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城市调水供水工程应急管理实践 被引量:1
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作者 李兆崔 张为华 《山东水利》 2013年第10期57-58,共2页
结合日照市城市供水工程应急管理实践,分析了应急管理过程中遇到的各种问题,总结解决办法,并提出措施,为强化城市供水保障能力,促进日照市经济可持续发展具有积极的意义。
关键词 日照市 调水供水 应急管理
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多级调水-供水-蓄水结合泵站-渠道-湖库系统效率计算 被引量:8
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作者 黄海田 仇宝云 +2 位作者 颜红勤 王亦斌 王斐 《水利水运工程学报》 CSCD 北大核心 2007年第4期21-26,共6页
提出了包括全部能源消耗在内的站系统效率概念,以及既包括水量损失又包括水力损失的渠系统效率概念.研究得出了单一调水单级泵站-渠道系统效率、调水-供水结合单级泵站-渠道系统效率、单一调水多级泵站-渠道系统效率、调水-供水-蓄水结... 提出了包括全部能源消耗在内的站系统效率概念,以及既包括水量损失又包括水力损失的渠系统效率概念.研究得出了单一调水单级泵站-渠道系统效率、调水-供水结合单级泵站-渠道系统效率、单一调水多级泵站-渠道系统效率、调水-供水-蓄水结合多级泵站-渠道-湖库系统效率的计算方法,进而形成了比较完整的调水工程效率计算方法体系. 展开更多
关键词 泵站-渠道-湖库系统 调水-供水-蓄水结合 系统效率 水量损失 水力损失
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Wavelet Analytical Forecasting Method of Water Consumption 被引量:1
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作者 刘洪波 张宏伟 《Transactions of Tianjin University》 EI CAS 2004年第3期206-208,共3页
A new method of short-term forecasting for water consumption in municipal supply water networks based on wavelet transformation is introduced. By wavelet decomposing commonly used in the signal field, water consumptio... A new method of short-term forecasting for water consumption in municipal supply water networks based on wavelet transformation is introduced. By wavelet decomposing commonly used in the signal field, water consumption per hour is decomposed into many series. Trend item, cycle item and random item are separated from the original time series in this way.Then by analyzing, building a model, forecasting every series and composing the results, the forecasting value of the original consumption is received. Simulation results show that this forecasting method is faster and more accurate, of which the error is less than 2%, indicating that the wavelet analytical method is practicable. 展开更多
关键词 wavelet transformation water consumption per hour short-term forecasting
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Multi-reservoir joint operating rule in inter-basin water transfer-supply project 被引量:9
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作者 PENG AnBang PENG Yong +1 位作者 ZHOU HuiCheng ZHANG Chi 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第1期123-137,共15页
The joint operation of inter-basin water transfer-supply(IBWTS)project can be more complex when there is joint water demand in multi-reservoir system and multi-importing reservoirs simultaneously transferring water fr... The joint operation of inter-basin water transfer-supply(IBWTS)project can be more complex when there is joint water demand in multi-reservoir system and multi-importing reservoirs simultaneously transferring water from exporting reservoir.In this study,a joint operating rule is proposed for the purpose of solving such complex operation problem.This rule is composed of a set of sub-rules,including hedging rule curves of virtual aggregation reservoir(i.e.equivalent reservoir)and other individual reservoirs,water-transfer rule curves of each individual reservoir,as well as some of important assisted rules.These assisted rules refer to allocation models for water transfer-supply.In the proposed rule,an equivalent reservoir is established to determine under what condition the water supply should be reduced and specify the total supplied water for joint water demand(i.e.aggregation method).Allocation models are developed to distribute the total transferred water into each importing reservoir and determine the water releases for joint water demand by each member reservoir of the aggregation system(i.e.decomposition method).And these models are integrated with a set of influence factors such as hydrologic characteristics,reservoir storage or vacant storage,regulating ability,water-supply pressure,and so on.The aggregation of multi-reservoirs and the disaggregation of water quantities are taken into a whole consideration to reduce the complexity in reallocation of water target storage or water release.Finally,the proposed rule is applied to the North-line IBWTS Project in Liaoning Province,China.The results indicate that the proposed rule can take full advantage of hydrologic compensation in basins and capacity compensation in reservoirs.Thus it can improve the utilization efficiency of water resources in system. 展开更多
关键词 inter-basin water transfer joint operating rule equivalent reservoir water-transfer allocation water-supply allocation
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