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1.
Abedalrazq F. Khalil Mac McKee Mariush Kemblowski Tirusew Asefa 《Journal of the American Water Resources Association》2005,41(1):195-208
ABSTRACT: Water scarcity in the Sevier River Basin in south‐central Utah has led water managers to seek advanced techniques for identifying optimal forecasting and management measures. To more efficiently use the limited quantity of water in the basin, better methods for control and forecasting are imperative. Basin scale management requires advanced forecasts of the availability of water. Information about long term water availability is important for decision making in terms of how much land to plant and what crops to grow; advanced daily predictions of streamflows and hydraulic characteristics of irrigation canals are of importance for managing water delivery and reservoir releases; and hourly forecasts of flows in tributary streams to account for diurnal fluctuations are vital to more precisely meet the day‐to‐day expectations of downstream farmers. A priori streamflow information and exogenous climate data have been used to predict future streamflows and required reservoir releases at different timescales. Data on snow water equivalent, sea surface temperatures, temperature, total solar radiation, and precipitation are fused by applying artificial neural networks to enhance long term and real time basin scale water management information. This approach has not previously been used in water resources management at the basin‐scale and could be valuable to water users in semi‐arid areas to more efficiently utilize and manage scarce water resources. 相似文献
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鲁西平原微咸水资源的开发意义 总被引:1,自引:0,他引:1
鲁西平原处于黄泛平原的尾闾地段,常受旱涝盐咸多种危害。本文分析了浅层微咸水的形成、水质及动态特征,对水质、水量进行了评价,探讨了开发利用微咸水的可能性及灌溉效益。农业上开采浅层微咸水,无疑对扩大地下水资源及促进鲁西平原水、土环境的良性循环有重大意义。 相似文献
4.
针对沈阳市地铁疏干水利用的现状,综合考虑沈阳市的实际情况,总结出地铁疏干水利用的几种方法,主要包括作为运河、湖泊的补换水源,用于修复、重建湿地,农业灌溉用水以及作为水源热泵的水源等。提出沈阳市地铁疏干水利用的指导思想和法律保障。 相似文献
5.
Biofilm structure and its influence on clogging in drip irrigation emitters
distributing reclaimed wastewater 总被引:2,自引:0,他引:2
Using reclaimed wastewater for crop irrigation is a practical alternative to discharge wastewater treatment plant effluents into surface waters.However,biofouling has been identified as a major contributor to emitter clogging in drip irrigation systems distributing reclaimed wastewater.Little is known about the biofilm structure and its influence on clogging in the drip emitter flow path.This study was first to investigate the microbial characteristics of mature biofilms present in the emitters and the effect of flow path structures on the biofilm microbial communities.The analysis of biofilm matrix structure using a scanning electron microscopy (SEM) revealed that particles in the matrix of the biofilm coupled extracellular polysaccharides (EPS) and formed sediment in the emitter flow path.Analysis of biofilm mass including protein,polysaccharide and phospholipid fatty acids (PLFAs) showed that emitter flow path style influenced biofilm community structure and diversity.The correlations of biofilm biomass and discharge reduction after 360 h irrigation were computed and suggest that PFLAs provide the best correlation coefficient.Comparatively,the emitter with the unsymmetrical dentate structure and shorter flow path (Emitter C) had the best anti-clogging capability.By optimizing the dentate structure,the internal flow pattern within the flow path could be enhanced as an important method to control the biofilm within emitter flow path.This study established electron microscope techniques and biochemical microbial analysis methods that may provide a framework for future emitter biofilm studies. 相似文献
6.
U. Pinto 《中国人口.资源与环境(英文版)》2015,13(3):250-264
The demand for potable water is rising rapidly due to an ever-increasing population, economic activities, and dwindling water supplies. To provide adequate water supplies in the future, understanding the issues and challenges in the reuse of water and developing appropriate strategies for reuse will be critical. One way to augment water supplies for residential use is to reuse graywater – the wastewater from kitchens, bathrooms, and laundries. In this article, we critically review the evolution of water reuse, the definition of graywater, graywater reuse practices, volumes and flow in different situations, and graywater characteristics. We then examine the issues associated with different graywater treatment methods and how using graywater for irrigation around homes affects soil quality and plant growth. The study concludes that graywater treatment costs, human health risks, and its effect on soil quality are some of the challenges that need to be addressed in the future for widespread and sustainable reuse of graywater for irrigation around homes. 相似文献
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喷灌和沟灌方式对农田土壤NH3挥发的影响 总被引:1,自引:0,他引:1
研究了2016和2017年传统灌溉(沟灌)和节水灌溉(喷灌)方式氨(NH3)挥发的季节年际动态变化特征及其影响因素.采用通气法进行原位监测,分析了土壤温度、体积含水量、铵态氮(NH4+-N)、硝态氮(NO3--N)以及气温降水等因素对NH3挥发的影响.结果表明,NH3挥发速率的峰值出现在施用氮肥后1~2周,喷灌有效降低NH3挥发峰值,喷灌和沟灌的NH3挥发速率峰值在2016年分别为2.67kg/(hm2·d)和11.11kg/(hm2·d),2017年分别为2.42kg/(hm2·d)和11.73kg/(hm2·d);马铃薯生长季NH3挥发存在明显的季节变化,挥发高峰主要发生在7~8月,追肥期高于基肥期.2016~2017年农田土壤NH3累积挥发量均表现为喷灌<沟灌,与沟灌相比,喷灌分别减少58.15%和43.55%.NH3挥发速率与土壤温度呈显著正相关(P<0.05),与体积含水量、NH4+-N、NO3--N浓度呈极显著正相关(P<0.01). 相似文献
9.
合理的补偿标准是节水灌溉技术补偿政策的核心,也是促进农户技术采用的关键内容。论文以石羊河下游民勤县为例,通过选择实验调研和RPL(Random Parameters Logit)模型估计,量化了节水灌溉技术采用的外部效益,并结合特定技术与农户谈判能力讨论了兼顾公平与效率的补偿标准。结果表明:民勤县城乡居民均希望实施节水灌溉技术来改善生态环境,技术采用的外部效益约为1 052.25元/hm2;以膜下滴灌技术为例,合理的补偿标准应在789.15元/hm2左右。从现行政策看,过低的补贴标准难以保障农户切身利益,导致政策响应不足。据此建议,完善成本收益核算体系,将技术采用的外部效益纳入补偿标准的核算中,提升补偿政策的公平性,同时也要根据技术类型及其采用面积进行精准化补偿,保障资金有效利用。 相似文献
10.
小凌河污水灌溉对水稻作物影响的分析 总被引:3,自引:0,他引:3
刘丽 《辽宁城乡环境科技》1999,19(1):43-46
通过小凌河水灌溉水稻的清水不地比清沙漠为分析污灌给水稻作物带来的生长发育,产量及稻米品质等方面的生态效应,初步了解米质品质下降的不利因素,并提出审慎考虑污灌问题。 相似文献