Roberts, Martyn ThomasWilkinson, Mark E.Hallett, PaulGeris, Josie2024-06-192024-06-192024-05Roberts, M T, Wilkinson, M E, Hallett, P & Geris, J 2024, 'New data-based analysis tool for functioning of Natural Flood Management measures reveals multi-site time-variable effectiveness', Journal of Hydrology, vol. 635, 131164. https://doi.org/10.1016/j.jhydrol.2024.1311640022-1694ORCID: /0000-0003-0159-0543/work/157656806ORCID: /0000-0001-7542-7832/work/162252204https://hdl.handle.net/2164/23659Thanks to the Scottish Government’s Hydro Nation Scholars Programme for funding MR to do this research. MW received funding from the Scottish Government’s Rural and Environment Sciences Analytical Services Division (JHI- D2-2) which enabled his contributions and supported the collection of wider hydrometric datasets in the Tarland catchment. JG and MW acknowledge funding from NERC (NE/ P010334/1) and Chivas Brothers (Glenlivet). In relation to Tarland, we wish to acknowledge the MacRobert Estate, local landowners and Carol Taylor and Helen Watson for their assistance with fieldwork. For Glenlivet, we wish to acknowledge Dr Ronald Daalmans, staff at the Glenlivet distillery and Dr Jessica Fennell and Dr Eva Loerke for their assistance with fieldwork. We would like to thank Dr Paul Quinn in relation to Belford. We are grateful to Prof Keith Beven who provided constructive comments that helped to improve the quality of the manuscript.133898016engSDG 13 - Climate ActionSDG 15 - Life on LandTemporary storage areasrunoff attenuationnature-based solutionsnatural flood managementfloodingRunoff attenuationNature-based solutionsNatural flood managementFloodingQE GeologyWater Science and TechnologyNatural Environment Research Council (NERC)NE/P010334/1Rural and Environmental Science and Analytical Services (RESAS)JHI-D2-2QENew data-based analysis tool for functioning of Natural Flood Management measures reveals multi-site time-variable effectivenessJournal article10.1016/j.jhydrol.2024.131164http://www.scopus.com/inward/record.url?scp=85190277133&partnerID=8YFLogxK635