Relationships between Forest-Stand Parameters and Sentinel‑2 Spectral Reflectance in the Central Russian Forest–Steppe

IF 0.6 4区 物理与天体物理 Q4 ASTRONOMY & ASTROPHYSICS Cosmic Research Pub Date : 2024-02-27 DOI:10.1134/s0010952523700661
E. A. Terekhin
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Abstract

The article presents results of analysis of the relationships between forest-stand parameters (age, height, growing stock volume) and Sentinel‑2 spectral reflectance in the Central Russian forest–steppe. The age of oak forests is inversely related to the reflectance in all spectral ranges. The strongest relationship between age and spectral response was found in the red and short wave infrared (SWIR) bands. The relationships between forest age and reflectance in all Sentinel‑2 bands are curvilinear and are most reliably approximated by a logarithmic curve. The height and growing stock volume of oak forests are also in inverse, curvilinear dependence with spectral reflectance in all ranges. The relationship of the height of oak forests with the spectral response is stronger than with the age of the stand. Ash-dominated forests and oak-dominated forests are characterized by similar relationships between age, forest height, and spectral reflectance. For the ages and heights of forests dominated by ash, the strongest relationship with the spectral reflectance values was also found for the Sentinel‑2 SWIR bands.

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俄罗斯中部森林草原的林地参数与哨兵-2 号光谱反射率之间的关系
摘要 本文介绍了俄罗斯中部森林草原林分参数(年龄、高度、生长量)与哨兵-2 号光谱反射率之间关系的分析结果。橡树林的年龄与所有光谱范围的反射率成反比。在红色和短波红外(SWIR)波段,年龄与光谱响应之间的关系最为密切。在所有哨兵-2 波段中,森林年龄与反射率之间的关系都是曲线关系,用对数曲线来近似最为可靠。橡树林的高度和生长量也与所有波段的光谱反射率呈反曲线关系。橡树林的高度与光谱响应的关系要强于与林分年龄的关系。以白蜡为主的森林和以橡树为主的森林在树龄、林高和光谱反射率之间的关系相似。对于以白蜡为主的森林的年龄和高度,哨兵-2 SWIR 波段也发现了与光谱反射率值之间的最强关系。
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来源期刊
Cosmic Research
Cosmic Research 地学天文-工程:宇航
CiteScore
1.10
自引率
33.30%
发文量
41
审稿时长
6-12 weeks
期刊介绍: Cosmic Research publishes scientific papers covering all subjects of space science and technology, including the following: ballistics, flight dynamics of the Earth’s artificial satellites and automatic interplanetary stations; problems of transatmospheric descent; design and structure of spacecraft and scientific research instrumentation; life support systems and radiation safety of manned spacecrafts; exploration of the Earth from Space; exploration of near space; exploration of the Sun, planets, secondary planets, and interplanetary medium; exploration of stars, nebulae, interstellar medium, galaxies, and quasars from spacecraft; and various astrophysical problems related to space exploration. A chronicle of scientific events and other notices concerning the main topics of the journal are also presented.
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