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Geography

Analysis of morphological change of lentic water bodies by using spatial vulnerability index (SVI) in Tarai region of Rapti river plains, India

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Received 19 Jun 2023, Accepted 06 Mar 2024, Published online: 25 Mar 2024

References

  • Bekele, T., Lemma, B., & Mengistou, S. (2018). Interaction of local community and wetlands: The case of Lake Ziway shore area, Ethiopia. International Journal of Scientific and Research Publications, 420.
  • Berlinches de Gea, A., Hautier, Y., & Geisen, S. (2023). Interactive effects of global change drivers as determinants of the link between soil biodiversity and ecosystem functioning. Global Change Biology, 29(2), 296–307. https://doi.org/10.1111/gcb.16471
  • Birk, S., Chapman, D., Carvalho, L., Spears, B. M., Andersen, H. E., Argillier, C., Auer, S., Baattrup-Pedersen, A., Banin, L., Beklioğlu, M., Bondar-Kunze, E., Borja, A., Branco, P., Bucak, T., Buijse, A. D., Cardoso, A. C., Couture, R.-M., Cremona, F., de Zwart, D.… Hering, D. (2020). Impacts of multiple stressors on freshwater biota across spatial scales and ecosystems. Nature Ecology & Evolution, 4(8), 1060–1068. https://doi.org/10.1038/s41559-020-1216-4
  • Chausson, A., Turner, B., Seddon, D., Chabaneix, N., Girardin, C. A., Kapos, V., Seddon, D., Key, I., Roe, D., Smith, A., Woroniecki, S., & Seddon, N. (2020). Mapping the effectiveness of nature‐based solutions for climate change adaptation. Global Change Biology, 26(11), 6134–6155. https://doi.org/10.1111/gcb.15310
  • Chen, X., Zhao, X., Zhao, Y., Wang, R., Lu, J., Zhuang, H., & Bai, L. (2023). Interaction of Climate Change and Anthropogenic Activity on the Spatiotemporal Changes of Surface Water Area in Horqin Sandy Land, China. Remote Sensing, 15(7), 1918.
  • Coppin, P. R., & Bauer, M. E. (1996). Change detection in forest ecosystems with remote sensing digital imagery. Remote Sensing Reviews, 13(3–4), 207–234. https://doi.org/10.1080/02757259609532305
  • Cunha, D. G. F., Do Carmo Calijuri, M., & Lamparelli, M. C. (2013). A trophic state index for tropical/subtropical reservoirs (TSItsr). Ecological Engineering, 60, 126–134. https://doi.org/10.1016/j.ecoleng.2013.07.058
  • Davidson, N. C. (2014). How much wetland has the world lost? long-term and recent trends in global wetland area. Marine and Freshwater Research, 65(10), 934–941. https://doi.org/10.1071/MF14173
  • Deka, J., Tripathi, O. M., & Khan, M. L. (2011). A multi-temporal remote sensing approach for monitoring changes in spatial extent of freshwater lake of deepor beel ramsar site, a major wetland of Assam. Journal of Wetland Ecology, 5, 40–47. https://doi.org/10.3126/jowe.v5i0.4696
  • De Voogt, K., Kite, G., Droogers, P., & Murray-Rust, H. (2000). Modelling water allocation between a wetland and irrigated agriculture in the Gediz Basin, Turkey. International Journal of Water Resources Development, 16(4), 639–650. https://doi.org/10.1080/713672530
  • Dodds, W. (2002). Freshwater ecology: Concepts and environmental applications. Elsevier.
  • Donia, N., & Farag, H. (2012). Monitoring Burullus lake using remote sensing techniques. Sixteenth International Water Technology Conference (Vol. 16, p. 2012), IWTC, Istanbul, Turkey.
  • El-Hattab, M. M. (2015). Change detection and restoration alternatives for the Egyptian lake maryut. The Egyptian Journal of Remote Sensing & Space Science, 18(1), 9–16.
  • Galatowitsch, D. M. (2018). Natural and anthropogenic drivers of wetland changes. In The wetland book II: Distribution, description, and conservation (pp. 359–367). Springer Nature.
  • Gebretsadik, T., & Mereke, K. (2017). Threats and opportunities to major rift valley lakes wetlands of Ethiopia. Agricultural Research & Technology, 9(1), 1–6. https://doi.org/10.19080/ARTOAJ.2017.09.555751
  • Gilarranz, L. J., Narwani, A., Odermatt, D., Siber, R., & Dakos, V. (2022). Regime shifts, trends, and variability of lake productivity at a global scale. Proceedings of the National Academy of Sciences, 119(35), e2116413119.
  • Giweta, M., & Worku, Y. (2018). Reversing the degradation of Ethiopian wetlands: Is it unachievable phrase or a call to effective action. International Journal of Environmental Sciences & Natural Science, 14(5), 136–146. https://doi.org/10.19080/IJESNR.2018.14.555898
  • Haack, B. (1996). Monitoring wetland changes with remote sensing: An East African example. Environmental Management, 20(3), 411–419. https://doi.org/10.1007/BF01203848
  • Heino, J., Alahuhta, J., Bini, L. M., Cai, Y., Heiskanen, A. S., Hellsten, S., Kortelainen, P., Kotamäki, N., Tolonen, K. T., Vihervaara, P., Vilmi, A., & Angeler, D. G. (2021). Lakes in the era of global change: Moving beyond single‐lake thinking in maintaining biodiversity and ecosystem services. Biological Reviews, 96(1), 89–106. https://doi.org/10.1111/brv.12647
  • Horne, A. J., & Goldman, C. R. (1994). Lake ecology overview limnology. McGraw-Hill Co.
  • Hossen, H., & Negm, A. (2016). Change detection in the water bodies of Burullus Lake, Northern Nile Delta, Egypt, using RS/GIS. Procedia Engineering, 154, 951–958. https://doi.org/10.1016/j.proeng.2016.07.529
  • Hutchinson, G. E. (1957). A treatise on limnology: Geography, physics and chemistry (Vol. 1). Wiley.
  • Hyangya, B. L., Riziki, J. W., Masilya, P. M., Zabene, F. Z., Alunga, G. L., Kaningini, B. M., & Kankonda, A. B. (2021). Physico‐chemical characterization of littoral water of Lake Kivu (southern basin, Central Africa) and use of water quality index to assess their anthropogenic disturbances. World Water Policy, 7(2), 166–193. https://doi.org/10.1002/wwp2.12059
  • Jeppesen, E., Søndergaard, M., & Liu, Z. (2017). Lake restoration and management in a climate change perspective: An introduction. Water, 9(2), 122. https://doi.org/10.3390/w9020122
  • Jorgensen, S., Tundisi, J. G., & Tundisi, T. M. (2013). Handbook of Inland aquatic ecosystem management, applied ecology, and environment management. Taylor and Francis Group. (Vol. 5). CRC Press.
  • Karim, F., Petheram, C., Marvanek, S., Ticehurst, C., Wallace, J., & Hasan, M. (2016). Impact of climate change on floodplain inundation and hydrological connectivity between wetlands and rivers in a tropical river catchment. Hydrological Processes, 30(10), 1574–1593.
  • Kerekes, J. (1977). The index of lake basin permanence. Internationale Revue Der Gesamten Hydrobiologie Und Hydrographie, 62(2), 291–293. https://doi.org/10.1002/iroh.1977.3510620207
  • Lu, D., Mausel, P., Brondizio, E., & Moran, E. (2004). Change detection techniques. International Journal of Remote Sensing, 25(12), 2365–2401. https://doi.org/10.1080/0143116031000139863
  • Madgwick, F. J. (1999). Strategies for conservation management of lakes. In The Ecological Bases for Lake and Reservoir Management: Proceedings of the Ecological Bases for Management of Lakes and Reservoirs Symposium, held 19–22 March 1996, Leicester, United Kingdom (pp. 309–323). Springer. https://link.springer.com/content/pdf/10.1023%2FA%3A1017086626140.pdf
  • Mason, I. M., Guzkowska, M. A. J., Rapley, C. G., & Street-Perrott, F. A. (1994). The response of lake levels and areas to climatic change. Climate Change, 27, 161–197. https://doi.org/10.1007/BF01093590
  • Mercier, G., Derrode, S., Trouvé, E., & Bombrun, L. (2010). Change detection in remote sensing observations. Multivariate Image Processing: Methods and Applications, 95.
  • Messager, M. L., Lehner, B., Grill, G., Nedeva, I., & Schmitt, O. (2016). Estimating the volume and age of water stored in global lakes using a geo-statistical approach. Nature Communications, 7(1), 13603. https://doi.org/10.1038/ncomms13603
  • Mi, H., Fagherazzi, S., Qiao, G., Hong, Y., & Fichot, C. G. (2019). Climate change leads to a doubling of turbidity in a rapidly expanding Tibetan lake. Science of the total environment, 688, 952–959.
  • Mitra, A. (2010). Saving a dying lake: The case of Ramgarh Tal in Gorakhpur, Uttar Pradesh. Unpublished Sectoral Study. Gorakhpur Environmental Action Group, Asian Cities Climate Change Resilience Network (ACCCRN).
  • Mukherjee, S., Rizvi, S. S., Biswas, G., Paswan, A. K., Vaiphei, S. P., Warsi, T., & Mitran, T. (2023). Aquatic Eco‐systems Under Influence of Climate Change and Anthropogenic Activities: Potential Threats and Its Mitigation Strategies. Hydrogeochemistry of Aquatic Ecosystems, 307–331.
  • Ramachandra, T. V. (2008). Spatial analysis and characterisation of lentic ecosystems: A case study of Varthur Lake, Bangalore. International Journal of Ecology & Development, 9(W08), 39–56.
  • Ramchandra, T. V. (2009). Conservation and management of Urban Wetlands: Strategies and challenges. http://wgbis.ces.iisc.ernet.in/energy
  • Ramsankaran, R. A. A. J., Verma, P., Majeed, U., & Rashid, I. (2023). Kayak-based low-cost hydrographic surveying system: A demonstration in high altitude proglacial lake associated with drang drung glacier, Zanskar Himalaya. Journal of Earth System Science, 132(1), 9. https://doi.org/10.1007/s12040-022-02021-w
  • Salman, M. A., Nomaan, M. S. S., Sayed, S., Saha, A., & Rafiq, M. R. (2021). Land use and land cover change detection by using remote sensing and gis technology in Barishal District, Bangladesh. Earth Sci Malaysia, 5(1), 33–40.
  • Schneider, J. C. (2000). Manual of fisheries survey methods II: With periodic updates (no. 25). Lansing, MI: Michigan Department of Natural Resources, Fisheries Division.
  • Sharip, Z., Suratman, S., & Shaaban, A. J. (2016). A national research and development blueprint for sustainable lake basin management in Malaysia. Lakes & Reservoirs: Research & Management, 21(4), 269–283. https://doi.org/10.1111/lre.12146
  • Singh, A. (1989). Review Article Digital change detection techniques using remotely-sensed data. International Journal of Remote Sensing, 10(6), 989–1003. https://doi.org/10.1080/01431168908903939
  • Singh, A., & Sharma, V. N. (2018). A stewardship of Ramgarh Lake in Gorakhpur district: Uses, problems and management, transaction. Institute of Indian Geographers, 40(1), 33–43.
  • Singh, A., & Sharma, V. N. (2019). A comparative assessment of anthropogenic pressure and trophic levels of urban (Ramgarh lake) and rural (chilua lake) lakes of Gorakhpur District, U.P. National Geographical Journal of India, 65(4), 340–349.
  • Sowmyashree, M. V., & Ramachandra, T. V. (2012, November). Temporal analysis of water bodies in mega cities of India. In LAKE 2012: International Conference on Conservation and Management of Wetland Ecosystems, Mahatma Gandhi University, Kottayam, Kerala, India (pp. 6–9).
  • Taube, C. M. (2000). Instructions for winter lake mapping. Chapter 12 in Schneider, James C. (ed.) 2000. Manual of fisheries survey methods II: With periodic updates. Fisheries Special Report, 25. Michigan Department of Natural Resources.
  • Turner, B., Meyer, W. B., & Skole, D. L. (1994). Global land-use/land-cover change: Towards an integrated study. Ambio Stockholm, 23(1), 91–95.
  • Vyas, L. N., Sharma, K. P., Sankhla, S. K., & Gopal, B. (1990). Primary production and energetics. In Ecology and management of aquatic vegetation in the Indian subcontinent, (pp. 149–175).Dordrecht: Springer Netherlands.
  • Zekarias, T., & Gelaw, A. (2023). Impacts of land use/land cover change on wetland ecosystem services of Lake Abaya-Chamo wetland, Rift Valley of Ethiopia. Geology, Ecology, and Landscapes, 1–12. https://doi.org/10.1080/24749508.2023.2202436