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Numerical Simulations of the Impacts of Mountain on Oasis Effects in Arid Central Asia

机译:山区对干旱中亚绿洲影响的数值模拟

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The oases in the mountain-basin systems of Central Asia are extremely fragile. Investigating oasis effects and oasis-desert interactions is important for understanding the ecological stability of oases. However, previous studies have been performed only in oasis-desert environments and have not considered the impacts of mountains. In this study, oasis effects were explored in the context of mountain effects in the northern Tianshan Mountains (NTM) using the Weather Research and Forecasting (WRF) model. Four numerical simulations are performed. The def simulation uses the default terrestrial datasets provided by the WRF model. The mod simulation uses actual terrestrial datasets from satellite products. The non-oasis simulation is a scenario simulation in which oasis areas are replaced by desert conditions, while all other conditions are the same as the mod simulation. Finally, the non-mountain simulation is a scenario simulation in which the elevation values of all grids are set to a constant value of 300 m, while all other conditions are the same as in the mod simulation. The mod simulation agrees well with near-surface measurements of temperature, relative humidity and latent heat flux. The Tianshan Mountains exert a cooling and wetting effects in the NTM region. The oasis breeze circulation (OBC) between oases and the deserts is counteracted by the stronger background circulation. Thus, the self-supporting mechanism of oases originating from the OBC plays a limited role in maintaining the ecological stability of oases in this mountain-basin system. However, the mountain wind causes the ?¢????cold-wet?¢?????¢???? island effects of the oases to extend into the oasis-desert transition zone at night, which is beneficial for plants in the transition region.
机译:中亚山区流域的绿洲极为脆弱。研究绿洲的影响和绿洲-沙漠之间的相互作用对于理解绿洲的生态稳定性很重要。但是,以前的研究仅在绿洲沙漠环境中进行,没有考虑山区的影响。在这项研究中,使用天气研究和预报(WRF)模型在天山北部(NTM)的山区影响的背景下探索了绿洲的影响。进行了四个数值模拟。 def模拟使用WRF模型提供的默认地面数据集。 Mod模拟使用来自卫星产品的实际地面数据集。非绿洲模拟是一种场景模拟,其中绿洲区域被沙漠条件代替,而所有其他条件与mod模拟相同。最后,非山区模拟是一种情景模拟,其中所有网格的高程值均设置为恒定值300 m,而所有其他条件与mod模拟中的相同。 mod模拟与温度,相对湿度和潜热通量的近地表测量非常吻合。天山在NTM地区发挥降温和润湿作用。绿洲和沙漠之间的绿洲微风循环(OBC)被较强的背景循环所抵消。因此,源自OBC的绿洲的自养机制在维持该山盆系统中绿洲的生态稳定性方面起着有限的作用。但是,山风会引起“ ¢湿”。绿洲的岛效应在夜间扩展到绿洲-荒漠过渡带,这对过渡带的植物是有益的。

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