The applications of InSAR time series analysis for monitoring long-term surface change in peatlands

Zhou, Zhiwei (2013) The applications of InSAR time series analysis for monitoring long-term surface change in peatlands. PhD thesis, University of Glasgow.

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Printed Thesis Information: https://eleanor.lib.gla.ac.uk/record=b3008141

Abstract

In the past three decades, peatlands all over the world such as upland bogs, tropical fens, have been undergoing significant and rapid degradations. These degradations cause carbon loss and CO2 emissions, and also fuel climate change. In this research, I present three case studies on how space geodetic tools, especially Radar Interferometry (InSAR), can be used to monitor and to advance our understanding of the long-term surface changes in peatlands.
First, I investigate the eroding extent and severity of upland UK peatlands using InSAR. Both short wavelength C-band and long wavelength L-band data are explored in this study. I detect a long-term peat subsidence rate of about 0.3 cm/yr, and 2 cm of decrease in peat height between 2002 and 2010. I also examine the coherence performance of C- and L-band over upland bogs. I find L-band data provides better coherence than C-band in upland bogs. Second, I use InSAR time series generated by L-band images to map the spatial and temporal subsidence of drained tropical peatlands in Sumatra, Indonesia. And based on InSAR-derived subsidence rate data, I estimate carbon loss or CO2 emission. Third, I assess the effectiveness of peatland restoration work in in Central Kalimantan, Indonesia using InSAR (L-band images). Restoration effects and impact factors are investigated by the spatial and temporal changes of peat height, which also provide useful information for guiding future restoration activities in this region.
Overall, this research suggests that InSAR time series is feasible to monitor long-term peat height change in peatlands, provides new insights into the dynamic surface changes in peatlands, and helps to study the carbon loss and CO2 emissions from peatlands, and understand restoration effects.

Item Type: Thesis (PhD)
Qualification Level: Doctoral
Keywords: InSAR, Time series, peatlands, erosion, carbon loss, CO2 emission
Subjects: G Geography. Anthropology. Recreation > GB Physical geography
Colleges/Schools: College of Science and Engineering > School of Geographical and Earth Sciences > Earth Sciences
Supervisor's Name: Li, Dr. Zhenhong and Waldron, Prof. Susan
Date of Award: 2013
Depositing User: Mr Zhiwei Zhou
Unique ID: glathesis:2013-4875
Copyright: Copyright of this thesis is held by the author.
Date Deposited: 31 Jan 2014 11:09
Last Modified: 31 Jan 2014 11:24
URI: https://theses.gla.ac.uk/id/eprint/4875

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