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Change in dust seasonality as the primary driver for orbital-scale dust storm variability in East Asia

机译:尘埃季节性的变化作为东亚轨道尺度尘埃风暴变异性的主要驾驶员

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Glacial periods are recognized to be dustier than interglacials, but the conditions leading to greater dust mobilization are poorly defined. Here we present a new high-resolution dust record based on Th-230-normalized He-4 flux from Ocean Drilling Program site 882 in the Subarctic North Pacific covering the last 170,000years. By analogy with modern relationships, we infer the mechanisms controlling orbital-scale dust storm variability in East Asia. We propose that orbital-scale dust flux variability is the result of an expansion of the dust season into summer, in addition to more intense dust storms during spring and fall. The primary drivers influencing dust flux include summer insolation at subarctic latitudes and variable Siberian alpine glaciation, which together control the cold air reservoir in Siberia. Changes in the extent of the Northern Hemisphere ice sheets may be a secondary control.
机译:冰川时期被认为比中间夹裂都达到粉,但导致粉尘动员的条件差异很差。 在这里,我们展示了一种新的高分辨率灰尘记录,基于Th-230标准化的He-4助长的He-4助禽在亚古氏区北太平洋覆盖了最后170,000年的亚古氏区。 通过比喻与现代关系,我们推断了控制东亚轨道级尘埃风暴变异性的机制。 我们提出了轨道级灰尘助焊剂可变性是粉尘季节扩展到夏季的结果,除了在春季和秋季更加强烈的尘暴。 影响灰尘通量的主要驱动因素包括夏宫纬度和可变西伯利亚高山冰川的夏季缺失,这些冰川冰川在西伯利亚的冷空气储存器中共同控制。 北半球冰盖的程度的变化可能是二次控制。

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