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Nguyen-Quang, T. et al. ORCHIDEE-ROUTING: revising the river routing scheme using a high-resolution hydrological database. Geoscientific Model Development. 11(12), 4965–4985 (2018). Our data, overall, has better spatial resolution accuracy and clearer topology relationship than HydroSHEDS. Specifically, in our dataset, the rivers with upstream drainage area larger than 1000 km 2 were sketched according to the real rivers in Google Earth carefully and manually, and then burned into the elevation surface to modify the original DEM and produce correct river network. The river network and corresponding watershed obtained in our study is with a resolution of 3 arc-second resolution (approx. 90 m at the equator). The watersheds and sub-basins were coded based on a new method, which made the river code correspond to its watershed code. By contrast, for the HydroSHEDS database, only large rivers and lakes were burned into the original DEM. The resolution of their released river network and watershed is at 15 arc-second (approx. 500 m at the equator). The watersheds and sub-basins were delineated and coded hierarchically based on the topological concept of the Pfafstetter coding system. The efficiency to calculate the river network relationship decreases when less than 9 divisions are applied. Compared with HDMA The Trading and Procurement Codesets out how we approach water trading, setting out the policies, principles and requirements that will apply when we trade with appointed water companies and other service providers. Bid Assessment Framework Arnold, J. G., Srinivasan, R., Muttiah, R. S. & Williams, J. R. Large area hydrologic modeling and assessment part I: model development 1. JAWRA Journal of the American Water Resources Association. 34(1), 73–89 (1998). Lehner, B., Verdin, K. & Jarvis, A., HydroSHEDS technical documentation, version 1.0. World Wildlife Fund US, 1–27 (2006).

Capacity Available - LoS improvement required = Capacity Available to meet 2032 population targets - Level of service (LoS) improvement required. Leakage reduction and/or capital investment will be required to maintain/improve levels of service as demand increases. These proposals will be developed & prioritised through the National Water Resources Plan and investment planning process.Lehner, B., Verdin, K. & Jarvis, A. New global hydrography derived from spaceborne elevation data. Eos, Transactions American Geophysical Union 89, 93–94 (2008). The river at level 3 (L3 river) refers to the river that flows into the L2 river, and its confluence area is larger than one hundredth of the L2 river or 1000 km 2. Lehner, B., Verdin, K., Jarvis, A. HydroSHEDS technical documentation, version 1.0. World Wildlife Fund US, 1–27 (2006).

Li, T., Wang, G. & Chen, J. A modified binary tree codification of drainage networks to support complex hydrological models. Computers & Geosciences 36, 1427–1435 (2010). Commission of the European Communities, European Commission Directive 2000/60/EC of the European Parliament and of the council of 23 October 2000 establishing a framework for Community action in the field of water policy. (Office for Official Publications of the European Communities, 2000).USGS-Unitied States Geological Survey, HYDRO1K elevation derivative database., https://lta.cr.usgs.gov/HYDRO1K (2001). Munier, S. & Decharme, B. River network and hydro-geomorphological parameters at 1/12° resolution for global hydrological and climate studies. e. 14(5), 2239–2258 (2022).

Lehner, B., Verdin, K. & Jarvis, A., HydroSHEDS Technical Documentation. World Wildlife Fund US, http://hydrosheds.cr.usgs.gov (2006). Pokhrel, Y. et al. Global terrestrial water storage and drought severity under climate change. Nature Climate Change. 11(3), 226–233 (2021).Srinivasan, R., Ramanarayanan, T. S., Arnold, J. G. & Bednarz, S. T. Large area hydrologic modeling and assessment part II: model application 1. JAWRA Journal of the American Water Resources Association. 34(1), 91–101 (1998). Yan, D. et al. A data set of inland lake catchment boundaries for the Qiangtang Plateau. Scientific data. 6(1), 1–11 (2019). The scale of the water resources challenge means we need to take a strategic approach to planning our future water supply. We’ve been working closely with other water companies to look at options that could provide a large volume of water for more than one water company to use. These options are called strategic resource options (SROs). Wang, K. et al. A new topological and hierarchical river coding method based on the hydrology structure. Journal of Hydrology. 580, 124243 (2020). Yamazaki, D. et al. A high‐accuracy map of global terrain elevations. Geophysical Research Letters. 44(11), 5844–5853 (2017).

The information in this table is based on available information at the date of issue and is subject to change. On the rare occasion there is a material change to the indication of available capacity during the course of the year, this will generally be updated in the web version of the register and the relevant Local Authority will be notified. The change will be reflected in the next annual iteration of the detailed register.Milly, P. C. D. et al. Stationarity is dead: Whither water management? Science 319, 573–574 (2008).

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