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Design of the Pumping Stations and the Gas Puffing Systems for the Superconducting Tokamak HT-7U
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作者 辜学茂 王小明 +5 位作者 秦品建 杨道文 胡建生 罗南昌 李生发 李高云 《Plasma Science and Technology》 SCIE EI CAS CSCD 2000年第6期557-563,共7页
The design of the pumping stations and the gas injection systems for the inner Chamber and the cryostat on HT-7U superconducting tokamak is described in this paper.
关键词 Design of the pumping stations and the Gas Puffing systems for the Superconducting Tokamak HT-7U HT
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Optimal Operation for Baoying Pumping Station in East Route Project of South-to-North Water Transfer 被引量:7
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作者 FENG Xiaoli QIU Baoyun +2 位作者 CAO Haihong WEI Qianglin TENG Haibo 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2009年第1期78-83,共6页
Baoying pumping station is a part of source pumping stations in East Route Project of South-to-North Water Transfer in China. Aiming at the characteristics of head varying, and making use of the function of pump adjus... Baoying pumping station is a part of source pumping stations in East Route Project of South-to-North Water Transfer in China. Aiming at the characteristics of head varying, and making use of the function of pump adjustable blade, mathematical models of pumping station optimal operation are established and solved with genetic algorithm. For different total pumping discharge and total pumping volume of water per day, in order to minimize pumping station operation cost, the number and operation duties of running pump units are respectively determined at different periods of time in a day. The results indicate that the saving of electrical cost is significantly effected by the schemes of adjusting blade angles and time-varying electrical price when pumping certain water volume of water per day, and compared with conventional operation schemes (namely, the schemes of pumping station operation at design blade angles based on certain pumping discharge), the electrical cost is saved by 4.73%-31.27%. Also, compared with the electrical cost of conventional operation schemes, the electrical cost is saved by 2.03%-5.79% by the schemes of adjusting blade angles when pumping certain discharge. 展开更多
关键词 South-to-North Water Transfer Baoying pumping station optimal operation adjusting blade angle time-varying electrical price
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Development and Application of a Shaft-type Tubular Pumping System with a Siphon Discharge Passage 被引量:7
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作者 ZHANG Ren-tian ZHU Hong-geng DAI Long-yang 《南水北调与水利科技》 CAS CSCD 北大核心 2013年第1期J0001-J0006,共6页
Based on the characteristics of large flow rate , low head , short annual operation time , and high reliability of the city flood-control pumping stations , a new-type shaft tubular pumping system featuring a shaft su... Based on the characteristics of large flow rate , low head , short annual operation time , and high reliability of the city flood-control pumping stations , a new-type shaft tubular pumping system featuring a shaft suction box and a siphon-type discharge passage with a vacuum breaker as the cutoff device was developed , which possesses such advantages as simple structure , reliable cutoff , and high energy performance.Taking some pumping stations as the case studies , in the light of the specified operation conditions , the hydraulic optimal design of the shaft-type tubular pumping system was determined and the optimized shape of the system was recommended.The performance prediction based on the computational fluid dynamics methodology was determined and the model test verification was conducted.The results show that the predicted data agree with the experimental head and efficiency so that both methods can be used to determine the performance of a real pumping station.Finally , the in-situ measurements of a pumping station during the commissioning period further verified that the shaft-type tubular pumping station with a siphon discharge passage is of higher efficiency , more reliable and stable. 展开更多
关键词 shaft-type tubular pumping station siphon discharge passage development application hydraulic optimal design model test
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STUDY ON POWER SPARE COEFFICIENT OF ELECTRICAL MOTOR IN LARGE PUMP STATION BASED ON RELIABILITY 被引量:1
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作者 QiuBaoyun HuangJiyan YuanShouqi 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2004年第4期498-501,共4页
Characters of head of low head pump station and the pump shaft power areanalyzed. Influence of each single factor on pump shaft power is expressed as change of specificshaft power. (non-dimensional) and the probabilit... Characters of head of low head pump station and the pump shaft power areanalyzed. Influence of each single factor on pump shaft power is expressed as change of specificshaft power. (non-dimensional) and the probability density function is determined. Influences ofmultiple factors on pump shaft power are analyzed. Method of calculating none over-loadedprobability of motor by integration by successive reductions is put forward and then relationbetween power spare coefficient and none over-loaded reliability of electric motor is established.Influences of all factors on pump shaft power being considered completely; power spare coefficientsof motor are calculated in three kinds of heads (changing and unchanging), two kinds of dirty-outconditions. Electrical motor power spare coefficients should be chosen as 1.20 approx 1.44, 1.11approx 1.19, 1.09 approx.14 respectively when pump heads are 4, 7, 9.5 m. The results mean much toreasonable choose of electrical motors in large pump stations, increasing reliability of pump unitsand saving equipment investment. 展开更多
关键词 Large pump station Electrical motor Power spare coefficient Probability ofnone over-loaded
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Simulation of Underground Reservoir Stability of Pumped Storage Power Station Based on Fluid-Structure Coupling 被引量:1
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作者 Peng Qiao Shuangshuang Lan +1 位作者 Hongbiao Gu Zhengtan Mao 《Computer Modeling in Engineering & Sciences》 SCIE EI 2024年第5期1381-1399,共19页
Based on global initiatives such as the clean energy transition and the development of renewable energy,the pumped storage power station has become a new and significant way of energy storage and regulation,and its co... Based on global initiatives such as the clean energy transition and the development of renewable energy,the pumped storage power station has become a new and significant way of energy storage and regulation,and its construction environment is more complex than that of a traditional reservoir.In particular,the stability of the rock strata in the underground reservoirs is affected by the seepage pressure and rock stress,which presents some challenges in achieving engineering safety and stability.Using the advantages of the numerical simulation method in dealing deal with nonlinear problems in engineering stability,in this study,the stability of the underground reservoir of the Shidangshan(SDS)pumped storage power station was numerically calculated and quantitatively analyzed based on fluid-structure coupling theory,providing an important reference for the safe operation and management of the underground reservoir.First,using the COMSOL software,a suitablemechanicalmodel was created in accordance with the geological structure and project characteristics of the underground reservoir.Next,the characteristics of the stress field,displacement field,and seepage field after excavation of the underground reservoir were simulated in light of the seepage effect of groundwater on the nearby rock of the underground reservoir.Finally,based on the construction specifications and Molar-Coulomb criterion,a thorough evaluation of the stability of the underground reservoir was performed through simulation of the filling and discharge conditions and anti-seepage strengthening measures.The findings demonstrate that the numerical simulation results have a certain level of reliability and are in accordance with the stress measured in the project area.The underground reservoir excavation resulted in a maximum displacement value of the rock mass around the caverns of 3.56 mm in a typical section,and the safety coefficient of the parts,as determined using the Molar-Coulomb criterion,was higher than 1,indicating that the project as a whole is in a stable state. 展开更多
关键词 Underground reservoir fluid-structure coupling numerical simulation pumped storage power station filling and discharge
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Design and Operation of Municipal Rain and Sewage United Pumping Station 被引量:1
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作者 Ting Ting Liu 《Journal of Architectural Research and Development》 2023年第4期51-56,共6页
In the process of designing a municipal rainwater and sewage pumping station,it is necessary to accurately grasp the design points,reasonably determine the scale of the rainwater and sewage pumping station,scientifica... In the process of designing a municipal rainwater and sewage pumping station,it is necessary to accurately grasp the design points,reasonably determine the scale of the rainwater and sewage pumping station,scientifically select the location and layout,and select materials reasonably.After completing the process design of the municipal rainwater and sewage pumping station and putting it into operation,in order to ensure the normal and stable operation of the pumping station,it is necessary to focus on strengthening the operation and management of diving equipment,cleaning equipment,and electromechanical equipment.The author analyzes the key points and specific design path of the process design of municipal rainwater and sewage pumping stations,and puts forward effective strategies for operation management,hoping to contribute to the scientific design and stable operation of municipal rainwater and sewage pumping stations. 展开更多
关键词 Municipal administration Rainwater and sewage united pumping stations Design path Operation management
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Three-dimensional CFD simulation of inlet structure flow in pumping station based on Eulerian solid- liquid two-phase flow model
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作者 Mi Zihao Zhou Daqing Mao Yuanting 《排灌机械工程学报》 EI CSCD 北大核心 2015年第6期494-498,共5页
Sediment deposition in the pumping station has a huge negative impact on unit operation.The three-dimensional CFD method has been used to simulate inlet structure flow in pumping station based on the Eulerian solid- l... Sediment deposition in the pumping station has a huge negative impact on unit operation.The three-dimensional CFD method has been used to simulate inlet structure flow in pumping station based on the Eulerian solid- liquid two-phase flow model. The numerical results of the preliminary scheme show that sediment deposition occurs in the forebay of pumping station because of poor flow pattern therein. In order to improve hydraulic configuration in the forebay,one modified measure reconstructs water diversion weir shape,and another measure sets a water retaining sill in the approach channel. The simulation results of the modified scheme prove that back flow in the forebay has been eliminated and the sediment deposition region has also been reduced. 展开更多
关键词 pumping station FOREBAY sediment deposition Eulerian two-phase flow model
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The Planning Design and Construction Management Analysis of Water Conservancy and Hydropower Pump Station Project
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作者 XIE Qingsong ZHANG Zhiqiang YAN Yong 《外文科技期刊数据库(文摘版)工程技术》 2021年第10期015-018,共6页
In order to make full use of the functions of pumping station engineering, it is necessary to coordinate each part of the pumping station. The pump's role is to move water to a specific area and to comply with ene... In order to make full use of the functions of pumping station engineering, it is necessary to coordinate each part of the pumping station. The pump's role is to move water to a specific area and to comply with energy conservation laws when doing so. Centrifugal pump is composed of pump blade and shell, is the core component of the pump. The pump will be equipped with a variety of specialized equipment, and the function of the pump station will be realized through the coordination of various equipments. 展开更多
关键词 water conservancy and hydropower pumping station project planning and design construction points
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A large size pumped storage hydropower station wasstarted to construct in Jiangsu Province
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《Electricity》 2001年第4期51-51,共1页
关键词 A large size pumped storage hydropower station wasstarted to construct in Jiangsu Province
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Prospect of new pumped-storage power station 被引量:4
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作者 Jingyan Li Chuanbao Yi Sujie Gao 《Global Energy Interconnection》 2019年第3期235-243,共9页
In this paper, a new type of pumped-storage power station with faster response speed, wider regulation range, and better stability is proposed. The operational flexible of the traditional pumped-storage power station ... In this paper, a new type of pumped-storage power station with faster response speed, wider regulation range, and better stability is proposed. The operational flexible of the traditional pumped-storage power station can be improved with variable-speed pumped-storage tech no logy. Combined with chemical en ergy storage, the failure to achieve sec on d-order response speed and the insufficient safety and reliability of pumped-storage power units could be solved. With the better solar en ergy and site resources, the in teg rated performance can be improved by an optical storage system in stalled in future pumped-storage stations. Through the characteristics analysis of the new type of pumped-storage power station, three types of optimal station locations are proposed, namely, the load concentration area, new energy concentration area, and ultrahigh- voltage direct current receiver area. Taking the new pumped-storage power station as an example, the advantages of multi-energy cooperation and joint operation are analyzed. It can be predicted that the frequency and load regulation of the power grid will be more flexible, and the service capacity to the main power grid will be much stronger in the future. 展开更多
关键词 pumped-storage POWER station Variable-speed pumped-storage technology CHEMICAL ENERGY STORAGE Solarenergy STORAGE system
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HYDRAULIC CALCULATION AND MEASUREMENT OF FLOW FIELD WITHIN INLET PASSAGE OF LARGE PUMPING STATION
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作者 Guan Xingfan Chen Hongxun +1 位作者 Xie Darong Guo Nailong(Jiangsu University of Science and Technology) 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 1995年第1期15-21,共17页
By means of the analysis of the internal flow within inlet passage of large pumping sta-tion, an analysis of 3-D direct boundary element for the flow has been presented on the potentialflow assumption, and a calculati... By means of the analysis of the internal flow within inlet passage of large pumping sta-tion, an analysis of 3-D direct boundary element for the flow has been presented on the potentialflow assumption, and a calculation and an experimental proof for the inlet passage of 30 angle-type axial pumping station have been made. Based on the analysis of the calculations and theexperiments, the calculation method is feasible and believable. 展开更多
关键词 Large pumping station Inlet passage Internal flow
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排涝泵站优化调度决策支持系统的开发及应用 被引量:1
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作者 周龙才 朱一松 +4 位作者 李水兵 刘婉春 贺继华 李盛禹 石诚彬 《中国农村水利水电》 北大核心 2026年第1期147-151,共5页
为提升排涝泵站运行调度水平,降低运行能耗,以武汉市经济技术开发区泵站群为研究对象,开发了排涝泵站优化调度决策支持系统。系统包含数据管理、模型管理、调度管理及运行统计等四大功能模块,支持实时监测、调度预案生成与多方案比选,... 为提升排涝泵站运行调度水平,降低运行能耗,以武汉市经济技术开发区泵站群为研究对象,开发了排涝泵站优化调度决策支持系统。系统包含数据管理、模型管理、调度管理及运行统计等四大功能模块,支持实时监测、调度预案生成与多方案比选,并依托AI水管家平台实现远程访问与智能化管理。基于动态规划模型,集成多源数据与优化算法,考虑水泵机组的变速、变角双调节功能,对非抢排涝水期以平均装置效率最高为目标生成最优调度方案。在2024年汛期调度中成功应用该系统优化了机组的运行方案,其中东湖低排泵站在非抢排涝水期间装置效率提升17.17%,在满足流量需求的同时降低了能耗。成果可为排涝泵站精细化调度提供技术支撑。 展开更多
关键词 排涝泵站 优化调度 决策支持系统 动态规划 智慧水利
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年产千万吨综放工作面超远距离供液技术研究
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作者 马英 王伦 +4 位作者 魏存跃 李思岩 李营 侯成明 佟友 《中国煤炭》 北大核心 2026年第1期83-91,共9页
为解决采煤工作面推进长度增加后,传统综放工作面供液技术面临的压力损失大、供液稳定性差、智能化控制水平低等难题,满足高效安全开采需求,以肖家洼煤矿年产千万吨221304智能化综放工作面为研究对象,开展4 500 m超远距离供液技术研究... 为解决采煤工作面推进长度增加后,传统综放工作面供液技术面临的压力损失大、供液稳定性差、智能化控制水平低等难题,满足高效安全开采需求,以肖家洼煤矿年产千万吨221304智能化综放工作面为研究对象,开展4 500 m超远距离供液技术研究。通过分析管路压力损失特性,优化确定Φ133 mm×12 mm单进单回供液管路方案,并结合振动抑制、应力监测等技术降低压力损失与提升管路稳定性;通过集成智能传感、远程协同等技术,构建“云-边-端”三级智能控制架构,采用自适应模糊PID等算法实现系统精准调控。现场应用表明,该技术使管路压力损失降低18.7%,月均故障率下降42.2%,检修效率提高45.9%,保障了工作面年产千万吨的生产能力。该技术体系提升了超远距离供液系统的可靠性与智能化水平,为深部复杂煤层开采提供了成熟范式,对煤炭行业智能化、绿色化转型具有重要推广价值。 展开更多
关键词 综放工作面 超远距离供液系统 供液管路优化 智能化泵站系统
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Study on flow dynamics in a horizontal axial flow pumping station under off-design conditions
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作者 Shuaihao Lei Li Cheng 《International Journal of Fluid Engineering》 2026年第1期51-59,共9页
Large axial flow pump systems are widely used in inter-basin water transfer,farmland irrigation,and urban flood control.However,they often face challenges associated with off-design conditions during operation,leading... Large axial flow pump systems are widely used in inter-basin water transfer,farmland irrigation,and urban flood control.However,they often face challenges associated with off-design conditions during operation,leading to significant flow losses and pressure pulsations.To gain deeper insights into flow characteristics under off-design conditions,this study systematically investigates the flow losses and pressure pulsation energy characteristics of a horizontal axial flow pumping station using entropy production theory and the energy flow density method.The results indicate that under low-flow conditions,noticeable flow separation and horn-like vortex structures appear inside the impeller.Additionally,the energy loss of the pumping station under off-design conditions reaches 3.77 times that under the design condition at a low flow rate and 1.24 times at a high flow rate.In the main flow regions,the blade leading and trailing edges are identified as high-loss zones.Moreover,pressure pulsations are particularly intense under low-flow conditions,where the energy flux density and peak-to-peak value at the outlet rim side are respectively 52.69 times and 10.93 times those under the design condition.To ensure the safe and efficient operation of the pumping station,it is recommended to minimize operation hours under low-flow conditions. 展开更多
关键词 flow losses entropy productio horizontal axial flow pumping station pressure pulsation energy characteristics flow characteristics horizontal axial flow pumping pressure pulsations off design conditions
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抽水蓄能电站大跨度地下洞室围岩工程地质分类
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作者 刘英 于立宏 +2 位作者 周晔 张旭柱 杨鹏飞 《云南水力发电》 2026年第3期29-32,共4页
针对抽水蓄能电站大跨度地下洞室,充分利用外业、物理力学性质实验,多元回归反演分析得出的地应力成果,首先运用水力发电工程地质勘察规范进行洞室围岩工程地质分类,再运用Q系统对大跨度地下洞室围岩进行围岩分类研究,综合对比二种围岩... 针对抽水蓄能电站大跨度地下洞室,充分利用外业、物理力学性质实验,多元回归反演分析得出的地应力成果,首先运用水力发电工程地质勘察规范进行洞室围岩工程地质分类,再运用Q系统对大跨度地下洞室围岩进行围岩分类研究,综合对比二种围岩分类方法结论和成果,最终确定大跨度地下洞室围岩类别。为抽水蓄能电站顺利开工建设提供了技术保障。 展开更多
关键词 抽水蓄能电站 围岩 标准 Q系统 地应力
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信创PLC控制技术在选煤厂泵站状态自动化测度中的应用
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作者 张腾 《国外电子测量技术》 2026年第1期301-306,共6页
选煤厂泵站系统运行环境恶劣且负载变化大,在长期运行中设备状态逐渐劣化,导致设备的输送效率与运行稳定性下降,进而影响生产安全。为此,提出将信创可编程逻辑控制器(Programmable Logic Controller,PLC)控制技术应用于选煤厂泵站状态... 选煤厂泵站系统运行环境恶劣且负载变化大,在长期运行中设备状态逐渐劣化,导致设备的输送效率与运行稳定性下降,进而影响生产安全。为此,提出将信创可编程逻辑控制器(Programmable Logic Controller,PLC)控制技术应用于选煤厂泵站状态的自动化测度中。选用龙芯3A1000作为控制器主控芯片,结合DI/O模块、AI/O模块、运动控制模块及存储模块等硬件设计可编程控制器,将泵站运行状态数据接入该控制器,通过PLC集成振动传感器、测温设备、流量计和压力变送器等多类型数据,融合处理多传感器采集的数据,构建可反映泵站系统运行状态的多维数据集。提取泵站运行状态信号的动态特征量,对其进行时频域联合分析,自适应表征信号的时域与频域特征。将时频域联合特征输入残差神经网络,利用Softmax函数构建分类器,输出泵站运行状态的性能指标,根据指标值确定设备的运行状态,完成泵站状态自动化测度。实验结果表明,通过设计方法的应用,输出设备运行状态测度结果的决定系数高于0.7,与实际值的拟合能力较强,提升了设备状态的测度精度。 展开更多
关键词 可编程逻辑控制器 泵站系统 自动化测度 多维数据集 残差神经网络
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多能互补电力系统中混合式抽水蓄能电站作用分析
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作者 胡玮 姜梦妍 +2 位作者 董闯 益波 李运龙 《人民黄河》 北大核心 2026年第1期155-160,共6页
基于多种类电源区域电力系统研究混合式抽蓄电站的作用,构建了多时间尺度的互补调度优化模型,优化了青海电力系统全年8760 h互补运行。以黄河上游龙羊峡—拉西瓦梯级水电站增设可逆机组为例,分析其储能功能和对水电站运行的影响。结果表... 基于多种类电源区域电力系统研究混合式抽蓄电站的作用,构建了多时间尺度的互补调度优化模型,优化了青海电力系统全年8760 h互补运行。以黄河上游龙羊峡—拉西瓦梯级水电站增设可逆机组为例,分析其储能功能和对水电站运行的影响。结果表明:根据拉西瓦水库水位波动控制情况不同,120万kW可逆机组全年抽水消纳弃电19亿~29亿kW·h,降低电网弃电率1.0%~1.8%,龙羊峡水电站增发电量15亿~22亿kW·h;拉西瓦水库水位变幅限制对龙羊峡水电站可逆机组抽水和发电时长产生较大影响,将使可逆机组长时储能和调峰效益无法充分发挥;可逆机组在新能源连续大发和小发的特殊场景下能够分别进行10 h以上的长时抽水和发电运行,保障电力系统稳定运行。 展开更多
关键词 多能互补 调度优化 混合式抽水蓄能 梯级水电站 电力生产模拟 龙羊峡水电站 拉西瓦水电站
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城市轨道交通车站热泵系统制冷剂充注量故障诊断方法研究
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作者 方如胜 韩星 +2 位作者 廖毅 于斌山 徐新胜 《城市轨道交通研究》 北大核心 2026年第2期160-166,共7页
[目的]低温环境下,双级压缩热泵系统比单级热泵系统具有更高的制热效率,北方城市轨道交通车站应用双级压缩热泵系统更加节能环保。然而,热泵系统制冷剂泄漏导致的能源浪费是巨大的,制冷剂泄漏超过额定充注量的25%,系统能效比将下降15%,... [目的]低温环境下,双级压缩热泵系统比单级热泵系统具有更高的制热效率,北方城市轨道交通车站应用双级压缩热泵系统更加节能环保。然而,热泵系统制冷剂泄漏导致的能源浪费是巨大的,制冷剂泄漏超过额定充注量的25%,系统能效比将下降15%,制冷/制热能力将下降20%,因此,实时监测热泵系统制冷剂保有量、对制冷剂故障进行诊断的研究至关重要。[方法]针对一种准双级热泵系统开展研究,提出了一种层级特征筛选法用于筛选热泵系统制冷剂充注量的故障特征参数,利用Pearson相关系数分析系统的状态参数,通过去冗余等方法最终确定制冷剂充注量故障的关键特征参数,并根据特征参数建立了预测制冷剂充注量的分段经验公式,即VRC(虚拟传感器)模型。[结果及结论]利用通过层级特征筛选法得到的不同制冷剂保有量下的故障特征参数对VRC模型进行了修正,有效提高了VRC模型的精度。试验结果表明:利用分段VRC模型诊断系统充注量,总体准确率达到90.2%,具有良好的诊断性能。 展开更多
关键词 城市轨道交通 车站 热泵系统 制冷剂充注量 特征参数 故障诊断
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泵站有压调水系统日优化调度模型的敏感性分析
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作者 雷晓辉 耿旭 +1 位作者 杜梦盈 景象 《水电能源科学》 北大核心 2026年第2期145-149,共5页
泵站有压调水系统经济运行受多元参数作用影响,存在关键参数敏感性模糊及交互机制不明确等问题。为进一步识别关键敏感参数并明晰各参数之间的关系,构建日优化调度模型,以泵站流量、泵站进水池水位、管线糙率、水库水位为敏感性参数,基... 泵站有压调水系统经济运行受多元参数作用影响,存在关键参数敏感性模糊及交互机制不明确等问题。为进一步识别关键敏感参数并明晰各参数之间的关系,构建日优化调度模型,以泵站流量、泵站进水池水位、管线糙率、水库水位为敏感性参数,基于拉丁超立方抽样方法对各参数进行抽样,并采用Morris局部敏感性分析和Sobol全局敏感性分析法对泵站有压调水系统日优化调度模型进行敏感性分析。对珠三角供水工程罗田泵站至公明水库段的研究结果表明,泵站流量为模型最敏感参数,对泵站调水成本和能耗的影响最为显著,泵站进水池水位与管线糙率同样具有较高敏感性。研究结果可为模型构建及参数率定提供理论依据。 展开更多
关键词 泵站 有压调水系统 敏感性分析 Morris法 Sobol法
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光伏储能系统作为抽蓄备用电源的运行仿真研究
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作者 方之瑶 黄云辉 《水电与新能源》 2026年第2期36-40,共5页
为提高抽水蓄能电站厂用电的供电可靠性,提出一种基于光伏储能系统的备用电源优化方案。以白莲河抽水蓄能电站为研究对象,首先,结合电站自然资源与场地条件进行光伏储能系统的选址与容量规划;其次,设计光伏系统与储能系统的结构及其控... 为提高抽水蓄能电站厂用电的供电可靠性,提出一种基于光伏储能系统的备用电源优化方案。以白莲河抽水蓄能电站为研究对象,首先,结合电站自然资源与场地条件进行光伏储能系统的选址与容量规划;其次,设计光伏系统与储能系统的结构及其控制策略,并针对不同运行工况提出了9种工作模式,涵盖并网、离网及黑启动等多种运行状态;最后,通过仿真验证了光伏储能系统在典型工况下的协调运行性能。结果表明,所提方案能够实现并离网无缝切换,有效提升厂用电系统的可靠性与清洁能源利用率,具备良好的工程应用前景。 展开更多
关键词 光伏储能系统 抽水蓄能电站 备用电源 工作模式
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