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Distribution network gray-start and emergency recovery strategy with pumped storage unit under a typhoon
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作者 Zhenguo Wang Hui Hou +4 位作者 Chao Liu Shaohua Wang Zhengtian Li Xiangning Lin Te Li 《Global Energy Interconnection》 2025年第1期121-133,共13页
Typhoons can cause large-area blackouts or partial outages of distribution networks.We define a partial outage state in the distribution network as a gray state and propose a gray-start strategy and two-stage distribu... Typhoons can cause large-area blackouts or partial outages of distribution networks.We define a partial outage state in the distribution network as a gray state and propose a gray-start strategy and two-stage distribution network emergency recovery framework.A phase-space reconstruction and stacked integrated model for predicting wind and photovoltaic generation during typhoon disasters is proposed in the first stage.This provides guidance for second-stage post-disaster emergency recovery scheduling.The emergency recovery scheduling model is established in the second stage,and this model is supported by a thermal power-generating unit,mobile emergency generators,and distributed generators.Distributed generation includes wind power generation,photovoltaics,fuel cells,etc.Simultaneously,we con-sider the gray-start based on the pumped storage unit to be an important first step in the emergency recovery strategy.This model is val-idated on the improved IEEE 33 node system,which utilizes data from the 2022 super typhoon“Muifa”in Zhoushan,Zhejiang,China.Simulations indicate the superiority of a gray start with a pumped storage unit and the proposed emergency recovery strategy. 展开更多
关键词 Wind and photovoltaic generation prediction pumped storage unit Gray-start Distribution network Emergency recovery strategy
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An LED-Side-Pumped Intracavity Frequency-Doubled Nd,Ce:YAG Laser Producing a 2W Q-Switched Red Beam
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作者 沈建平 徐少聪 +6 位作者 芦鹏 江容容 王巍 张四维 邢凤阳 陈阳 陈亮 《Chinese Physics Letters》 SCIE EI CAS CSCD 2024年第3期44-47,共4页
We report a high-average-power acousto-optic(AO)Q-switched intracavity frequency-doubled red laser based on a high-efficiency light-emitting-diode(LED)pumped two-rod Nd,Ce:YAG laser module.Under quasi-continuous wave ... We report a high-average-power acousto-optic(AO)Q-switched intracavity frequency-doubled red laser based on a high-efficiency light-emitting-diode(LED)pumped two-rod Nd,Ce:YAG laser module.Under quasi-continuous wave operation conditions,a maximum output power of 1319.08 nm wavelength was achieved at 11.26 W at a repetition rate of 100 Hz. 展开更多
关键词 pumpED SWITCHED LASER
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Wear dependent virtual flow rate sensor for progressing cavity pumps with deformable stator
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作者 Jens Müller Sebastian Leonow +2 位作者 Johannes Schulz Christian Hansen Martin Monnigmann 《Petroleum Science》 SCIE EI CAS CSCD 2024年第2期1346-1353,共8页
This contribution presents a novel wear dependent virtual flow rate sensor for single stage single lobe progressing cavity pumps. We study the wear-induced material loss of the pump components and the impact of this m... This contribution presents a novel wear dependent virtual flow rate sensor for single stage single lobe progressing cavity pumps. We study the wear-induced material loss of the pump components and the impact of this material loss on the volumetric efficiency. The results are combined with an established backflow model to implement a backflow calculation procedure that is adaptive to wear. We use a laboratory test setup with a highly abrasive fluid and operate a pump from new to worn condition to validate our approach. The obtained measurement data show that the presented virtual sensor is capable of calculating the flow rate of a pump being subject to wear during its regular operation. 展开更多
关键词 BACKFLOW Progressing cavity pump Virtual sensor WEAR
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Dual-wavelength pumped latticed Fermi-Pasta-Ulam recurrences in nonlinear Schrödinger equation
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作者 张倩 姚献坤 董恒 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第3期277-280,共4页
We show that the nonlinear stage of the dual-wavelength pumped modulation instability(MI)in nonlinear Schrödinger equation(NLSE)can be effectively analyzed by mode truncation methods.The resulting complicated het... We show that the nonlinear stage of the dual-wavelength pumped modulation instability(MI)in nonlinear Schrödinger equation(NLSE)can be effectively analyzed by mode truncation methods.The resulting complicated heteroclinic structure of instability unveils all possible dynamic trajectories of nonlinear waves.Significantly,the latticed-Fermi-Pasta-Ulam recurrences on the modulated-wave background in NLSE are also investigated and their dynamic trajectories run along the Hamiltonian contours of the heteroclinic structure.It is demonstrated that there has much richer dynamic behavior,in contrast to the nonlinear waves reported before.This novel nonlinear wave promises to inject new vitality into the study of MI. 展开更多
关键词 modulation instability dual-wavelength pumps latticed-Fermi-Pasta-Ulam recurrences
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In-phase and out-of-phase spin pumping effects in Py/Ru/Pysynthetic antiferromagnetic structures
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作者 Zhaocong Huang Xuejian Tang +5 位作者 Qian Chen Wei Jiang Qingjie Guo Milad Jalali Jun Du Ya Zhai 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第9期541-545,共5页
The spin pumping effect in magnetic heterostructures and multilayers is a highly effective method for the generationand transmission of spin currents. In the increasingly prominent synthetic antiferromagnetic structur... The spin pumping effect in magnetic heterostructures and multilayers is a highly effective method for the generationand transmission of spin currents. In the increasingly prominent synthetic antiferromagnetic structures, the two ferromagneticlayers demonstrate in-phase and out-of-phase states, corresponding to acoustic and optical precession modes. Withinthis context, our study explores the spin pumping effect in Py/Ru/Py synthetic antiferromagnetic structures across differentmodes. The heightened magnetic damping resulting from the spin pumping effect in the in-phase state initially decreaseswith increasing Py thickness before stabilizing. Conversely, in the out-of-phase state, the amplified damping exceeds thatof the in-phase state, suggesting a greater spin relaxation within this configuration, which demonstrates sensitivity to alterationsin static exchange interactions. These findings contribute to advancing the application of synthetic antiferromagneticstructures in magnonic devices. 展开更多
关键词 spin pumping spin transmission synthetic antiferromagnetic structures spin dynamics
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Inter-stage performance and energy characteristics analysis of electric submersible pump based on entropy production theory
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作者 Hui Wang Yang Yang +5 位作者 Bin Xi Wei-Dong Shi Chuan Wang Lei-Lei Ji Xiang-Yu Song Zhao-Ming He 《Petroleum Science》 SCIE EI CAS CSCD 2024年第2期1354-1368,共15页
The electric submersible pump(ESP) is a crucial apparatus utilized for lifting in the oil extraction process.Its lifting capacity is enhanced by the multi-stage tandem structure, but variations in energy characteristi... The electric submersible pump(ESP) is a crucial apparatus utilized for lifting in the oil extraction process.Its lifting capacity is enhanced by the multi-stage tandem structure, but variations in energy characteristics and internal flow across stages are also introduced. In this study, the inter-stage variability of energy characteristics in ESP hydraulic systems is investigated through entropy production(EP) analysis,which incorporates numerical simulations and experimental validation. The EP theory facilitates the quantification of energy loss in each computational subdomain at all ESP stages, establishing a correlation between microscopic flow structure and energy dissipation within the system. Furthermore, the underlying causes of inter-stage variability in ESP hydraulic systems are examined, and the advantages and disadvantages of applying the EP theory in this context are evaluated. Consistent energy characteristics within the ESP, aligned with the distribution of internal flow structure, are provided by the EP theory, as demonstrated by our results. The EP theory also enables the quantitative analysis of internal flow losses and complements existing performance analysis methods to map the internal flow structure to hydraulic losses. Nonetheless, an inconsistency between the energy characterization based on EP theory and the traditional efficiency index when reflecting inter-stage differences is identified. This inconsistency arises from the exclusive focus of the EP theory on flow losses within the flow field, disregarding the quantification of external energy input to the flow field. This study provides a reference for the optimization of EP theory in rotating machinery while deeply investigating the energy dissipation characteristics of multistage hydraulic system, which has certain theoretical and practical significance. 展开更多
关键词 Electric submersible pump(ESP) Entropy production theory Energy characteristics Inter-stage differences
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Influence of pressure disturbance wave on dynamic response characteristics of liquid film seal for multiphase pump
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作者 Qing-Ping Li Jin-Ya Zhang +1 位作者 Jia-Xiang Zhang Yong-Xue Zhang 《Petroleum Science》 SCIE EI CAS CSCD 2024年第3期2048-2065,共18页
Slug flow or high GVF(Gas Volume Fraction)conditions can cause pressure disturbance waves and alternating loads at the boundary of mechanical seals for multiphase pumps,endangering the safety of multiphase pump units.... Slug flow or high GVF(Gas Volume Fraction)conditions can cause pressure disturbance waves and alternating loads at the boundary of mechanical seals for multiphase pumps,endangering the safety of multiphase pump units.The mechanical seal model is simplified by using periodic boundary conditions and numerical calculations are carried out based on the Zwart-Gerber-Belamri cavitation model.UDF(User Define Function)programs such as structural dynamics equations,alternating load equations,and pressure disturbance equations are embedded in numerical calculations,and the dynamic response characteristics of mechanical seal are studied using layered dynamic mesh technology.The results show that when the pressure disturbance occurs at the inlet,as the amplitude and period of the disturbance increase,the film thickness gradually decreases.And the fundamental reason for the hysteresis of the film thickness change is that the pressure in the high-pressure area cannot be restored in a timely manner.The maximum value of leakage and the minimum value of axial velocity are independent of the disturbance period and determined by the disturbance amplitude.The mutual interference between enhanced waves does not have a significant impact on the film thickness,while the front wave in the attenuated wave has a promoting effect on the subsequent film thickness changes,and the fluctuation of the liquid film cavitation rate and axial velocity under the attenuated wave condition deviates from the initial values.Compared with pressure disturbance conditions,alternating load conditions have a more significant impact on film thickness and leakage.During actual operation,it is necessary to avoid alternating load conditions in multiphase pump mechanical seals. 展开更多
关键词 Multiphase pump Liquid film seal Pressure disturbance wave Dynamic response characteristics
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Working condition recognition of sucker rod pumping system based on 4-segment time-frequency signature matrix and deep learning
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作者 Yun-Peng He Hai-Bo Cheng +4 位作者 Peng Zeng Chuan-Zhi Zang Qing-Wei Dong Guang-Xi Wan Xiao-Ting Dong 《Petroleum Science》 SCIE EI CAS CSCD 2024年第1期641-653,共13页
High-precision and real-time diagnosis of sucker rod pumping system(SRPS)is important for quickly mastering oil well operations.Deep learning-based method for classifying the dynamometer card(DC)of oil wells is an eff... High-precision and real-time diagnosis of sucker rod pumping system(SRPS)is important for quickly mastering oil well operations.Deep learning-based method for classifying the dynamometer card(DC)of oil wells is an efficient diagnosis method.However,the input of the DC as a two-dimensional image into the deep learning framework suffers from low feature utilization and high computational effort.Additionally,different SRPSs in an oil field have various system parameters,and the same SRPS generates different DCs at different moments.Thus,there is heterogeneity in field data,which can dramatically impair the diagnostic accuracy.To solve the above problems,a working condition recognition method based on 4-segment time-frequency signature matrix(4S-TFSM)and deep learning is presented in this paper.First,the 4-segment time-frequency signature(4S-TFS)method that can reduce the computing power requirements is proposed for feature extraction of DC data.Subsequently,the 4S-TFSM is constructed by relative normalization and matrix calculation to synthesize the features of multiple data and solve the problem of data heterogeneity.Finally,a convolutional neural network(CNN),one of the deep learning frameworks,is used to determine the functioning conditions based on the 4S-TFSM.Experiments on field data verify that the proposed diagnostic method based on 4S-TFSM and CNN(4S-TFSM-CNN)can significantly improve the accuracy of working condition recognition with lower computational cost.To the best of our knowledge,this is the first work to discuss the effect of data heterogeneity on the working condition recognition performance of SRPS. 展开更多
关键词 Sucker-rod pumping system Dynamometer card Working condition recognition Deep learning Time-frequency signature Time-frequency signature matrix
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Research on power improvement of a LD directly-pumped mid-infrared pulse solid-state laser
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作者 ZHANG Meng YANG Xi +5 位作者 GUO Jia-Wei CAI He WU Xin-Yang HAN Ju-Hong WANG Shun-Yan WANG You 《红外与毫米波学报》 CSCD 北大核心 2024年第6期820-826,共7页
An LD directly-pumped solid-state laser is considered to be one of the most promising mid-infrared light sources because of its simple principle,small size,and compact structure for the generation of mid-infrared(MIR)... An LD directly-pumped solid-state laser is considered to be one of the most promising mid-infrared light sources because of its simple principle,small size,and compact structure for the generation of mid-infrared(MIR)lasers in the 3-5µm band.However,the quantum defect of LD directly-pumped MIR solid-state lasers will be much larger than that of ordinary near-infrared LD pumped solid-state lasers,which may lead to thermal damage and limit their development.In order to solve this problem,the methods of reducing the specific surface area of the crystal and improving the thermal energy released by the crystal structure are discussed,and the opti⁃mal length of the laser crystal is determined.The cooling structures of barium yttrium fluoride laser crystals(Ho^(3+):BY_(2)F_(8))of different lengths were studied by thermal simulation using COMSOL software.The experimen⁃tal results show that the output power can be increased and the thermal stress in the laser crystal can be alleviated by using the laser crystal whose length is slightly shorter than that of the cooler.The final experiment shows that when the pump repetition rate is 15 Hz and the pulse width is 90µs,the single pulse energy is 7.28 mJ at the out⁃put wavelength of 3.9µm,which is about 3 times as large as that of the crystal with the length of 10 mm(2.81 mJ).Such results should be another breakthrough of our team since the first directly-pumped solid-state MIR laser was realized more than a year ago.It might pave the way for the construction of a feasible MIR laser in the near future. 展开更多
关键词 mid-infrared laser LD directly pumping solid state laser Ho:BYF laser crystal
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航空发动机燃油泵动静压滑动轴承润滑特性与参数影响分析 被引量:1
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作者 符江锋 仲世杰 +2 位作者 罗康 刘显为 魏士杰 《推进技术》 北大核心 2025年第1期237-252,共16页
航空发动机燃油齿轮泵的滑动轴承长期工作在高温、高压和低黏介质极端工况下,极易诱发润滑失效,其润滑性能演变规律尚未完全探明。本文通过建立动静压混合润滑条件下燃油泵滑动轴承流体润滑模型,采用超声测量原理测试了燃油泵真实服役... 航空发动机燃油齿轮泵的滑动轴承长期工作在高温、高压和低黏介质极端工况下,极易诱发润滑失效,其润滑性能演变规律尚未完全探明。本文通过建立动静压混合润滑条件下燃油泵滑动轴承流体润滑模型,采用超声测量原理测试了燃油泵真实服役工况下的油膜厚度,验证了多个载荷条件滑动轴承润滑模型的油膜厚度计算准确性。最后,基于试验验证的润滑计算模型,研究了宽径比、偏心率和油槽位置对轴承润滑性能的影响规律。研究结果表明:计算的油膜厚度随工况变化规律与试验测点十分吻合,两者的平均计算误差为2.3%,此外,燃油泵负载增大会使得油膜的最小厚度向进口油槽处偏转,进而导致动压能力减弱,轴承在大负载工况的承载能力主要由静压提供。宽径比B/D由0.4增大至1.2时,会导致油膜温度沿周向降低1.2℃,而沿轴向升高0.5℃,偏心率增大会导致油膜厚度变小,混合润滑轴承中间截面处的动压提升0.43 MPa,设计滑动轴承的油槽位置应开在收敛楔形结构前端或者开扩楔形结构处,能提升轴承承载性能。 展开更多
关键词 航空发动机 燃油齿轮泵 滑动轴承 润滑 油膜测试
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基于PumpLinx的燃油柱塞泵配流副抗气蚀研究
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作者 蔡文波 《西安航空学院学报》 2024年第1期54-58,共5页
针对某型燃油柱塞泵耐久性试验后配流副出现严重气蚀现象,对燃油柱塞泵配流副抗气蚀原理进行理论分析,应用PumpLinx软件建立燃油柱塞泵流体域动态模型,仿真分析额定工况下影响配流副气蚀的因素。结果表明,随着进口压力减小、转速增大、... 针对某型燃油柱塞泵耐久性试验后配流副出现严重气蚀现象,对燃油柱塞泵配流副抗气蚀原理进行理论分析,应用PumpLinx软件建立燃油柱塞泵流体域动态模型,仿真分析额定工况下影响配流副气蚀的因素。结果表明,随着进口压力减小、转速增大、温度增大,气蚀加重;配流盘阻尼槽三角槽宽度角度增大能有效抑制气蚀,三角槽宽度角度达到90°时,三角槽处气蚀几乎消失。根据仿真结果给出抗气蚀措施:进口压力由0.2 MPa提高至0.3 MPa,三角槽宽度角度由75°优化为90°。仿真和试验验证证明了该抗气蚀措施的正确性。研究结果为解决配流副气蚀问题提供了一种有效方法。 展开更多
关键词 pumpLinx 燃油柱塞泵 抗气蚀
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基于正交试验的斜流泵改造能量特性优化研究
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作者 李延频 张启帆 张自超 《水电能源科学》 北大核心 2025年第2期186-190,共5页
为探究斜流泵抽水蓄能化改造的可行性,研究其叶轮参数对水泵工况和水轮机工况下能量特性的影响,对某型斜流泵进行改造和数值模拟。应用L9(34)正交表,选取转轮进、出口角、包角和叶片数4个参数,指标设定为水泵工况效率和扬程及水轮机工... 为探究斜流泵抽水蓄能化改造的可行性,研究其叶轮参数对水泵工况和水轮机工况下能量特性的影响,对某型斜流泵进行改造和数值模拟。应用L9(34)正交表,选取转轮进、出口角、包角和叶片数4个参数,指标设定为水泵工况效率和扬程及水轮机工况效率,进行4因素3水平的正交优化,再通过极差分析研究各因素对性能的影响,通过数值模拟分析改造及优化前后的内外特性。结果表明,叶片出口角对抽水和发电工况的效率影响最大。优化后的模型提高了能量特性,水泵工况效率提高了0.816%,水轮机工况效率提高0.82%,且优化后的内特性有一定程度的改善,水轮机工况下的空化性能更好,表明对斜流泵进行抽水蓄能化改造是可行的。该研究为斜流泵的进一步抽水蓄能化改造提供了借鉴和支持。 展开更多
关键词 斜流泵 水泵水轮机 正交优化 数值模拟
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基于离心泵数字孪生流场云图的叶轮故障诊断方法与应用
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作者 李亚洁 刘强 李炜 《北京航空航天大学学报》 北大核心 2025年第1期193-201,共9页
随着工业技术的发展,离心泵的健康诊断与维护需求日益迫切,结合数字孪生和机器视觉技术,提出一种基于数字孪生流场云图的离心泵叶轮机械故障智能诊断方法。借助离心泵数字孪生模型来模拟叶轮叶片随机断裂故障的演化发展,生成具有不同故... 随着工业技术的发展,离心泵的健康诊断与维护需求日益迫切,结合数字孪生和机器视觉技术,提出一种基于数字孪生流场云图的离心泵叶轮机械故障智能诊断方法。借助离心泵数字孪生模型来模拟叶轮叶片随机断裂故障的演化发展,生成具有不同故障特征的叶轮流场压力及速度云图;基于对Yolov5算法的学习训练,获得了压力和速度云图两类机器视觉模型,并结合统计分析实现了叶轮故障的初步诊断;进而考虑两类检测模型的优势互补特性,基于堆叠集成的思想将二者融合,以提升叶轮故障诊断的准确性。经实验验证,针对叶轮叶片的随机断裂故障,所提方法可达到0.99以上的诊断准确度,开发的离心泵叶轮机械故障智能诊断系统使所提方法得以落地应用。 展开更多
关键词 离心泵 数字孪生 叶轮机械 机器视觉 智能诊断
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空化工况下喷水推进泵内涡结构的时空演化
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作者 赵斌娟 宋英南 +2 位作者 黄忠富 付燕霞 陈汇龙 《排灌机械工程学报》 北大核心 2025年第2期116-123,共8页
为揭示混流式喷水推进泵在空化工况下内部涡结构的演化情况,在空化数为0.142的工况下使用Ω涡识别方法对其内部涡结构进行识别和研究,在此基础上研究了空化对涡结构特征演化的影响,并分析了1个周期内涡量运输方程各项对涡结构演化的贡献... 为揭示混流式喷水推进泵在空化工况下内部涡结构的演化情况,在空化数为0.142的工况下使用Ω涡识别方法对其内部涡结构进行识别和研究,在此基础上研究了空化对涡结构特征演化的影响,并分析了1个周期内涡量运输方程各项对涡结构演化的贡献.结果表明:空化工况下,喷水推进泵内部流动复杂,极易产生旋涡,主要的涡结构有叶顶泄漏涡、次级泄漏涡、垂直空化涡和次级泄漏衍生涡;随着三角形空化的坍缩,进口附着涡的涡结构尺度增加,但叶顶泄漏涡因为空泡逐渐增大的缘故涡量逐渐减小;1个周期内,喷水推进泵内空泡尺度较大时,涡结构数量较多,但强度较小.空泡尺度较小时,涡结构尺度较小,强度较大;通过对涡量运输方程进行分解可以发现,拉伸扭曲项的分布与涡量分布具有极高的相似性,压缩膨胀项的量级最高,对垂直空化涡和脱落涡的变化较为敏感,斜压扭矩项在垂直空化涡的发生位置量级较高. 展开更多
关键词 喷水推进泵 空化工况 涡结构 Ω方法 涡量输运
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面向工业应用场景的超高温蒸汽热泵研究进展
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作者 姚远 陆振能 +2 位作者 曲勇 刘广平 龚宇烈 《新能源进展》 北大核心 2025年第1期39-50,共12页
超高温蒸汽热泵是极具潜力的工业高温供热脱碳技术。蒸汽热泵所采用的工质日益环保,目前自然工质水和氢氟烯烃类工质成为研究焦点,其中R1336mzz-Z、R1234ze-Z、R1233zd-E最有商业化推广前景。复叠压缩、两级压缩和水蒸气再压缩是保证蒸... 超高温蒸汽热泵是极具潜力的工业高温供热脱碳技术。蒸汽热泵所采用的工质日益环保,目前自然工质水和氢氟烯烃类工质成为研究焦点,其中R1336mzz-Z、R1234ze-Z、R1233zd-E最有商业化推广前景。复叠压缩、两级压缩和水蒸气再压缩是保证蒸汽热泵高温输出的主要循环形式。离心压缩机和螺杆压缩机是蒸汽热泵中应用最多和最有前景的压缩机类型。压缩机中间补气或补水技术成为降低压缩机排气温度、增强压缩机高温稳定性的有效措施。国内外蒸汽热泵机组测试结果显示,蒸汽热泵机组的制热性能系数随着温升值和输出温度的提高而降低,目前多数机组产汽温度在200℃以下,温升低于60℃,制热性能系数介于2.5~3.2之间。随着工业企业减碳技术需求大增,蒸汽热泵在我国进入快速发展的机遇期,120℃蒸汽热泵已成为行业主流,追求更高温度蒸汽成为未来发展目标。 展开更多
关键词 工业供热 蒸汽热泵 工质 性能系数 压缩机
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疲劳荷载作用下无砟轨道混凝土钙溶蚀特性
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作者 杨荣山 仪皓楠 +1 位作者 康维新 曹世豪 《铁道学报》 北大核心 2025年第2期160-171,共12页
无砟轨道结构在多雨地区或排水不畅地段会出现混凝土层间冒浆现象,该现象主要由力学损伤与化学溶蚀共同引起,其中钙溶蚀是化学溶蚀的主要形式之一。通过对现场冒浆采集物进行化学成分测定,证实水环境下混凝土的钙溶蚀现象,开展疲劳荷载... 无砟轨道结构在多雨地区或排水不畅地段会出现混凝土层间冒浆现象,该现象主要由力学损伤与化学溶蚀共同引起,其中钙溶蚀是化学溶蚀的主要形式之一。通过对现场冒浆采集物进行化学成分测定,证实水环境下混凝土的钙溶蚀现象,开展疲劳荷载下的无砟轨道混凝土钙溶蚀试验,采用原子吸收分光光度计测试混凝土溶蚀过程中的钙离子溶出量,采用钨灯丝电镜(SEM)结合面扫描能谱仪(EDS)测定混凝土微观结构分布与钙元素占比,基于钙离子溶出量与氧化钙含量计算试件的溶蚀率和溶蚀深度。测试溶蚀后混凝土表面平均强度,分析钙溶蚀深度对混凝土表面强度的影响。结果表明:疲劳荷载不改变C15、C40混凝土的溶蚀模式,但会加快钙溶蚀的发展速率;对于C15混凝土,累计钙溶出量与时间成正比,疲劳荷载作用下溶蚀速率提升了127.5%,对于C40混凝土,累计钙溶出量与时间平方根成正比,疲劳荷载作用下溶蚀速率提升了68.9%;钙溶蚀会明显削弱混凝土表面的抗压强度,C15混凝土在有、无疲劳荷载作用下加速溶蚀7 d后,平均表面抗压强度损失分别为57.5%、40.6%,C40在有、无疲劳荷载作用下加速溶蚀7 d后,混凝土平均表面抗压强度损失分别为56.2%、43.9%。 展开更多
关键词 无砟轨道 列车荷载 冒浆 钙溶蚀
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面向CFD计算的离心泵蜗壳模型优化方法
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作者 谈明高 蒋振清 +2 位作者 刘厚林 吴贤芳 邵晨 《排灌机械工程学报》 北大核心 2025年第3期231-237,共7页
由于离心泵蜗壳模型结构较为复杂,在进行三维建模的过程中会进行大量复杂的几何操作,导致在CAD模型表面会出现碎面,使后续CFD计算的网格划分环节难以进行.为了解决此问题,首先对蜗壳水力图和三维模型进行分析,结合蜗壳模型中的碎面特点... 由于离心泵蜗壳模型结构较为复杂,在进行三维建模的过程中会进行大量复杂的几何操作,导致在CAD模型表面会出现碎面,使后续CFD计算的网格划分环节难以进行.为了解决此问题,首先对蜗壳水力图和三维模型进行分析,结合蜗壳模型中的碎面特点,给出了碎面定义;然后通过构建蜗壳CAD模型的属性邻接图,并利用拓扑信息和几何信息的映射关系实现了碎面识别;最后基于几何面的优化方法,针对蜗壳模型中存在碎面较多的曲面类型,根据其几何参数进行相应的基面构造,并使用基面对存在碎面的曲面进行拟合,完成了碎面修复.基于Open CASCADE平台实现了蜗壳优化算法,结合不同类型蜗壳应用实例证明了方法的正确性和有效性.研究成果能够为离心泵CAD/CFD一体化设计提供良好的技术支撑. 展开更多
关键词 离心泵 蜗壳 CAD模型 碎面修复 碎面识别
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基于NSGA-Ⅱ和神经网络的长短叶片泵双目标参数优化
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作者 梁兴 马志巍 +2 位作者 熊文龙 周泊 曹寒问 《水电能源科学》 北大核心 2025年第3期163-167,共5页
针对长短叶片泵参数优化问题,以叶片进口角、叶片出口角和叶片数量为变量,以泵扬程、效率为优化目标,采用拉丁超立方设计40组试验组成样本集,并利用CFD方法计算泵性能。在数值模拟的基础上,基于BP神经网络泵性能预测模型构建长短叶片泵... 针对长短叶片泵参数优化问题,以叶片进口角、叶片出口角和叶片数量为变量,以泵扬程、效率为优化目标,采用拉丁超立方设计40组试验组成样本集,并利用CFD方法计算泵性能。在数值模拟的基础上,基于BP神经网络泵性能预测模型构建长短叶片泵双目标优化函数,并采用NSGA-Ⅱ算法寻优,进而开展双目标泵参数优化研究。结果表明,基于BP神经网络预测泵性能较准确,其中效率偏差最大为1.98%,扬程偏差最大为1.82%。NSGA-Ⅱ算法所获得的最优方案在额定工况下比原型泵扬程、效率分别提高了7.4%、1.8%;对比优化前后泵内流速分布、压力脉动等,最优方案有效改善了流动的均匀性,减小了水力损失和压力脉动,使得叶轮内部流动更加稳定,为长短叶片泵参数优化设计提供了理论依据。 展开更多
关键词 长短叶片泵 性能优化 神经网络 NSGA-Ⅱ算法
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泵房流道内波浪的影响因素和极值特性分析
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作者 郭永鑫 周春灌 +3 位作者 杨若冰 郭新蕾 付辉 王琪 《中国水利水电科学研究院学报(中英文)》 北大核心 2025年第1期10-18,共9页
滨海电厂泵房流道内波浪幅值的控制对保证工程建设的经济性和机组运行的稳定性具有重要意义。针对现有规范中泵房波浪控制标准无法溯源问题,本文开展了典型鼓形滤网泵房流道内波浪传播的大比尺物理模型试验,观测了流道内窄缝振荡、聚波... 滨海电厂泵房流道内波浪幅值的控制对保证工程建设的经济性和机组运行的稳定性具有重要意义。针对现有规范中泵房波浪控制标准无法溯源问题,本文开展了典型鼓形滤网泵房流道内波浪传播的大比尺物理模型试验,观测了流道内窄缝振荡、聚波和共振等特殊波浪现象,分析了不同因素对波况的影响和波高的极值特性,结果表明:流道内入射波高越大,胸墙相对淹没深度越小,透射波能越大,波动幅度也越大;吸水池波高总体随水深增大而减小,随周期(或波长)呈先增大后减小的非线性变化,当吸水池固有的波浪传播“回路”长度与入射波长相近时出现波高极大值。研究给出的流道内波浪传播规律和吸水池波浪“回路”长度计算方法可为滨海泵站工程的设计提供参考。 展开更多
关键词 泵房流道 鼓形旋转滤网 不规则波 吸水池 波浪共振
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一体化快堆堆内净化用高温浸没泵性能试验研究
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作者 李煦 耿晓 +3 位作者 姚泽文 禹春利 吴鹏 於根芳 《原子能科学技术》 北大核心 2025年第S1期111-119,共9页
在中国原子能科学研究院的一体化快堆项目中,为实现一回路钠不出堆,防止放射性钠泄漏,采用堆内冷阱净化钠中杂质,使一回路的钠在堆容器内部完成净化。为适应堆内冷阱净化需求,需重新研发堆内钠泵送装置。本文设计了适用于堆内冷阱的高... 在中国原子能科学研究院的一体化快堆项目中,为实现一回路钠不出堆,防止放射性钠泄漏,采用堆内冷阱净化钠中杂质,使一回路的钠在堆容器内部完成净化。为适应堆内冷阱净化需求,需重新研发堆内钠泵送装置。本文设计了适用于堆内冷阱的高温浸没泵,浸没泵从钠池中抽钠,通过顶部出口将钠输入堆内冷阱内筒中,为钠在冷阱内的循环净化提供稳定、可调节的动力。针对高温浸没泵样机,开展了模拟堆内钠环境下的性能试验,得到了浸没泵在不同电力条件时的流量-扬程曲线、流量-效率曲线、流量-功率曲线,以及关键部件温度等试验值,并将试验结果与仿真计算结果进行分析比较。结果表明,所研发的浸没泵样机在高温(360℃)钠介质环境、额定工况下,能够满足流量8 m^(3)/h、扬程0.2 MPa的工程需求,同时实际绕组线圈温度低于安全运行温度(450℃),满足设计要求。上述结果为进一步服务堆内净化提供了支持。 展开更多
关键词 一体化快堆 浸没泵 性能试验 仿真计算
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