佐渡岛对新泻市和沿海平原的雪影效应

IF 2 4区 地球科学 Q3 METEOROLOGY & ATMOSPHERIC SCIENCES Atmospheric Science Letters Pub Date : 2023-07-20 DOI:10.1002/asl.1182
Hiroyuki Kusaka, Nobuyasu Suzuki, Masato Yabe, Hiroki Kobayashi
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引用次数: 0

摘要

日本靠近日本海的北陆地区通常会下大雪;然而,作为日本海一侧最大的城市,新泻市的降雪量比邻近城市要少。本研究以新泻市为例,探讨佐渡岛的雪影效应对降雪的影响。对10个冬季的长期雷达资料进行统计分析,发现188次雪影效应中有151次(80%)发生在新泻平原,在此期间有强烈的接近风到达该岛。这种雪影效应的位置总是在佐渡岛的下风处,并取决于风向。使用天气研究和预报模式的数值实验预测,有了该岛,新泻平原的降雪量会比没有该岛的降雪量少。此外,雪影效应发生在下风150公里以上的地区。实验表明,佐渡岛通过减弱下风减少了海面的热通量。同时,下风水平辐合减弱。同时,佐渡岛的地形降雪减少了背风海面上的水蒸气、云水和云冰的数量。因此,佐渡岛可以防止背风海面上的云线重新形成,并可以进一步减少背风平原上的降雪量,包括新泻市。
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The snow-shadow effect of Sado Island on Niigata City and the coastal plain

Japan's Hokuriku region, near the Sea of Japan, typically experiences heavy snowfall; however, Niigata City, the largest city on the Sea of Japan side, experiences lower levels of snowfall than neighbouring cities. This study investigates the snow-shadow effect of Sado Island on snowfall in Niigata City, located 45 km away leeward. Statistical analysis of long-term radar data for 10 winters showed that snow-shadow effects in the Niigata plain occurred in 151 (80%) of the 188 cases, during which a strong approaching wind reached the island. The location of this snow-shadow effect was always downwind of Sado Island and depended on the wind direction. Numerical experiments using the Weather Research and Forecasting model predicted that snowfall over the Niigata Plain would be lighter with the island than without it. Additionally, the snow-shadow effect occurs in areas more than 150 km downwind. The experiments showed that Sado Island reduces heat fluxes from the sea surface by weakening leeward winds. At the same time, the horizontal wind convergence downwind is weakened. Meanwhile, the orographic snowfall over Sado Island reduces the amount of water vapour, cloud water and cloud ice over the leeward sea. Therefore, Sado Island prevents cloud lines from redeveloping over the leeward sea and can further reduce snowfall over the leeward plain, including in Niigata City.

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来源期刊
Atmospheric Science Letters
Atmospheric Science Letters METEOROLOGY & ATMOSPHERIC SCIENCES-
CiteScore
4.90
自引率
3.30%
发文量
73
审稿时长
>12 weeks
期刊介绍: Atmospheric Science Letters (ASL) is a wholly Open Access electronic journal. Its aim is to provide a fully peer reviewed publication route for new shorter contributions in the field of atmospheric and closely related sciences. Through its ability to publish shorter contributions more rapidly than conventional journals, ASL offers a framework that promotes new understanding and creates scientific debate - providing a platform for discussing scientific issues and techniques. We encourage the presentation of multi-disciplinary work and contributions that utilise ideas and techniques from parallel areas. We particularly welcome contributions that maximise the visualisation capabilities offered by a purely on-line journal. ASL welcomes papers in the fields of: Dynamical meteorology; Ocean-atmosphere systems; Climate change, variability and impacts; New or improved observations from instrumentation; Hydrometeorology; Numerical weather prediction; Data assimilation and ensemble forecasting; Physical processes of the atmosphere; Land surface-atmosphere systems.
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