:西南风将花粉向内陆输送,将花粉颗粒通过山谷引导;东风将花粉输送到海洋上,最小的花粉颗粒的弥散尾部跟随平均风,并延伸到 35 公里外的尼豪岛;东北风由于在源区形成的海风环流而与盛行气流相反,将花粉向内陆输送。这些结果是首次预测复杂岛屿地形与草花粉扩散的局地气候之间的相互作用。它们表明,数值模拟如何通过说明复杂地形中存在的常见流动模式为田间试验提供指导,使田间试验能够集中在成功采样更有可能发生的区域。

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