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Winter Nocturnal Air Temperature Distribution for a Mesoscale Plain of a Snow-Covered Region: Field Meteorological Observations and Numerical Simulations

机译:冬季夜间空气温度分布为雪覆盖的地区的Mescle Plane:现场气象观测和数值模拟

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摘要

Winter air temperatures strongly affect crop overwintering and cold resource usage. To clarify how winter air temperature distributions are formed in a mesoscale plain, field observations and simulations were conducted for the Tokachi region in Japan. Results elucidating the winter climate within the plain revealed that the winter mean air temperature at each site was correlated closely with the mean daily minimum air temperature. The daily minimum air temperature was not correlated with altitude, suggesting that local variation of the daily minimum temperature influences the temperature distribution. Observations at different distances from the upwind mountains revealed that nocturnal air temperatures were higher for stronger winds closer to the mountain foot. Low temperatures associated with wind speed suggest that radiative cooling strongly affects the temperature distribution. Wind and temperature conditions in the boundary layer influence the degree of drop in nocturnal air temperature and its distribution. The wind speed and direction, respectively, affect the extent and direction of the high-temperature zone from the northwest mountain foot. Simulations with a spatial resolution of 2 km reproduced the observed temperatures, but the error exceeded 5 degrees C at sites having complex terrain under moderate or strong wind conditions. A higher-resolution model of 0.5 km showed that simulated temperatures approach the observed temperatures in association with a local wind system of down-valley drainage flow. In conclusion, the synoptic background, wind strength and direction over the plain, and microscale valleys affect boundary layer mixing and, thereby, determine the winter air temperature distribution.
机译:冬季空气温度强烈影响作物越冬和冷库使用。为了阐明冬季空气温度分布在Mescle平原中,对日本的Tokachi地区进行了现场观测和模拟。结果阐明了平原内冬季气候的结果表明,每个部位的冬季平均空气温度与平均每日最低气温密切相关。每日最小空气温度与高度无关,表明每日最低温度的局部变化会影响温度分布。从挤压山脉不同距离的观察显示,对于山脚更靠近山脚的风,夜间空气温度较高。与风速相关的低温表明辐射冷却强烈影响温度分布。边界层中的风和温度条件会影响夜间空气温度下降的程度及其分布。空速和方向分别影响来自西北山脚的高温区的范围和方向。空间分辨率的模拟2公里再现了观察到的温度,但在中等或强风条件下具有复杂地形的地点超过5摄氏度。更高分辨率的0.5公正的模型表明,模拟温度接近观察到的温度与下谷排水流的局部风系统相关联。总之,平原上的天气背景,风力和方向,微观谷的影响影响边界层混合,从而确定冬季空气温度分布。

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