频率为 435 兆赫的森林土壤上部有机层介电模型

IF 0.9 4区 地球科学 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES
A. Yu. Karavaiskii, Yu. I. Lukin
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引用次数: 0

摘要

摘要 根据根区解冻和冻结森林有机土壤混合物的折射介电模型,建立了频率为 435 MHz 的介电模型。该模型是在对有机质含量在 15% 到 31% 之间的四种土壤进行介电测量的基础上建立的。介电测量是在 0 至 0.6 克/克的重量水分和 -30 至 25 摄氏度的温度范围内进行的。模型计算值与复介电常数实部(ε')和虚部(ε'')测量值之间的判定系数(R2)为 0.97。复介电常数的实部和虚部的归一化均方根误差分别为 16% 和 21%。该介电模型可用于遥感算法,从雷达和辐射测量数据中检索根区森林土壤湿度值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Dielectric Model of the Upper Organic Layer of Forest Soils for a Frequency of 435 MHz

Dielectric Model of the Upper Organic Layer of Forest Soils for a Frequency of 435 MHz

Abstract

A dielectric model based on the refractive dielectric model of the mixture of thawed and frozen forest organic soils in the root zone for a frequency of 435 MHz has been developed. The model is created on the basis of dielectric measurements of four soils whose organic matter content varies in the range from 15 to 31%. The dielectric measurements are carried out in the range of the gravimetric moisture from 0 to 0.6 g/g and temperature range from –30 to 25°C. The coefficient of determination (R2) between values calculated by the model and measured values of the real (ε') and imaginary (ε'') parts of complex dielectric permittivity is 0.97. The normalized root-mean-square error is 16 and 21% for the real and imaginary parts of the complex dielectric permittivity, respectively. This dielectric model may be applied in remote sensing algorithms when retrieving the value of forest soil moisture in the root zone from radar and radiometric data.

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来源期刊
CiteScore
1.40
自引率
28.60%
发文量
56
审稿时长
6-12 weeks
期刊介绍: Izvestiya, Atmospheric and Oceanic Physics is a journal that publishes original scientific research and review articles on vital issues in the physics of the Earth’s atmosphere and hydrosphere and climate theory. The journal presents results of recent studies of physical processes in the atmosphere and ocean that control climate, weather, and their changes. These studies have possible practical applications. The journal also gives room to the discussion of results obtained in theoretical and experimental studies in various fields of oceanic and atmospheric physics, such as the dynamics of gas and water media, interaction of the atmosphere with the ocean and land surfaces, turbulence theory, heat balance and radiation processes, remote sensing and optics of both media, natural and man-induced climate changes, and the state of the atmosphere and ocean. The journal publishes papers on research techniques used in both media, current scientific information on domestic and foreign events in the physics of the atmosphere and ocean.
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