WATER-LEVEL

作品数:17被引量:34H指数:4
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相关领域:天文地球更多>>
相关作者:朱波更多>>
相关机构:中国科学院更多>>
相关期刊:《Meteorological and Environmental Research》《Frontiers of Environmental Science & Engineering》《Atmospheric and Climate Sciences》《Earthquake Science》更多>>
相关基金:国家自然科学基金国家重点基础研究发展计划更多>>
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Optimizing selective withdrawal strategies to mitigate hypoxia under water-level reduction in Germany’s largest drinking water reservoir
《Journal of Environmental Sciences》2024年第12期127-139,共13页Chenxi Mi Karsten Rinke Tom Shatwell 
supported by the German Research Founda-tion(DFG,grant RI 2040/4-1);the InventWater ITN(Inventive forecasting tools for adapting water quality management to a new climate)through the European Union’s Horizon 2020 research,innovation program under the Marie Skłodowska-Curie grant agreement No.956623 and UFZ Program Integra-tion Budget;Chenxi Mi acknowledges the financial support from the National Natural Science Foundation of China(No.42107060);Liaoning Provincial Doctoral Research Startup Fund Project(No.2022-BS-174);supported by the“Xingliao Talents Plan”science and technology in-novation leading talents project of Liaoning Province(No.XLYC2002054);the National Key Research and Develop-ment Program of China(NO.2022YFF1301000-4).
Water-level reduction frequently occurs in deep reservoirs,but its effect on dissolved oxygen concentration is not well understood.In this study we used a well-established water qual-itymodel to illustrate effects of ...
关键词:HYPOXIA Water-level reduction Hypolimnetic water withdrawal Stratification phenology Water quality simulation Sediment oxygen demand 
Water-level based discrete integrated dynamic control to regulate the flow for sewer-WWTP operation
《Frontiers of Environmental Science & Engineering》2020年第3期103-111,共9页Zhengsheng Lu Moran Wang Mingkai Zhang Ji Li Ying Xu Hanchang Shi Yanchen Liu Xia Huang 
This research was supported by the Major Science and Technology Program for Water Pollution Control and Treatment of China(Nos.2017ZX07103-007 and 2018ZX07111-006);the Tsinghua University Initiative Scientific Research Program(No.2018Z02ALB01).
This study aims to propose a multi-point integrated real-time control method based on discrete dynamic water level variations,which can be realized only based on the programmable logic controller(PLC)system without us...
关键词:Sewer system Integrated control Discrete control Water level 
Fractal characterization of sediment particle-size distribution in the water-level fluctuation zone of the Three Gorges Reservoir, China被引量:8
《Journal of Mountain Science》2019年第9期2028-2038,共11页LI Jin-lin BAO Yu-hai WEI Jie HE Xiu-bin TANG Qiang Jean de Dieu NAMBAJIMANA 
funded by the National Natural Science Foundation of China (Grant nos. 41771320, 41771321, and 41571278);the Opening Project of Chongqing Key Laboratory of Earth Surface Processes and Environmental Remote Sensing in the Three Gorges Reservoir Area (Grant no. DBGC201801);the Sichuan Science and Technology Program (Grant no. 2018SZ0132)
The combined effect of periodic water impoundment and seasonal natural flood events has created a 30 m high water-level fluctuation zone(WLFZ) around the Three Gorges Reservoir(TGR), China, forming a unique eco-landsc...
关键词:Spatial DIFFERENTIATION SEDIMENT particle FRACTAL dimension WATER-LEVEL FLUCTUATION ZONE Three Gorges Reservoir 
Impact of seasonal water-level fluctuations on autumn vegetation in Poyang Lake wetland,China被引量:6
《Frontiers of Earth Science》2019年第2期398-409,共12页Xue DAI Rongrong WAN Guishan YANG Xiaolong WANG Ligang XU Yanyan LI Bing LI 
the National Key Research and Development Project of China (No.2016YFC0402204);the National Natural Science Foundation of China (Grant No.41571107);the Key Research Program of the Chinese Academy of Sciences (No.KFZD-SW-318);the Key Project of Water Resources Department of Jiangxi Province (No.KT201503).
Water level fluctuations (WLF) are natural patterns that are necessary for the survival of various plants,and WLF guarantee both the productivity and the biodiversity of wetlands.However,the underlying mechanisms of h...
关键词:WETLAND reeds SEDGES SEASONAL WATER-LEVEL FLUCTUATIONS classification and regression tree model 
Analysis of the Frequency Domain Water-level Deconvolution Method Based on Reservoir Airgun Source Data
《Earthquake Research in China》2018年第3期355-366,共12页You Xiuzhen Li Jun Lin Binhua Huang Yandan Wu Lihua Guo Yang 
“Analysis of Accuracyof Airgun Source in Monitoring Crustal Media Change and Its Influence Factors”,the National Natural Science Foundation of China(41774068);and Special Fund for Science and Technology,Fujian Earthquake Agency(SF201709)
Based on the 2016 airgun experimental data of the Fujian Nanyi reservoir,we adopted the frequency domain water-level deconvolution method and cross-correlation time delay detection technique to study the influence of ...
关键词:Large volume airgun WATER-LEVEL DECONVOLUTION in frequency DOMAIN CROSS-CORRELATION time DELAY Green s function 
Loon Nest Viability Model: A Performance Indicator for Improving Water-Level Regulation of Large Water Bodies
《Natural Resources》2018年第1期1-16,共16页Marianne Bachand Julien Hénault Richard Sylvain Martin Steve K. Windels Jean Morin 
Rule curves dictating target water levels for management have been implemented in several water bodies in North America over the last 70 years or more. Anthropogenic alterations of water levels are known to affect sev...
关键词:Gavia immer Namakan Reservoir NEST VIABILITY Performance Indicator RAINY LAKE Rule CURVES Water Level 
Effect of hydrological variability on diatom distribution in Poyang Lake, China被引量:2
《Chinese Journal of Oceanology and Limnology》2017年第1期174-184,共11页QIAN Kuimei LIU Xia CHEN Yuwei 
Supported by the National Basic Research Program of China(973)(No.2012CB417005);the National Natural Science Foundation of China(No.41301088);the Jiangsu Planned Projects for Postdoctoral Research Funds(No.1401158C)
Poyang Lake is the largest freshwater lake in China, and it has a seasonal flooding cycle that significantly changes the water level every year. The aim of this paper was to explain how these hydrological changes infl...
关键词:diatom phytoplankton succession water-level changes Poyang Lake 
Monitoring Efficiency Evaluation of the Well-water-level Observation Network in China
《Earthquake Research in China》2016年第1期88-99,共12页Liu Chunguo Kong Lingchang Yang Zhuzhuan Fan Chunyan Chen Huajing 
funded by the National Key Basic Research Program of China(Grant No.2013CB733205)
In order to understand the monitoring efficiency status of the well-water-level observation network in China after the completion of the 10 th "Five-year Plan " digital network project,and to provide a basis for the f...
关键词:Well-water-level observation network Observation environment Observationinstrument Monitoring efficiency 
Shifts in water-level variation of Namco in the central Tibetan Plateau from ICESat and Cryo Sat-2 altimetry and station observations被引量:8
《Science Bulletin》2015年第14期1287-1297,共11页Chunqiao Song Qinghua Ye Xiao Cheng 
supported by the National Special Basic Research Project of the Ministry of Science and Technology(2013FY111400-2,2009CB723901);the National Natural Science Foundation of China(41120114001,41125003,41071254,40971048);the European Space Agency(ESA AO 2605);the Knowledge Innovation Foundation Program for outstanding Young Scholar of Chinese Academy of Sciences(CAS)(KZCX2-EWQN104);supported by Open Research Fund of Key Laboratory of Tibetan Environmental Changes and Land Surface Processes in Chinese Academy of Sciences;Open Fund of State Key Laboratory of Remote Sensing Science
The dynamics of high-altitude inland lakes in the Tibetan Plateau are sensitive indicators of climate change. Due to the remoteness and hard access, satellite altimetry becomes an effective approach to obtaining large...
关键词:LAKE Satellite altimetry CryoSat-2ICESat Tibetan Plateau - Climate change 
Effects of foundation damage and water-level change on vibration modal parameters of gravity-type caisson structure被引量:1
《Science China(Technological Sciences)》2015年第2期316-329,共14页LEE So-Young KIM Jeong-Tae 
supported by Basic Science Research Program through the National Research Foundation of Korea(NRF)funded by the Ministry ofEducation,Science and Technology(Grant no.NRF-2013R1A1A2A10012040);the financial support of the project Development of Inspection Equipment Technology for Harbor Facilities funded by Korea Ministry of Land,Transportation,and Maritime Affairs
In this paper,the effects of foundation damage and water-level change on vibration characteristics of gravity-type caisson structure are examined by analyzing modal parameters extracted from output-only information.To...
关键词:caisson structure gravity-type structure modal parameter effect of water-level foundation damage 
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