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EFFECTS of vegetation types on soil moisture estimation from the normalized land surface temperature versus vegetation index space

机译:从归一化地表温度对植被指数空间的植被类型对土壤水分估算的影响

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Soil moisture (SM) is a key variable that has been widely used in many environmental studies. Land surface temperature versus vegetation index (LST-VI) space becomes a common way to estimate SM in optical remote sensing applications. Normalized LST-VI space is established by the normalized LST and VI to obtain the comparable SM in Zhang et al. (Validation of a practical normalized soil moisture model with in situ measurements in humid and semiarid regions [J]. International Journal of Remote Sensing, DOI: 10.1080/01431161.2015.1055610). The boundary conditions in the study were set to limit the point A (the driest bare soil) and B (the wettest bare soil) for surface energy closure. However, no limitation was installed for point D (the full vegetation cover). In this paper, many vegetation types are simulated by the land surface model - Noah LSM 3.2 to analyze the effects on soil moisture estimation, such as crop, grass and mixed forest. The locations of point D are changed with vegetation types. The normalized LST of point D for forest is much lower than crop and grass. The location of point D is basically unchanged for crop and grass.
机译:土壤湿度(SM)是已在许多环境研究中广泛使用的关键变量。地表温度与植被指数(LST-VI)空间成为估算光学遥感应用中SM的常用方法。归一化的LST-VI空间是由归一化的LST和VI建立的,从而在Zhang等人的文章中获得了可比的SM。实用的归一化土壤湿度模型在潮湿和半干旱地区的原位测量方法的验证[J]。国际遥感杂志,DOI:10.1080 / 01431161.2015.1055610)。研究中的边界条件设定为限制表面能封闭的A点(最干燥的裸土)和B点(最湿的裸土)。但是,没有为D点(完整的植被覆盖)安装任何限制。本文通过土地表面模型-Noah LSM 3.2模拟了许多植被类型,以分析对土壤水分估算的影响,例如作物,草木和混交林。 D点的位置随植被类型而变化。森林D点的归一化LST远低于农作物和草类。作物和草的D点的位置基本不变。

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