人工降雨雪影响下空陆一体化的区域水资源适应性调控研究
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1.我国城市洪涝灾害防治存在的问题与应对策略
- 关键词:
- 城市洪涝;灾害防治;存在问题;应对措施
- 王高旭;施睿;孙晓伟;孔梦园
- 《中国水利学会2018学术年会》
- 0年
- 中国江西南昌
- 会议
分析了我国城市洪涝灾害防治在排水基础设施建设、管理体系建设、监测预警和信息化建设、海绵城市建设、基础研究等方面存在的主要问题,并在此基础上研究提出了我国城市洪涝灾害防治的措施建议。我国城市洪涝灾害防治应着力提高排水系统的建设和运维水平,统筹利用地表地下蓄水空间,强调工程措施与非工程措施的综合利用,加强监测与预警预报体系建设,多部门协同推进,确保发挥系统治理效益。
...2.Assessment of Net Irrigation Requirements for Spring Wheat and Spring Maize in Shiyanghe Watershed, Northwestern China
- 关键词:
- Crops;Data handling;Evapotranspiration;Inverse problems;Irrigation;Rain;Water supply;Effective rainfall;Empirical effective rainfall;FAO penman–monteith;Irrigation requirements;Net irrigation requirement;NorthWest China;Penman Monteith;Shiyanghe watershed;Spring maize;Spring wheat
- Kong, Mengyuan;Wang, Gaoxu;Guan, Tiesheng;Wu, Yongxiang;Liu, Guodong
- 《Water Conservation Science and Engineering》
- 2023年
- 8卷
- 1期
- 期刊
Evaluating net irrigation requirements could support water resources managements, especially in arid regions. Shiyanghe watershed was in the northwest of China, and its dominant grain crops were spring wheat and spring maize. Their net irrigation requirements rate would be assessed by subtracting effective rainfall from crop evapotranspiration rate at four meteorological stations in the study area in this study. Among which effective rainfall would be calculated by an empirical effective rainfall formula of Northern China and crop evapotranspiration rate would be estimated by FAO Penman–Monteith equation. Then, the estimated results of accumulated net irrigation requirements rate at different stations would be expanded to the entire watershed by using inverse distance weighted interpolation method. Results showed that the accumulated net irrigation requirements rate tended to be the biggest at Minqin station and smallest at Wushaoling station for both crops during different stages, which accord with the geography distribution in the watershed. And mid-season stage had the biggest net irrigation requirements rate, then development stage, last season stage, and initial stage. The zonal averaged accumulated net irrigation requirement rates of spring wheat and spring maize in the entire watershed except for Jingtai county were 353.20mm/whole season and 432.62mm/whole season, respectively. And comparison with local irrigation norms and irrigative efficiencies indicated insufficient local agricultural water supply. This study can help water resources and weather modification departments organizing arrangements and operations to mitigate with water shortage problems. The detailed data selection and processing methods are also referenceable for relevant researches. © 2023, The Author(s), under exclusive licence to Springer Nature Singapore Pte Ltd.
...3.Determination of the effective utilization coefficient of irrigation water based on geographically weighted regression
- 关键词:
- effective utilization coefficient of irrigation water; spatialautocorrelation; multivariate linear regression; geographically weightedregression;EFFICIENCY; SYSTEMS
- Shi, Rui;Wang, Gaoxu;Zhang, Xuan;Xu, Yi;Wu, Yongxiang;Wu, Wei
- 《FRONTIERS OF EARTH SCIENCE》
- 2022年
- 16卷
- 2期
- 期刊
This study uses geographically weighted regression to determine the spatial distribution of the effective utilization coefficient of irrigation water in Zhejiang Province, China, owing to the influences of spatial attributes on the irrigation efficiency. The sample set of this study comprised 165 agricultural test sites. A multivariate linear regression model and a geographically weighted regression model were established using the effective utilization coefficient of agricultural irrigation water as the dependent variable in addition to a suite of independent variables, including the actual irrigation area, the percentage of farmland using water-saving irrigation, the type of irrigation area, the net water consumption per mu, the water intake method, the terrain slope, and the soil field capacity. Results revealed a positive spatial correlation and noticeable agglomeration features in the effective utilization coefficient of irrigation water in Zhejiang Province. The geographically weighted regression model performed better in terms of fit and prediction accuracy than the multivariate linear regression model. The obtained findings confirm the suitability of the geographically weighted regression model for determining the spatial distribution of the effective utilization coefficient of irrigation water in Zhejiang, and offer a new approach on a regional scale.
...4.Effects of different cropping systems on ammonia nitrogen load in a typical agricultural watershed of South China
- 关键词:
- Ammonia nitrogen; Cropping system; SWAT; Threshold; Dongjiang RiverBasin;UNCERTAINTY ANALYSIS; SOIL CONSERVATION; ASSESSMENT-TOOL; FOOD SECURITY;MODEL; BASIN; YIELD; RICE; CALIBRATION; POLLUTION
- Jiang, Jie;Li, Jun;Wang, Zhaoli;Wu, Xushu;Lai, Chengguang;Chen, Xiaohong
- 《JOURNAL OF CONTAMINANT HYDROLOGY》
- 2022年
- 246卷
- 期
- 期刊
The excessive application of agricultural irrigation water and chemical fertilizer has increased crop yields to help meet the demand for food, but it has also led to major water environment problem, i.e. non-point source (NPS) pollution, which needs to be addressed to achieve sustainable development targets. Although numerous studies have focused on the control and reduction of agricultural NPS pollution from the perspective of irrigation and fertilizer, the effects of different cropping systems on NPS pollution (ammonia nitrogen (NH3-N)) in the Dongjiang River Basin (DRB) were seldom assessed. Specifically, variation in the NH3-N load was simulated and analyzed at the annual and semi-annual scales under ten different cropping systems using the Soil and Water Assessment Tool (SWAT) model, which was calibrated and validated with satisfactory statistical index values in the DRB. The results indicated that the NH3-N load decreased, distinctly increased, slightly decreased when sweet potato, peanut, and rice were planted, respectively. Compared with mono-cropping, crop rotation could reduce the NH3-N load, and the planting sequence of crops could affect the NH3-N load to a certain extent. Planting peanuts in spring would dramatically increase NH3-N load. To evaluate NH3-N pollution, a critical threshold of NH3-N emission (5.1 kg.ha(-1).year(-1)) was proposed. Meeting the NH3-N emission threshold cannot be achieved by altering the cropping system alone; additional measures are needed to reduce agricultural NPS pollution. This study facilitates the development of cropping systems and provides relevant information to aid the sustainable development of agriculture in the DRB.
...5.Evaluation of multisource precipitation input for hydrological modeling in an Alpine basin: a case study from the Yellow River Source Region (China)
- 关键词:
- Alpine basin; hydrological modeling; reanalysis precipitation; satelliteprecipitation; SWAT;WEATHER DATA; SWAT MODEL; GPM IMERG; CLIMATE; SIMULATION; PRODUCTS;CATCHMENT; MOUNTAINS; DISCHARGE; DATASETS
- Gu, Pengfei;Wang, Gaoxu;Liu, Guodong;Wu, Yongxiang;Liu, Hongwei;Jiang, Xi;Liu, Tao
- 《HYDROLOGY RESEARCH》
- 2022年
- 53卷
- 2期
- 期刊
Alpine basins are typically poorly gauged and inaccessible owing to the harsh prevailing environment and complex terrain. In this study, two representative satellite precipitation products (Tropical Rainfall Measuring Mission (TRMM) Multi-satellite Precipitation Analysis (TMPA) 3B42RTV7 and Integrated Multi-Satellite Retrievals for GPM (IMERG) Final Run Version 06) and two reanalysis precipitation products (China Meteorological Assimilation Driving Datasets for the SWAT model (CMADS) and Climate Forecast System Reanalysis (CFSR)) in the Yellow River Source Region (YRSR) were selected for evaluation and hydrological verification against gauge-observed (GO) data. Results show that the accuracy of these precipitation products in the warm season is higher than that in the cold season, and IMERG exhibits the best performance, followed by the CMADS, CFSR, and 3B42RTV7. Models that use the GO as input yielded satisfactory performance during 2008-2013, and precipitation products have poor simulation results. Although the model using the IMERG as input yielded unsatisfactory performance during 2014-2016, this did not affect the use of the IMERG as a potential data source for the YRSR. The model driven by the combination of GO and CMADS precipitation performed the best in all scenarios (R (2)=0.77, Nash-Sutcliffe efficiency (NSE)=0.72 at the Tangnaihai station; R (2)=0.53, NSE=0.48 at the Jimai station).
...6.基于Copula函数的汉江流域水文干旱风险研究
- 关键词:
- 水文干旱标准化径流指数Copula函数游程理论重现期汉江流域基金资助:国家重点研发计划项目(2016YFC0401005,2016YFA0601703);国家自然科学基金项目(52009065);宜昌市自然科学研究项目(A21-3-004);DOI:10.13869/j.cnki.rswc.20210827.002专辑:农业科技 基础科学 工程科技Ⅱ辑专题:地球物理学 水利水电工程分类号:P333手机阅读
- 李京芳;彭涛;董晓华;李峥嵘;王高旭;常文娟;林青霞;王继保
- 0年
- 卷
- 期
- 期刊
研究汉江流域水文干旱风险及驱动因素,为区域干旱预警和水资源管理提供参考。选用1964—2016年汉江流域白河、黄家港和沙洋3个水文站逐月实测径流资料,采用标准化径流指数SRI进行水文干旱分析,基于游程理论进行干旱特征变量识别,运用Copula函数计算干旱特征变量之间的联合累积概率,分析了联合重现期和同现重现期。结果表明:(1)在1964—2016年,白河站共发生水文干旱事件54次,干旱发生频繁但旱情较轻;黄家港和沙洋站分别发生干旱事件34,32次,发生频次相对较少但旱情较重,旱情总体呈现从上游向下游加重的趋势;(2)随着干旱特征变量值增大,联合累积概率值也增大,但增大趋势变缓;(3)两变量重现期随着单变量取值增大而增大,但在相同增幅情况下,同现重现期的增幅要明显高于联合重现期;(4)当白河站干旱历时和烈度达到最大时,水文干旱事件的联合重现期为50 a左右,同现重现期为1 600 a左右,黄家港与沙洋站呈现出与白河站大致相同的趋势;(5)人类活动是1991年以来汉江流域径流减少的主要原因,对白河和沙洋站径流变化的贡献率分别为59.6%和69.2%,是汉江流域水文干旱加重的主导因素。研究显示汉江流域下游旱情较上游重,且持续受人类活动影响,应增强变化环境下区域干旱风险应对能力。
...7.Application of meteorological element combination-driven SWAT model based on meteorological datasets in alpine basin
- 关键词:
- alpine basin; CFSR; CMADS; combination; SWAT;RIVER-BASIN; PRECIPITATION DATA; CFSR; SOIL
- Gu, Pengfei;Wu, Yongxiang;Liu, Guodong;Xia, Chengcheng;Wang, Gaoxu;Xia, Jing;Chen, Ke;Huang, Xiaohua;Li, Daiyuan
- 《WATER SUPPLY》
- 2021年
- 22卷
- 3期
- 期刊
Thus far, reanalysis-based meteorological products have drawn little attention to the influence of meteorological elements of products on hydrological modeling. This study aims to evaluate the hydrological application potential of the precipitation, temperature, and solar radiation of the China Meteorological Assimilation Driving Datasets for the Soil and Water Assessment Tool (SWAT) model (CMADS) and Climate Forecast System Reanalysis (CFSR) in an alpine basin. The precipitation, temperature, and solar radiation of the gauge-observed meteorological dataset (GD), CFSR, and CMADS were cross-combined, and 20 scenarios were constructed to drive the SWAT model. From the comprehensive comparisons of all scenarios, we drew the following conclusions: (1) among the three meteorological elements, precipitation has the greatest impact on the simulation results, and using GD precipitation from sparse stations yielded better performance than CMADS and CFSR; (2) although the SWAT modeling driven by CMADS and CFSR performed poorly, with CMADS underestimation and CFSR overestimation, the temperature and solar radiation of CMADS and CFSR can be an alternative data source for streamflow simulation; (3) models using GD precipitation, CFSR temperature, and CFSR solar radiation as input yielded the best performance in streamflow simulation, suggesting that these data sources can be applied to this data-scarce alpine region.
...8.人工降雨雪影响下空陆一体化的区域水资源适应性调控研究最终报告(Technology Report of Research on adaptive regulation of regional water resources under the influence of artificial rainfall and snow)
- 关键词:
- 空中水资源、陆地水资源、空陆一体化、水文模型、需水预测、水资源调控、水资源综合利用策略、Air water resources、Land water resources、Air-land integration、Hydrological model、Water demand forecast、Water resources regulation、Comprehensive utilization strategy of water resources
- 关铁生;吴巍;孔梦园;刘涛;田雪莹;
- 《水利部交通运输部国家能源局南京水利科学研究院;》
- 2021年
- 报告
将大气水资源纳入水资源开发利用系统,研发了人工降雨雪对区域水资源量影响的定量分析方法,建立了人工降雨雪影响下区域水资源供需分析方法,构建了空陆一体化的区域水资源的适应性调控方法,提出了人工降雨雪影响下区域水资源综合利用策略,使得水资源系统分析范围从陆地扩展到了空中,进一步丰富了水资源系统分析的理论方法。(1)建立了高灵敏度网格分布式物理水文模型,定量评估了人工降雨雪对地表水、土壤水和地下水的影响,提出了人工降雨雪影响下区域水资源量定量评价方法,给出了石羊河和汉江上游2个典型流域人工降雨雪对区域水资源影响的分析结果(2)考虑影响农田灌溉需水的时空要素,基于“彭曼—蒙特斯”方法和田间水量平衡模型建立了与降雨过程匹配的农田灌溉需水量模型,构建了人工降雨雪影响下区域农田灌溉需水量定量评估方法,提出了典型人工降雨雪方案影响下的石羊河流域和汉江上游的需水预测结果。(3)综合评估陆地上对增雨的需求和大气中水资源状况,提出了空陆一体化的水资源适应性调控的技术框架,提出了空陆协同水资源开发利用流程,基于“模拟—优化”嵌套的区域水资源利用仿真与调控建模方法构建了适用于石羊河流域和汉江上游快速求解的水资源配置模型,在石羊河流域和汉江上游验证了空陆水资源联合调控流程的实用性。(4)分析了人工降雨雪工作与陆地水资源开发利用的协调性,提出了陆空协同的水资源综合利用策略,可为我国建立空陆一体化的水安全保障体系提供支撑。In order to bring atmospheric water resources into the water resources development and utilization system,the quantitative analysis method of the impact of artificial rainfall and snow on regional water resources and regional water resources supply and demand,the adaptive control method of air-land integrated regional water resources are developed and the comprehensive utilization strategy of regional water resources is put forward.The scope of water resources system analysis is extended from land to air,which further enriches the theoretical methods of water resources system analysis.(1)A high sensitivity grid distributed physical hydrological model is established to quantitatively evaluate the impact of artificial rainfall snow on surface water,soil water and groundwater.A quantitative evaluation method of regional water resources under the influence of artificial rainfall snow is proposed,and the analysis results of the impact of artificial rainfall snow on regional water resources in two typical flow areas of Shiyang River and the upper reaches of Han River are given.(2)A farmland irrigation water demand model matching with rainfall process is established based on"Penman-Montes"method and field water balance model,and a quantitative evaluation method of regional farmland irrigation water demand under the influence of artificial rainfall and snow is constructed.The prediction results of water demand in Shiyang River Basin and the upper reaches of Hanjiang River under the influence of typical artificial rainfall and snow scheme are put forward.(3)The technical framework of air land integrated adaptive regulation of water resources and the process of air-land water resources utilization is proposed.Based on"simulation-optimization"regional water resources utilization simulation and regulation modeling method,a water resources allocation model suitable for rapid solution in Shiyang River Basin and the upper reaches of Han River is constructed,and the practicability of the joint regulation process of air and land water resources is verified in Shiyang River Basin and the upper reaches of Han River.(4)The coordination between artificial rainfall and snow work and the utilization of land water resources is analyzed,and the comprehensive utilization strategy of land and air cooperation is proposed,which can provide support for the establishment of air land integrated water security system in China.
...9.Fine-Grained Tidal Flat Waterbody Extraction Method (FYOLOv3) for High-Resolution Remote Sensing Images
- 关键词:
- tidal flat water; YOLOv3; similarity algorithm for water extraction;INDEX; DELINEATION
- Zhang, Lili;Fan, Yu;Yan, Ruijie;Shao, Yehong;Wang, Gaoxu;Wu, Jisen
- 《REMOTE SENSING》
- 2021年
- 13卷
- 13期
- 期刊
The tidal flat is long and narrow area along rivers and coasts with high sediment content, so there is little feature difference between the waterbody and the background, and the boundary of the waterbody is blurry. The existing waterbody extraction methods are mostly used for the extraction of large water bodies like rivers and lakes, whereas less attention has been paid to tidal flat waterbody extraction. Extracting tidal flat waterbody accurately from high-resolution remote sensing imagery is a great challenge. In order to solve the low accuracy problem of tidal flat waterbody extraction, we propose a fine-grained tidal flat waterbody extraction method, named FYOLOv3, which can extract tidal flat water with high accuracy. The FYOLOv3 mainly includes three parts: an improved object detection network based on YOLOv3 (Seattle, WA, USA), a fully convolutional network (FCN) without pooling layers, and a similarity algorithm for water extraction. The improved object detection network uses 13 convolutional layers instead of Darknet-53 as the model backbone network, which guarantees the water detection accuracy while reducing the time cost and alleviating the overfitting phenomenon; secondly, the FCN without pooling layers is proposed to obtain the accurate pixel value of the tidal flat waterbody by learning the semantic information; finally, a similarity algorithm for water extraction is proposed to distinguish the waterbody from non-water pixel by pixel to improve the extraction accuracy of tidal flat water bodies. Compared to the other convolutional neural network (CNN) models, the experiments show that our method has higher accuracy on the waterbody extraction of tidal flats from remote sensing images, and the IoU of our method is 2.43% higher than YOLOv3 and 3.7% higher than U-Net (Freiburg, Germany).
...10.A novel remote sensing method to determine reservoir characteristic curves using high-resolution data
- 关键词:
- remote sensing analysis; reservoir characteristic curve; resourcesatellite;CHECK-DAM; LOESS PLATEAU; CATCHMENT; EROSION
- Guan, Tiesheng;Xu, Qin;Chen, Xing;Cai, Jing
- 《HYDROLOGY RESEARCH》
- 2021年
- 52卷
- 5期
- 期刊
A novel method of determining reservoir characteristic curves based on high-resolution resource satellite data was proposed in this paper, using remote sensing processing and analysis technology. According to the physical characteristics of absorption, radiation and reflection of surface water on ultraviolet, visible, near-infrared bands, etc., the satellite images at different reservoir water level and different periods were processed to analyze the relationship of measured water level corresponding to the water area. Based on the relationship, the relevance among reservoir water level, water surface area, and reservoir capacity was established, so as to determine the reservoir characteristic curve. The method was applied and validated at Jinshuitan Reservoir and Shitang Reservoir in the Ou River Basin. The results show that this method has high accuracy, and the maximum relative error between calculating values and measured values at different water level are -2.33% and -2.11% in Jinshuitan Reservoir and Shitang Reservoir, respectively. The method improves the convenience of determining the reservoir characteristic curve greatly, and the storage capacity of the reservoir can be calculated rapidly by this method.
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