Contrasting the evolution of radiation fog over a heterogeneous region in south‐west France during the SOFOG3D campaign

IF 3 3区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES
J. Thornton, J. Price, F. Burnet, C. Lac
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引用次数: 0

Abstract

Observations made during the recent SOuth‐west FOGs 3D experiment (SOFOG3D) have been used to investigate the formation and evolution of radiation fog over heterogeneous forest plantations. The focus was on comparing measurements made at a relatively open site on arable land with those made in an approximately 700m‐diameter field surrounded by tree plantations, with both sites hosting an instrumented 50m mast. These data showed that at the more sheltered site radiation fog tended to form earlier than at the more open site. This coincided with more rapid decreases, and lower minima, in both near‐surface temperatures and vertical turbulence from the late afternoon. It is proposed here that the surrounding forest creates a sheltering effect which can cause a reduction in the vertical turbulence and therefore the mixing of the cool near‐surface air with warmer air aloft. The near‐surface is therefore able to cool rapidly, enabling fog to form more readily. Data from additional sites of varying surroundings supported the findings that the more sheltered sites tended to exhibit lower near‐surface nocturnal temperatures. However, the onset of fog formation observed at these additional sites suggested that there could be a limit to how sheltered a site may be before fog formation is inhibited rather than enabled by the surroundings.This article is protected by copyright. All rights reserved.
对比SOFOG3D运动期间法国西南部非均匀区域辐射雾的演变
在最近的西南雾三维实验(SOFOG3D)中,观测结果被用于研究非均匀森林人工林辐射雾的形成和演变。研究的重点是比较在相对开放的可耕地上进行的测量与在大约700米直径的种植园周围进行的测量,两个地点都有一个50米的桅杆。这些数据表明,在较隐蔽的地点,辐射雾的形成往往比较开放的地点更早。与此同时,从下午晚些时候开始,近地表温度和垂直湍流的下降速度更快,最小值也更低。这里提出,周围的森林产生了一种遮蔽作用,可以减少垂直湍流,从而减少近地表冷空气与高空暖空气的混合。因此,近地表能够迅速冷却,使雾更容易形成。来自不同环境的其他地点的数据支持了这一发现,即遮挡越多的地点夜间近地表温度越低。然而,在这些额外的地点观察到的雾形成的开始表明,在周围环境抑制雾的形成而不是使雾形成之前,一个地点的遮蔽程度可能是有限的。这篇文章受版权保护。版权所有。
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来源期刊
CiteScore
16.80
自引率
4.50%
发文量
163
审稿时长
3-8 weeks
期刊介绍: The Quarterly Journal of the Royal Meteorological Society is a journal published by the Royal Meteorological Society. It aims to communicate and document new research in the atmospheric sciences and related fields. The journal is considered one of the leading publications in meteorology worldwide. It accepts articles, comprehensive review articles, and comments on published papers. It is published eight times a year, with additional special issues. The Quarterly Journal has a wide readership of scientists in the atmospheric and related fields. It is indexed and abstracted in various databases, including Advanced Polymers Abstracts, Agricultural Engineering Abstracts, CAB Abstracts, CABDirect, COMPENDEX, CSA Civil Engineering Abstracts, Earthquake Engineering Abstracts, Engineered Materials Abstracts, Science Citation Index, SCOPUS, Web of Science, and more.
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