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Environmental flow methodology approach based on ecological impact assessment for hydroelectric power plants and hydraulic structures on stream ecosystems in Turkey

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Abstract

Use areas of streams such as agricultural irrigation, drinking water and energy are important for people's needs. The uncontrolled increase in all these demands on the streams leads to a change in flow amount and regime thereof over time, causing the stream and dependent ecosystems to be adversely affected. The hydrological system and the stream ecosystems may not be significantly affected, with the removal of some water and/or the use of the stream for energy such that a stream does not differ substantially from the natural flow regime in the past. In this context, environmental flow assessments are considered, which are called the flow that should be provided in order to minimize the environmental impacts specific to each stream's flow basin characteristics and its ecosystem. The most reliable method is to determine the environmental water need in different stream systems with a holistic ecological impact assessment, as well as different scientific assessment methods. This study reveals environmental flow methodology studies, which have been revealed by integrated ecological impact assessment aiming to determine the principles and methods suitable for the geographical and climatic conditions of Turkey in order to minimize environmental risks for the design of river type hydroelectric power plants and water retention structures such as ponds and dams, which have been intensively planned, constructed and used for hydroelectric energy especially after 2010 in Turkey, and assessment of the "environmental flow" results established by these studies.

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Data availability

All evaluations in this manuscript contain the individual views of the author and do not include any institutional review. All data in this manuscript were collected from publicly available “Environmental Impact Assessment Reports” (https://eced-duyuru.csb.gov.tr/eced-prod/duyurular.xhtml).

References

  • Acreman M., & ve Dunbar M.J. (2004). Defining environmental river flow requirement a review, Hydrology and Earth Systems Sciences, S.8, 861-876. https://doi.org/10.5194/hess-8-861-2004

  • Alcacer-Santos, C. (2004). Environmental Flow Assessment for Ebro Delta in Spain-Improving Links Between Wetland and Catchment Management, Assessment and Provision of Environmental Flows in Mediterranean Watercourses: Concepts, Methods and Emerging Practice, Mediterranean Resource Kit.

  • AMEC Earth and Environmental Limited. (2003). Wetted perimeter assessment Shoal Harbour River, Shoal Harbour, Clarenville Newfoundland, Canada, NF, TF05205.

  • Bunn, S. E., & Arthington, A. H. (2002). Basic principles and ecological consequences of altered flow regimes for aquatic biodiversity. Environmental Management, 30, 492–507. https://doi.org/10.1007/s00267-002-2737-0

    Article  Google Scholar 

  • Davis, R., & Hırji, R. (2003). Water resources and environment technical note C.1, Environmental Flows; Concepts and Methods, The World Bank, Washington., USA.

  • DSI. (2022). Republic of Turkey Ministry of Agriculture and Forestry, General Directorate of State Hydraulic Works 2021 Activity Report.161p., Ankara, Turkey.

  • Dyson, M., Bergkamp, G., & Scnlon, J. (2003). Flow: The essentials of environmental flows. IUCN.

    Book  Google Scholar 

  • Güner E., et al., (2008) Some technical issues to be considered in the design of small hydraulic power plants, Electrical- Electronics and Computer Engineering Symposium 26–30 November 2008, p. 7–13, Bursa., Turkey.

  • IUCN. (2004). Assessment and provision of environmental flows in Mediterranean Watercourses; Concepts, Methods and Emerging Practise, Mediterranean Resource Kit.

  • King, J., Tharme, R., & Brown, C. (1999). Definition and implementation of instream flows, Final Report, World Commission On Dams.

  • King, J., Tharme, R., & De Villers, M. (2000). Environmental flow assessment for rivers: Manual for The Building Block Methodology. University of Cape Down.

    Google Scholar 

  • Maran, S. (2004). Environmental Flows and Integrated Water Resource Management: The Vamano River Case Study, Assessment and Provision of Environmental Flows in Mediterranean Watercourses: Concepts, Methods and Emerging Practice, Mediterranean Resource Kit.

  • Marotz, B., & Muhfeld, C. (2000). Evaluation of minimum flow requirements in the South Fork flathead river downstream of Hungry Horse Dam. Montana, 19–19–3, Bonneville Power Administration.

  • Meriç, T. (2013). Meeting on the development of environmental flow applications in the Turkey’s hydroelectric sector (Invited Article), WWF Türkiye, November 21st 2013, Ankara, Turkey.

  • Meriç, T., & Dikyar, R. (2014). Ecological impact analysis in stream ecosystems, (Invited Article) (Hydroelectric Poer Plants and Fish Passes Workshop, University of Süleyman Demirel, 25–26 June 2014-Isparta, Turkey.

  • Okumuş, E. (2011). Determination of environmental floe in river ecosystems, Expertise Report, Ministry of Environment and Forestry, 78p., Ankara, Turkey.

  • Parker, G.W., & Armstrong, D. S. (2004). Comparison of methods for determining streamflow requirements for aquatic habitat protection at selected sites on the Assabet and Charles Rivers, Eastern Massachusets, 2000–02, USGS, Scientific Investigations Report, 2004–5092.

  • Pyrce, R. (2004). Hydrological low flow indices and their uses. Trent University, Canada.

    Google Scholar 

  • Reinfelds, I., Haeusler, T., Brooks, A. J., & Willams, S. (2004). Refinement of the wetted perimeter breakpoint method for setting cease-top-pump limits or minimum environmental flows, River Research and Applications, 20, 671–685 p. https://doi.org/10.1002/rra.784

  • Smolar-Zvanut, N. (2004). The Rizana River: Environmental Flow Assessment, Assessment and Provision of Environmental Flows in Mediterranean Watercourses: Concepts, Methods and Emerging Practice, Mediterranean Resource Kit.

  • Tennant, D. L. (1976). Instream flow regimes for fish, wildlife, recreation and related environmental resources. Fisheries, 1, 6–10. https://doi.org/10.1577/1548-8446(1976)001%3C0006:IFRFFW%3E2.0.CO;2

    Article  Google Scholar 

  • Tuncil, F. (2014). Turkey’s hydroelectric energy policies and future vision, Master Science Thesis, University of Yıldız Teknik, 47 p , İstanbul, Turkey.

  • WWF Turkey. (2014). Environmental flow guide for sustainable hydropower, 69 p., İstanbul, Turkey.

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Acknowledgements

The author would like to extend his thanks to the working group of which the author is a member, established within the General Directorate of Nature Conservation and National Parks (DKMP), and the staff of the Wetlands Branch Directorate who contributed to the preparation of the "Assessment Report for HEPP Projects and Other Hydraulic Activity Requests ".

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Correspondence to B. Teoman Meriç.

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The author declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this manuscript and the datasets generated during and/or analysed during the current study are available from the corresponding author on reasonable request.

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Meriç, B.T. Environmental flow methodology approach based on ecological impact assessment for hydroelectric power plants and hydraulic structures on stream ecosystems in Turkey. Environ Monit Assess 194, 455 (2022). https://doi.org/10.1007/s10661-022-10100-0

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