Shoreline Dynamics and Evaluation of Cultural Heritage Sites on the Shores of Large Reservoirs: Kuibyshev Reservoir, Russian Federation
暂无分享,去创建一个
[1] K. Jayakumar. Analysis of shoreline changes along the coast of Tiruvallur district, Tamil Nadu, India , 2018, Journal of Geography and Cartography.
[2] Kieran Westley. Refining Broad-Scale Vulnerability Assessment of Coastal Archaeological Resources, Lough Foyle, Northern Ireland , 2019 .
[3] Ionut Cristi Nicu,et al. Natural risk assessment and mitigation of cultural heritage sites in North‐eastern Romania (Valea Oii river basin) , 2019 .
[4] C. Stoleriu,et al. ALLOCATION OF FLOOD CONTROL CAPACITY FOR A MULTIRESERVOIR SYSTEM. CASE STUDY OF THE BISTRITA RIVER (ROMANIA) , 2018, Carpathian Journal of Earth and Environmental Sciences.
[5] Christophe Morhange,et al. Tracking shoreline erosion of “at risk” coastal archaeology: the example of ancient Siraf (Iran, Persian Gulf) , 2018, Applied Geography.
[6] A. Kinda. Nature of Old Maps: As Primary Source Materials for Historical Geography , 2018 .
[7] Christopher S. Jazwa,et al. Erosion of Coastal Archaeological Sites on Santa Rosa Island, California , 2018, Western North American Naturalist.
[8] G. Tomasicchio,et al. Application of a Coastal Vulnerability Index. A Case Study along the Apulian Coastline, Italy , 2018, Water.
[9] J. Barceló,et al. Highly diverse Bronze Age population dynamics in Central-Southern Europe and their response to regional climatic patterns , 2018, PloS one.
[10] J. Štojdl,et al. Dam reservoirs as an efficient trap for historical pollution: the passage of Hg and Pb through the Ohře River, Czech Republic , 2018, Environmental Earth Sciences.
[11] M. Vanmaercke,et al. Mapping and spatial‐temporal assessment of gully density in the Middle Volga region, Russia , 2018, Earth Surface Processes and Landforms.
[12] J. Callow,et al. Drone photogrammetry and KMeans point cloud filtering to create high resolution topographic and inundation models of coastal sediment archives , 2018, Earth Surface Processes and Landforms.
[13] Beate Ratter,et al. Coastal landscapes: The relevance of researching coastscapes for managing coastal change in North Frisia , 2018 .
[14] Ionut Cristi Nicu,et al. Application of analytic hierarchy process, frequency ratio, and statistical index to landslide susceptibility: an approach to endangered cultural heritage , 2018, Environmental Earth Sciences.
[15] I. Nicu,et al. Monitoring and assessing the destruction of archaeological sites from Kuibyshev reservoir coastline, Tatarstan Republic, Russian Federation. A case study , 2018, Journal of Coastal Conservation.
[16] A. Vybornov,et al. Chronology of Kama Neolithic culture , 2018 .
[17] E. Pranzini. Coastal erosion and shore protection: A brief historical analysis , 2018, Journal of Coastal Conservation.
[18] V. Ivanov. Southern Cis-Urals in the Great Migration Period – Archaeological and Geographical Context , 2017 .
[19] C. Nilsson,et al. Soil erosion and deposition in the new shorelines of the Three Gorges Reservoir. , 2017, The Science of the total environment.
[20] B. Usmanov,et al. Qualitative assessment of the medieval fortifications condition with the use of remote sensing data (Republic of Tatarstan) , 2017 .
[21] T. Demkina,et al. Paleoecological crisis in the steppes of the Lower Volga region in the Middle of the Bronze Age (III–II centuries BC) , 2017, Eurasian Soil Science.
[22] P. Reimer,et al. Modern Freshwater Reservoir Offsets in the Eurasian Steppe: Implications for Archaeology , 2017, Radiocarbon.
[23] I. Nicu. Tracking natural and anthropic risks from historical maps as a tool for cultural heritage assessment: a case study , 2017, Environmental Earth Sciences.
[24] Michael J. E. O’Rourke,et al. Archaeological Site Vulnerability Modelling: The Influence of High Impact Storm Events on Models of Shoreline Erosion in the Western Canadian Arctic , 2017 .
[25] Saeed Wasel,et al. Sedimentological and geoenvironmental evaluation of the coastal area between Al-Khowkhah and Al-Mokha, southeastern Red Sea, Republic of Yemen , 2017, Environmental Earth Sciences.
[26] V. Patrushev. TEXTILE CERAMICS OF THE EARLY IRON AGE IN THE ARDINO SETTLEMENT , 2017 .
[27] I. Nicu. Cultural heritage assessment and vulnerability using Analytic Hierarchy Process and Geographic Information Systems (Valea Oii catchment, North-eastern Romania). An approach to historical maps , 2016 .
[28] Airat Sitdikov,et al. Study of anthropogenic and natural impacts on archaeological sites of the Volga Bulgaria period (Republic of Tatarstan) using remote sensing data , 2016, International Conference on Remote Sensing and Geoinformation of Environment.
[29] R. Troa,et al. In Situ Preservation of Marine Archaeological Remains Based on Geodynamic Conditions, Raja Ampat, Indonesia , 2016 .
[30] Mayke Wagner,et al. Spatiotemporal distribution patterns of archaeological sites in China during the Neolithic and Bronze Age: An overview , 2016 .
[31] I. Nicu. Hydrogeomorphic Risk Analysis Affecting Chalcolithic Archaeological Sites from Valea Oii (Bahlui) Watershed, Northeastern Romania: An Interdisciplinary Approach , 2016 .
[32] E. Matlakhova,et al. Fluvial chronology in the East European Plain over the last 20 ka and its palaeohydrological implications , 2015 .
[33] I. Gaynullin. DESTRUCTIVE ABRASION PROCESSES STUDY IN ARCHAEOLOGICAL SITES PLACEMENT (KUIBYSHEV AND NIZHNEKAMSK RESERVOIRS, RUSSIA). , 2014 .
[34] M. Zhilin. Early Mesolithic Hunting and Fishing Activities in Central Russia: A Review of the Faunal and Artefactual Evidence from Wetland Sites , 2014 .
[35] S. Treshkin,et al. Climate changes in the basin of the Lower Volga and their influence on the ecosystem , 2014, Arid Ecosystems.
[36] M. Galimova. F inal PalaEOliThiC-Early MEsOliThiC CulTurEs wiTh TraPEzia in ThE VOlga anD DniEPEr Basins: ThE QuEsTiOn OF Origin , 2014 .
[37] E. V. Koposov,et al. PREDICTION OF FORMATION OF ABRASION AND LANDSLIDE HAZARDSHORES OF THE VOLGA RESERVOIRS , 2013 .
[38] J. Verreth,et al. POST‐DAMMING FLOW REGIME DEVELOPMENT IN A LARGE LOWLAND RIVER (VOLGA, RUSSIAN FEDERATION): IMPLICATIONS FOR FLOODPLAIN INUNDATION AND FISHERIES , 2012 .
[39] I. Mokhov,et al. The hydrological regime of large river basins in Northern Eurasia in the XX–XXI centuries , 2012, Water Resources.
[40] A. Biswas. Impacts of Large Dams: Issues, Opportunities and Constraints , 2012 .
[41] N. Petrov. Cultural Heritage Management in Russia , 2010 .
[42] A. Panin,et al. Analysis of variations in the regime of rivers and lakes in the Upper Volga and Upper Zapadnaya Dvina based on archaeological-geomorphological data , 2010 .
[43] Guðrún Gísladóttir,et al. Shoreline erosion and aeolian deposition along a recently formed hydro-electric reservoir, Blöndulón, Iceland , 2010 .
[44] J. Flatman. Conserving Marine Cultural Heritage: Threats, Risks and Future Priorities , 2009 .
[45] Y. Gerasimov,et al. Volga River Basin , 2009 .
[46] A. Ratushnyak. The Role of Aquatic Macrophytes in Hydroecosystems of the Kuibyshev Reservoir (Republic of Tatarstan, Russia) , 2008 .
[47] A. Khaidarov,et al. Spatial and temporal transformations of bottom sediments in the Middle Volga reservoirs , 2007 .
[48] R. Betts,et al. The impact of climate change on global river flow in HadGEM1 simulations , 2006 .
[49] N. Kashirskaya,et al. Paleosol and paleoenvironmental conditions in the Lower Volga steppes during the Golden Horde period (13th–14th centuries AD) , 2006 .
[50] A. Demin. The Efficiency of Water Resources Management in Volga Basin , 2005 .
[51] P. Howard,et al. Cultural heritage and sustainability in the coastal zone: experiences in south west England , 2003 .
[52] A. Avakyan,et al. Impact of Reservoirs on the Fauna , 2002 .
[53] Henry Chapman,et al. Quantifying the effects of erosion on the archaeology of intertidal environments: A new approach and its implications for their management , 2001 .
[54] A. Avakyan. Volga-Kama cascade reservoirs and their optimal use , 1998 .
[55] N. Leonova. The Upper Paleolithic of the Russian steppe zone , 1994 .
[56] G. Melnikova. Peculiarities of Shallows in Regulated Reservoirs , 1977 .
[57] P. Micklin. Environmental Costs of the Volga-Kama Cascade of Power Stations , 1974 .