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Remote and in situ measurements of soil and vegetation water content.

机译:远程和就地测量土壤和植被的水分含量。

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Accurate estimates of soil moisture are necessary to predict evapotranspiration, runoff, infiltration, and groundwater recharge and, through these variables, weather, climate, and fire and flood frequencies. This dissertation is motivated by the need to estimate soil water content from remotely sensed passive microwave emission. Two different approaches are taken: (1) improved modeling of the microwave emission from the land surface; and (2) measurements of the average dielectric properties of the soil media and vegetation canopies. Consequently, the first part of the dissertation describes how a stratified dielectric model of the microwave emission from the soil was extended to take into account the effects of vegetation. The model parameters were calibrated using observed data and a robust optimization routine. However, the availability of measurements of some of these parameters, particularly the profile of dielectric permittivity of the canopy, would facilitate a more complete evaluation of the accuracy of the extended microwave emission model. The second part of this dissertation describes progress towards the development of a technique to measure the dielectric of vegetation canopies. This technique is based on gated time domain transmission measurements through the substance of interest. Preliminary studies carried out using soils with varying salinity and water content and vegetation show (1) an unexpected response of the signal to saline soils, and (2) a possible dielectric signature of the onset of stress in plant stems.
机译:准确估算土壤湿度对于预测蒸散,径流,入渗和地下水补给以及通过这些变量,天气,气候以及火灾和洪水频率是必要的。本文的出发点是需要从遥感的被动微波辐射中估算土壤含水量。采取了两种不同的方法:(1)改进对陆地表面微波发射的建模; (2)测量土壤介质和植被冠层的平均介电性能。因此,本文的第一部分描述了如何扩展土壤微波发射的分层介电模型以考虑植被的影响。使用观察到的数据和强大的优化例程对模型参数进行校准。然而,这些参数中的一些参数的测量可用性,尤其是冠层的介电常数分布,将有助于对扩展的微波发射模型的准确性进行更完整的评估。本文的第二部分描述了测量植被冠层电介质技术的进展。该技术基于通过关注物质的门控时域传输测量。使用盐度,含水量和植被变化的土壤进行的初步研究表明(1)信号对盐渍土壤的出乎意料的响应,以及(2)植物茎部应力的可能介电特征。

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