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Assessing the effect of future landslide on ecosystem services in Aqabat Al-Sulbat region, Saudi Arabia

Author

Listed:
  • Saeed Alqadhi

    (King Khalid University)

  • Javed Mallick

    (King Khalid University)

  • Swapan Talukdar

    (Jamia Millia Islamia)

  • Mohd. Ahmed

    (King Khalid University)

  • Roohul Abad Khan

    (King Khalid University)

  • Showmitra Kumar Sarkar

    (Khulna University of Engineering and Technology)

  • Atiqur Rahman

    (Jamia Millia Islamia)

Abstract

Ecosystem conservation requires monitoring natural resources, such as vegetation, freshwater, and wetland systems, as well as their adaptations to natural and anthropogenic stressors. As a result, the present study intends to assess the effect of future landslide on different ecosystem services in Aqabat Al-Sulbat regions. In the present study, landslide susceptibility maps (LSM) at different return periods as a proxy of future landslide have been generated with integration of ensemble machine learning algorithms. Stacking framework based on bagging, dagging, and artificial neural network (ANN) along with random forest has been proposed to generate LSMs. Also, bagging, dagging, and ANN have been applied individually. Receiver operational characteristics (ROC curve) were used to validate the LSM model against reality. The best LSM predicting model determined by the ROC curve was used to create future LSM maps by combining rainfall at 2–100 year return periods (using Gumble extreme value distribution). The potential loss of ecosystem services value in the Aqabat Al-Sulbat region was estimated. All models anticipate 6–16 km2 and 27–41 km2 of the study region as very high and high land susceptibility (LS) zones, respectively. According to the area under the curve (AUC) of the ROC curve, stacking-bagging outperformed all other models (AUC: 0.91). While the region encompassed by very high LS zones would steadily rise from 2 to 100 year return periods (6.1–20.44 km2). As a result, ecosystem services (ES) would be destroyed as well. The results revealed that the ES generating region with zero value will steadily expand with increasing return periods (39–42 km2) owing to the expansion of high LS zones. The research delivers reliable spatially explicit results in order to influence policy decisions on forest management investment, landslide management, and development activity management as well as replication possibilities in other data sparse places.

Suggested Citation

  • Saeed Alqadhi & Javed Mallick & Swapan Talukdar & Mohd. Ahmed & Roohul Abad Khan & Showmitra Kumar Sarkar & Atiqur Rahman, 2022. "Assessing the effect of future landslide on ecosystem services in Aqabat Al-Sulbat region, Saudi Arabia," Natural Hazards: Journal of the International Society for the Prevention and Mitigation of Natural Hazards, Springer;International Society for the Prevention and Mitigation of Natural Hazards, vol. 113(1), pages 641-671, August.
  • Handle: RePEc:spr:nathaz:v:113:y:2022:i:1:d:10.1007_s11069-022-05318-7
    DOI: 10.1007/s11069-022-05318-7
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    1. Dominati, E.J. & Mackay, A. & Lynch, B. & Heath, N. & Millner, I., 2014. "An ecosystem services approach to the quantification of shallow mass movement erosion and the value of soil conservation practices," Ecosystem Services, Elsevier, vol. 9(C), pages 204-215.
    2. Grazia Brunetta & Stefano Salata, 2019. "Mapping Urban Resilience for Spatial Planning—A First Attempt to Measure the Vulnerability of the System," Sustainability, MDPI, vol. 11(8), pages 1-24, April.
    3. Xiao-Peng Song & Matthew C. Hansen & Stephen V. Stehman & Peter V. Potapov & Alexandra Tyukavina & Eric F. Vermote & John R. Townshend, 2018. "Global land change from 1982 to 2016," Nature, Nature, vol. 560(7720), pages 639-643, August.
    4. Bader, Benjamin & Schuster, Tassilo, 2015. "Expatriate Social Networks in Terrorism-Endangered Countries: An Empirical Analysis in Afghanistan, India, Pakistan, and Saudi Arabia," Journal of International Management, Elsevier, vol. 21(1), pages 63-77.
    5. Bredin, Yennie K. & Lindhjem, Henrik & van Dijk, Jiska & Linnell, John D.C., 2015. "Mapping value plurality towards ecosystem services in the case of Norwegian wildlife management: A Q analysis," Ecological Economics, Elsevier, vol. 118(C), pages 198-206.
    6. Romulus Costache, 2019. "Flood Susceptibility Assessment by Using Bivariate Statistics and Machine Learning Models - A Useful Tool for Flood Risk Management," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 33(9), pages 3239-3256, July.
    7. Gill,Indermit S. & Revenga,Ana L. & Zeballos,Christian, 2016. "Grow, invest, insure : a game plan to end extreme poverty by 2030," Policy Research Working Paper Series 7892, The World Bank.
    8. Angelika Wirtz & Wolfgang Kron & Petra Löw & Markus Steuer, 2014. "The need for data: natural disasters and the challenges of database management," Natural Hazards: Journal of the International Society for the Prevention and Mitigation of Natural Hazards, Springer;International Society for the Prevention and Mitigation of Natural Hazards, vol. 70(1), pages 135-157, January.
    9. Winsemius, Hessel C. & Jongman, Brenden & Veldkamp, Ted I.E. & Hallegatte, Stephane & Bangalore, Mook & Ward, Philip J., 2018. "Disaster risk, climate change, and poverty: assessing the global exposure of poor people to floods and droughts," Environment and Development Economics, Cambridge University Press, vol. 23(3), pages 328-348, June.
    10. Xiao-Peng Song & Matthew C. Hansen & Stephen V. Stehman & Peter V. Potapov & Alexandra Tyukavina & Eric F. Vermote & John R. Townshend, 2018. "Author Correction: Global land change from 1982 to 2016," Nature, Nature, vol. 563(7732), pages 26-26, November.
    11. Amro Elfeki & Milad Masoud & Burhan Niyazi, 2017. "Integrated rainfall–runoff and flood inundation modeling for flash flood risk assessment under data scarcity in arid regions: Wadi Fatimah basin case study, Saudi Arabia," Natural Hazards: Journal of the International Society for the Prevention and Mitigation of Natural Hazards, Springer;International Society for the Prevention and Mitigation of Natural Hazards, vol. 85(1), pages 87-109, January.
    12. Neumayer, Eric & Plümper, Thomas & Barthel, Fabian, 2014. "The political economy of natural disaster damage," LSE Research Online Documents on Economics 50699, London School of Economics and Political Science, LSE Library.
    13. Fish, Robert & Church, Andrew & Winter, Michael, 2016. "Conceptualising cultural ecosystem services: A novel framework for research and critical engagement," Ecosystem Services, Elsevier, vol. 21(PB), pages 208-217.
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