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Pawan Thapa

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I am a graduate student in the Department of Geography at the The University of Alabama, Tuscaloosa. My research focuses on geographic information science (GIS), remote sensing, machine learning, and deep learning explicitly applying analysis, mapping, and modeling of rivers for width, centerline, direction, and discharge to estimate flood inundation.

Featured Projects

Programming Language Proficiency

Softwares

Instruments

Licenses

Research Papers

• Thapa, P. (2022). Time Series Analysis and Forecast of COVID-19 Pandemic. In: Hassan, S.A., Mohamed, A.W., Alnowibet, K.A. (eds) Decision Sciences for COVID-19. International Series in Operations Research & Management Science, vol 320. Springer, Cham. https://doi.org/10.1007/978-3-030-87019-5_6

• Thapa, P. (2022). Soil Erosion Estimation Using Revised Universal Soil Loss Equation (RUSLE) Model and GIS. In GIScience for the Sustainable Management of Water Resources (pp. 253-266). Apple Academic Press. https://doi.org/10.1201/9781003284512

• Regmi, S., Dhungana, B., Saud, R., Gautam, S., Thapa, P., & Bhandari, R. (2022). Prospection of Potential Iron Deposit in Gandaki and Lumbini Province of Nepal Using Remote Sensing Technology. Journal on Geoinformatics, Nepal, 21(1). https://doi.org/10.3126/njg.v21i1.50886.

• Thapa, P., Kuikel, S. (2022). Spatial Analysis of Relationship between Land Surface Temperature, NDVI and LULCC. Geospace 7 (1).

• Thapa, P. (2021). Predicating COVID19 Epidemic in Nepal Using the SIR Model. In: Oliva, D., Hassan, S.A., Mohamed, A. (eds) Artificial Intelligence for COVID-19. Studies in Systems, Decision and Control, vol 358. Springer, Cham. https://doi.org/10.1007/978-3-030-69744-0_14.

• Thapa, P. (2021). The Relationship between Land Use and Climate Change: A Case Study of Nepal. In The Nature, Causes, Effects and Mitigation of Climate Change on the Environment. IntechOpen. https://doi.org/10.5772/intechopen.98282.

• Thapa, P. (2021). POTENTIAL OF UNMANNED AERIAL VEHICLES FOR AGRICULTURE: A REVIEW. Review of Behavioral Aspect in Organizations and Society, 3(1), 1-8. https://doi.org/10.32770/rbaos.vol31-8.

• Thapa, P. (2021). Impacts of Land-Use and Land-Cover Change on Land Degradation: A Case Study in Dolakha District, Nepal. In Re-envisioning Remote Sensing Applications (pp. 209-216). Taylor & Francis Group Publishers. https://doi.org/10.1201/9781003049210-15.

• Thapa, P. (2021). Still a Vision Cadastre 2014 for Nepal. Türkiye Arazi Yönetimi Dergisi , 3 (2) , 53-57 . https://doi.org/10.51765/tayod.899431.

• Thapa, P., & Thapa, N. (2021). Land Parcel Information System Using Free and Open-Source Platform. Proceedings of FIG eWorking Week, 2021. TS07.2_thapa_10910.pdf (fig.net)

• Thapa P., Gautam A. (2021). Potential of Free and Open-Source Software for Education in Developing Countries, Proceedings of FOSS4G Asia 2021: In The Era of Artificial Intelligence and IoT for Land Management and Sustainable Development.

• Thapa, P. (2020). Spatial estimation of soil erosion using RUSLE modeling: a case study of Dolakha district, Nepal. Environmental Systems Research, 9(1), 1-10 https://doi.org/10.1186/s40068-020-00177-2.

• Thapa P, (2020) A Prototype for Interactive Web Map December, Geospace VII.

• Thapa, P., & Upadhyaya, P. S. (2019). Vulnerability assessment of indigenous communities to climate change in Nepal. Journal of Land Management and Geomatics Education, 1(1), 41-46.

• Thapa, P., & Dhulikhel, N. (2019). Observed and perceived climate change analysis in the Terai Region, Nepal. GSJ, 7(12), 35-43.

Pawan Thapa's Projects

arcgis-notebooks-tutorial icon arcgis-notebooks-tutorial

Learn to work with ArcGIS Notebooks, combining ArcGIS API for Python, ArcPy and open source Python libraries using Jupyter Notebook

awesome-earthobservation-code icon awesome-earthobservation-code

A curated list of awesome tools, tutorials, code, projects, links, stuff about Earth Observation, Geospatial Satellite Imagery

bayts icon bayts

Set of tools to apply the probabilistic approach of Reiche et al. (2015, 2018) to combine multiple optical and/or Radar satellite time series and to detect deforestation/forest cover loss in near real-time. The package includes functions to apply the approach to both, single pixel time series and raster time series. Examples and test data are provided below.

centerline-width icon centerline-width

A Python package to find the centerline and width of rivers based on the latitude and longitude of the right and left bank (v1.6.0)

covid19-agent-based-model icon covid19-agent-based-model

This repository contains the Python implementation of the agent-based model used to model the spread of COVID-19.

curvaturepy icon curvaturepy

Code for analyzing the relationship between curvature and migration rate in meandering rivers

dea-notebooks icon dea-notebooks

Repository for Digital Earth Australia Jupyter Notebooks: tools and workflows for geospatial analysis with Open Data Cube and Xarray

deepwatermap icon deepwatermap

a deep model that segments water on multispectral images

dp_python icon dp_python

Optimized Dynamic Programming (Dynamic Time Warp) as a Python external

drainagenetworkextraction icon drainagenetworkextraction

This is a Python code to extract channel and valley networks for high resolution Digital Elevation Models (DEMs).

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