Impact assessment of reservoir desiltation measures for downstream riverbed migration in climate change: A case study in northern Taiwan
Tài liệu tham khảo
Al-Safi, 2020, The application of conceptual modelling to assess the impacts of future climate change on the hydrological response of the Harvey River catchment, J. Hydro Environ. Res., 28, 22, 10.1016/j.jher.2018.01.006
Balany, 2011, Different ways of calculating catchment rainfall: cases in Indonesia, J. Civ. Eng. Forum., XX, 1175
Chang, C.-H., Wang, Y.-T., Fu, H.-S., Lin, Y.-C., Jang, J.-H., Liu, C.-H. 2015. 2015 Soudelor Typhoon Disaster Investigation Report. New Taipei.
Chao, 2016, Extreme bed changes in the Gaoping river under climate change, Terr. Atmos. Ocean. Sci., 27, 717, 10.3319/TAO.2016.06.30.03
Chao, 2018, Riverbed migrations in Western Taiwan under climate change, Water (Switzerland), 10, 1
Emanuel, 2005, Increasing destructiveness of tropical cyclones over the past 30 years, Nature, 436, 686, 10.1038/nature03906
Foster, 2012, Changing sediment yield and sediment dynamics in the Karoo Uplands, South Africa; post-European impacts, L. Degrad. Dev., 23, 508, 10.1002/ldr.2180
Gao, 2020, Effects of climate change on peak runoff and flood levels in Qu River Basin, East China, J. HydroEnviron. Res., 28, 34
Garbrecht, 1995, A sediment transport capacity formulation for application to large channel networks, J. Soil Water Conserv., 50, 527
Hassan, 2019, Streamflow response to projected climate changes in the Northwestern Upper Indus Basin based on regional climate model (RegCM4.3) simulation, J. Hydro Environ. Res., 27, 32, 10.1016/j.jher.2019.08.002
Hsieh, 2019, Tamsui river flood control and riverbed migration, J. Chin. Inst. Civ. Hydraul. Eng., 31, 327
Huang, 2015, Change in ocean subsurface environment to suppress tropical cyclone intensification under global warming, Nat. Commun., 6, 7188, 10.1038/ncomms8188
IPCC, 2013. Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change. Cambridge, United Kingdom and New York, NY, USA.
Johns, 1997, The second Hadley Centre coupled ocean-atmosphere GCM: model description, spinup and validation, Clim. Dyn., 13, 103, 10.1007/s003820050155
Kang, 2007, A flood risk projection for Yongdam dam against future climate change, J. Hydro Environ. Res., 1, 118, 10.1016/j.jher.2007.07.003
Knutson, 2010, Tropical cyclones and climate change, Nat. Geosci., 3, 157, 10.1038/ngeo779
Lin, 2015, Recent decrease in typhoon destructive potential and global warming implications, Nat. Commun., 6, 10.1038/ncomms8182
Mizuta, 2014, Classification of CMIP5 future climate responses by the tropical sea surface temperature changes, SOLA, 10, 167, 10.2151/sola.2014-035
Mizuta, 2012, Climate Simulations Using MRI-AGCM3.2 with 20-km Grid, J. Meteorol. Soc. Japan, 90A, 233, 10.2151/jmsj.2012-A12
Peizhen, 2001, Increased sedimentation rates and grain sizes 2–4 Myr ago due to the influence of climate change on erosion rates, Nature, 410, 891, 10.1038/35073504
Proffitt, 1983, Transport of non-uniform sediments, J. Hydraul. Res., 21, 33, 10.1080/00221688309499448
Roble, 1994, A thermosphere-ionosphere-mesosphere-electrodynamics general circulation model (time-GCM): Equinox solar cycle minimum simulations (30–500 km), Geophys. Res. Lett., 21, 417, 10.1029/93GL03391
Skamarock, W.C., Klemp, J.B., Dudhia, J., Gill, D.O., Barker, D.M., Duda, M.G., Huang, X.-Y., Wang, W., Powers, J.G. 2008. A Description of the advanced research WRF Version 3. 10.5065/D68S4MVH.
Su, 2014, Assessment of the change of typhoon rainfall event characteristics using dynamic downscaling data under a climate change scenario, J. Taiwan Agric. Eng., 60, 48
Teutschbein, 2012, Bias correction of regional climate model simulations for hydrological climate-change impact studies: Review and evaluation of different methods, J. Hydrol., 456–457, 12, 10.1016/j.jhydrol.2012.05.052
Tu, 2009, The abrupt shift of typhoon activity in the vicinity of taiwan and its association with Western North Pacific-East Asian climate change, J. Clim., 22, 3617, 10.1175/2009JCLI2411.1
USACE, 2013. Hydrologic engineering center, hydrologic modeling system hec-hms, hydraulic reference manual version 4.0. Hydrologic Engineering. [WWW Document].
Wang, 2016, Operational C-band dual-polarization radar QPE for the subtropical complex Terrain of Taiwan, Adv. Meteorol., 2016, 4294271, 10.1155/2016/4294271
Webster, P.J., Holland, G.J., Curry, J.A., Chang, H.-R. 2005. Changes in Tropical Cyclone Number, Duration, and Intensity in a Warming Environment. Science (80-.). 309, 1844 LP–1846. https://dx.doi.org/10.1126/science.1116448.
WRA, 2020. Watershed integral improvement and adaptation planning manual. Taipei, Taiwan.
WRA, 2018. Risk assessment and hydraulic structures inspection of Tamsui river. Taipei, Taiwan.
WRA, 2017a. A preliminary review study on the concrete effects and the achievements of Taipei area flood control project of Tamsui river system. Taipei, Taiwan.
WRA, 2017b. Directions on Gate of Shihmen Reservoir. Taiwan.
WRA, 2017c. Impacts on the downstream river ecology and bed evolution by the operation of flood control and sediment desiltation of Shimen Reservoir. Taipei, Taiwan.
WRA, 2015a. Feasibility study of Amouping desilting tunnel project for Shimen Reservoir summary report. Taipei, Taiwan.
WRA, 2015b. Impact assessment of sediment transport at Tansui estuary on surrounding coast. Taipei, Taiwan.
WRA, 2015c. Impacts and improvement strategies on the downstream river sediment concentration and bed evolution by the operation of flood control and sediment desiltation of the Shihmen Reservoir. Taipei, Taiwan.
WRA, 2012. Hydraulic model studies for sediment sluicing and flood diversion engineering of Shihman reservoir. Taipei, Taiwan.
WRA, 2011. Impact evaluation of sediment released from Shihmen Reservoir on downstream river morphology. Taipei, Taiwan.
WRA, 2010. The observation and measurement of sediment transport and the studies of application and development of density current simulation model in Shihman Reservoir. Taipei, Taiwan.
Wu, W., Vieira, D.A. 2002. One-Dimensional Channel Netwoek Model CCHE1D Version 3.0 - Technical Manual. National Center for Computational Hydroscience and Engineering, The Univ. of Mississippi.
Wu, 2004, One-dimensional numerical model for nonuniform sediment transport under unsteady flows in channel networks, J. Hydraul. Eng., 130, 914, 10.1061/(ASCE)0733-9429(2004)130:9(914)
Wu, 2000, Nonuniform sediment transport in alluvial rivers, J. Hydraul. Res., 38, 427, 10.1080/00221680009498296
Zhang, 2018, Analysis of the influence of rainfall spatial uncertainty on hydrological simulations using the bootstrap method, Atmos., 9, 71, 10.3390/atmos9020071