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Numerical Study on Influence of Key Parameters of Aerodynamic Characteristics of Shaftless Ducted Rotor
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作者 SHEN Suiyuan ZHU Qinghua +3 位作者 WANG Kun CHEN Jianwei ZENG Jianan DING Zhengyuan 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2020年第5期682-693,共12页
Shaftless ducted rotor(SDR)is a new type of ducted rotor system designed with ducted-rotor-motor integration,which is quite different from traditional ducted rotor(DR)in aerodynamic characteristics.The sliding mesh ba... Shaftless ducted rotor(SDR)is a new type of ducted rotor system designed with ducted-rotor-motor integration,which is quite different from traditional ducted rotor(DR)in aerodynamic characteristics.The sliding mesh based on unstructured grid is used to simulate the aerodynamic characteristics of SDR and DR.Then,the effects of five key parameters,namely,the rotor disk height,the number of blades,the spread angle of the duct,the central hole radius and the ducted lip radius on the aerodynamic characteristics of the SDR are investigated.It is found that the same-sized SDR produces a larger total lift than the DR in hovering,but the lift proportion of its duct is reduced.In the forward flight,a large low-speed region is generated behind the SDR duct,and the reflux vortex in blade root above the advancing blade has the trend for inward diffusion.The rotor disk height has similar effects on SDR and DR.Increasing the number of blades can effectively increase the total lift of SDR,which also increases the lift proportion of duct.Increasing the spread angle of the duct will lead to the rotor lift coefficient decrease,reducing the central hole radius can increase the total lift,but the component lift coefficient decreases.Appropriately increasing the ducted lip radius can increase the total lift,which begins to decrease after reaching a certain value. 展开更多
关键词 shaftless ducted rotor ducted-rotor-motor integration ducted rotor sliding mesh key parameters aerodynamic characteristics
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Algorithms for automatic measurement of SIS-type hysteretic underdamped Josephson junction’s parameters by current-voltage characteristics
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作者 Aleksey G.Vostretsov Svetlana G.Filatova 《Journal of Electronic Science and Technology》 EI CSCD 2023年第4期60-74,共15页
Some electrical parameters of the SIS-type hysteretic underdamped Josephson junction(JJ)can be measured by its current-voltage characteristics(IVCs).Currents and voltages at JJ are commensurate with the intrinsic nois... Some electrical parameters of the SIS-type hysteretic underdamped Josephson junction(JJ)can be measured by its current-voltage characteristics(IVCs).Currents and voltages at JJ are commensurate with the intrinsic noise level of measuring instruments.This leads to the need for multiple measurements with subsequent statistical processing.In this paper,the digital algorithms are proposed for the automatic measurement of the JJ parameters by IVC.These algorithms make it possible to implement multiple measurements and check these JJ parameters in an automatic mode with the required accuracy.The complete sufficient statistics are used to minimize the root-mean-square error of parameter measurement.A sequence of current pulses with slow rising and falling edges is used to drive JJ,and synchronous current and voltage readings at JJ are used to realize measurement algorithms.The algorithm performance is estimated through computer simulations.The significant advantage of the proposed algorithms is the independence from current source noise and intrinsic noise of current and voltage meters,as well as the simple implementation in automatic digital measuring systems.The proposed algorithms can be used to control JJ parameters during mass production of superconducting integrated circuits,which will improve the production efficiency and product quality. 展开更多
关键词 Algorithm design and analysis Critical current Current-voltage characteristics(IVCs) Josephson junction(JJ) Measurement errors parameter estimation
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Study of Pyrolysis Characteristics and Kinetic Analysis of Shenmu Coal at a High Heating Rate Using TG-FTIR
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作者 An Xiaoxi Zhang Yanpeng +2 位作者 Shang Yanchao Tian Yuanyu Qiao Yingyun 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS CSCD 2024年第1期47-55,共9页
Coal pyrolysis is a fundamental reaction in the thermal processing and utilization of coal.Investigating the behavior and kinetics of coal pyrolysis is crucial for optimizing,designing,and developing a composite riser... Coal pyrolysis is a fundamental reaction in the thermal processing and utilization of coal.Investigating the behavior and kinetics of coal pyrolysis is crucial for optimizing,designing,and developing a composite riser for the staged pyrolysis gasification process of pulverized coal.In this study,the non-isothermal pyrolysis behavior and kinetics of coal were examined at different heating rates(30,50,100,300,500,700,and 900℃/min)using thermogravimetry(TG)coupled with Fourier-transform infrared spectroscopy.Analysis of the TG/derivative TG(TG/DTG)curves indicated that coal pyrolysis mainly occurred between 300℃ and 700℃.Higher heating rates led to more volatiles being released from the coal,and a higher temperature was required to achieve rapid pyrolysis.Kinetic analysis showed that both the model-free methods(Friedman,Flynn-Wall-Ozawa,and Kissinger-Akahira-Sunose)and the model-based method(Coats-Redfern)effectively describe the coal pyrolysis process.The change in the Ea values between the two kinetic models was consistent throughout the pyrolysis process,and the most probable mechanism was the F2 model(secondary chemical reaction).In addition,the heating rate did not change the overall reaction order of the pyrolysis process;however,a higher heating rate resulted in a decrease in the Ea value during the initial pyrolysis stage. 展开更多
关键词 coal pyrolysis TG-FTIR characteristic parameters DYNAMICS
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Influence of Structural Parameters of Turbocharger Floating Bearing on Its Dynamic Characteristic Coefficients 被引量:1
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作者 Junsheng Zhao Yuantong Gu +1 位作者 Shengxian Yi Xuelong Lu 《Journal of Beijing Institute of Technology》 EI CAS 2017年第2期183-190,共8页
The structure parameters in an actual industrial production have a great influence on the coefficient of supercharger floating bearing dynamic characteristics,but there has been little systematic study so far.In this ... The structure parameters in an actual industrial production have a great influence on the coefficient of supercharger floating bearing dynamic characteristics,but there has been little systematic study so far.In this paper,the influence of structural parameters of the turbocharger floating bearing on its dynamic characteristic coefficientsis systematically investigated based on the theories of hydrodynamic lubrication and tribology.The influence of clearance ratio on eccentricity and the influence of internal to external radius ratios,and Sommerfeld number were analyzed.A new formula of responding characteristics of the oil film force caused by the displacement or velocity disturbance was deduced near an equilibrium in the steady state.Applying the newly developed formula,the dynamic characteristic was studied for floating bearings.Regularity for change of oil film stiffness and damping was analyzed with the structural parameters of floating bearing such as radius ratios and eccentricity.It has been found that the clearance ratio increases with eccentricity when the radius ratio is unchanged.The eccentricity decreases with the internal to external radius ratio of floating rings when the clearance ratio is constant.The absolute value of total principal stiffness and total main damping decrease with the clearance ratio and radius ratio of floating rings when the total cross damping is stable.The results and findings in this paper can contribute to nonlinear dynamics designs of turbocharger rotor-bearing systems. 展开更多
关键词 TURBOCHARGER floating bearing structure parameters dynamic characteristic coefficient
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Characteristic parameters of electromagnetic signals from a human heart system
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作者 刘新元 裴留庆 +3 位作者 王寅 张素明 高红蕾 戴远东 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第4期456-464,共9页
The electromagnetic field of a human heart system is a bioelectromagnetic field. Electrocardiography (ECG) and magnetocardiography (MCG) are both carriers of electromagnetic information about the cardiac system, a... The electromagnetic field of a human heart system is a bioelectromagnetic field. Electrocardiography (ECG) and magnetocardiography (MCG) are both carriers of electromagnetic information about the cardiac system, and they are nonstationary signals. In this study, ECG and MCG data from healthy subjects are acquired; the MCG data are captured using a high-Tc radio frequency superconducting quantum interference device (HTc rf SQUIDs) and the QRS complexes in these data are analysed by the evolutionary spectrum analysis method. The results show that the quality factor Q and the central frequency fz of the QRS complex evolutionary spectrum are the characteristic parameters (CHPs) of ECG and MCG in the time-frequency domain. The confidence intervals of the mean values of the CHPs are estimated by the Student t distribution method in mathematical statistics. We believe that there are threshold ranges of the mean values of Q and fz for healthy subjects. We have postulated the following criterion: if the mean values of CHPs are in the proper ranges, the cardiac system is in a normal condition and it possesses the capability of homeostasis. In contrast, if the mean values of the CHPs do not lie in the proper ranges, the homeostasis of the cardiac system is lacking and some cardiac disease may follow. The results and procedure of MCG CHPs in the study afford a technological route for the application of HTc rf SQUIDs in cardiology. 展开更多
关键词 bioelectromagnetic field MAGNETOCARDIOGRAPHY ELECTROCARDIOGRAPHY characteristic parameters threshold ranges
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Analysis of echo signal modulation characteristic parameters on aerial and space targets
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作者 Si Chen Hai-yang Zhang +3 位作者 Chang-ming Zhao Yu Fan Hong Chen Lin Wang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第10期146-154,共9页
Based on the scattering characteristic,the comparison of RCS(radar cross-section)at different positions of a target in the same direction of incidence can be obtained first by extruding or deleting part of the entity.... Based on the scattering characteristic,the comparison of RCS(radar cross-section)at different positions of a target in the same direction of incidence can be obtained first by extruding or deleting part of the entity.A simulation method of aerial&space targets echo characteristics(A&STEC)is proposed that is universal to aerial and space targets.We utilize a fixed-wing UAV(unmanned aerial vehicle)and typical missiles in simulation.The echo signal modulation characteristic parameters are calculated theoretically by the atmospheric attenuation model,the finite element method and a MUMPS solver.The verification simulations show that this method can analyze the influence of the target shape,incident direction,detection position and detection frequency on echo waveform,intensity and energy distribution.The results show that the profile of echo waveform can invert the general shape of the target.The relationship between time and intensity can determine whether the target is moving towards or away from the detector in addition.These conclusions can provide a reference for the ballistic missile target tracking and the defense against UVA intrusion in theory. 展开更多
关键词 Echo signal modulation characteristic parameters Simple targets The fixed-wing UVA Missiles Scattering characteristics
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Multi-parameter quantitative assessment of 3D geological models for complex fault-block oil reservoirs 被引量:4
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作者 TAN Xuequn LIU Yunyan +3 位作者 ZHOU Xiaozhou LIU JiANDang ZHENG Rongchen JIA Chao 《Petroleum Exploration and Development》 2019年第1期194-204,共11页
In the field of 3 D geologic modeling, researchers often pay more attention to modeling methods and workflows, but neglect the quantitative evaluation of models. If the evaluation is narrowed to the same reservoir typ... In the field of 3 D geologic modeling, researchers often pay more attention to modeling methods and workflows, but neglect the quantitative evaluation of models. If the evaluation is narrowed to the same reservoir type, the comparability and practicality of quantitative assessment will be emerging. The evaluation system should include three parts: data verification, geological understanding and process check. Data verification mainly involves testing the accuracy of local prediction with actual data, and geological understanding is to examine whether the global estimation honors geological principles and prior insights. Process check is also indispensable to avoid occasionality. To this end, we produced a set of assessment criteria, taking complex fault-block sandstone oil reservoir as an example. To be specific, thirteen characteristic parameters were totally selected, setting weights according to their rated importance, formulating three-level evaluation standards in a centesimal system for each characteristic parameter, and obtaining the final assessment based on the cumulative score. The results indicate that such evaluation can not only access the quality of the model objectively and comprehensively, but also identify the aspects in need of improvement through the deduction items. 展开更多
关键词 RESERVOIR characterization GEOLOGICAL modeling quality evaluation characteristIC parameter RESERVES estimation faultblock oil RESERVOIR
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Relationships between leaf color changes,pigment levels,enzyme activity,photosynthetic fluorescence characteristics and chloroplast ultrastructure of Liquidambar formosana Hance 被引量:2
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作者 Guoping Yin Yong Wang +6 位作者 Yufei Xiao Jisheng Yang Renjie Wang Ying Jiang Ronglin Huang Xiongsheng Liu Yi Jiang 《Journal of Forestry Research》 SCIE CAS CSCD 2022年第5期1559-1572,共14页
Liquidambar formosana Hance is an attractive landscape tree species because its leaves gradually change from green to red,purple or orange in autumn.In this study,the red variety of L.formosana was used to establish a... Liquidambar formosana Hance is an attractive landscape tree species because its leaves gradually change from green to red,purple or orange in autumn.In this study,the red variety of L.formosana was used to establish a quantitative model of leaf color.Physiological changes in leaf color,pigment levels,enzyme activity,photosynthetic fluorescence characteristics and chloroplast ultrastructure were monitored.The relationship between leaf color and physiological structure indices was quantitatively analyzed to systematically explore the mechanisms behind leaf color.Our data showed that with a decrease in external temperatures,chloroplast numbers and sizes gradually decreased,thylakoid membranes became distorted,and chlorophyll synthesis was blocked and gradually decreased.As a result,chloroplast membranes could not be biosynthesized normally;net photosynthesis,maximum and actual photochemical efficiency,and rate of electron transfer decreased rapidly.Excess light energy caused leaf photoinhibition.With intensification of photoinhibition,leaves protected themselves using two mechanisms.In the first,anthocyanin synthesis was promoted by increasing chalcone isomerase and flavonoid glycosyltransferase activities and soluble sugar content so as to increase anthocyanin to filter light and eliminate reactive oxygen species to reduce photoinhibition.In the second,excessive light energy was consumed in the form of heat energy by increasing the non-photochemical quenching coefficient.These processes tuned the leaves red. 展开更多
关键词 Anthocyanins Leaf color parameter Enzymatic activities Chlorophyll fluorescence characteristics Liquidambar formosana
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Numerical Study on Aerodynamic Characteristics of Ducted Fan Aircraft 被引量:1
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作者 范宁军 徐嘉 杨继伟 《Journal of Beijing Institute of Technology》 EI CAS 2010年第1期19-24,共6页
Based on investigations into the flow field of ducted fan aircrafts,structural parameters of duct are quantified.A three-dimensional model is established for numerical simulation,and adaptive Cartesian grid is used to... Based on investigations into the flow field of ducted fan aircrafts,structural parameters of duct are quantified.A three-dimensional model is established for numerical simulation,and adaptive Cartesian grid is used to mesh the model in order to improve calculation speed and solution accuracy.Three-dimensional Navier-Stokes equations are brought in to analyze different duct styles.Generalization of simulation results leads to several conclusions in duct aerodynamics to help design ducted fan aircrafts. 展开更多
关键词 ducted fan aircraft aerodynamic characteristics structural parameter numerical calculation
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Effect of UV radiation aging on creepage discharge characteristics of high temperature vulcanized silicon rubber at high altitude 被引量:1
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作者 Fubao JIN Yuanxiang ZHOU +3 位作者 Bin LIANG Xidong LIANG Zhongliu ZHOU Ling ZHANG 《Plasma Science and Technology》 SCIE EI CAS CSCD 2019年第5期23-33,共11页
The physicochemical properties and creepage discharge characteristics of aged high temperature Vulca nized(HTV)silicone rubber materials were investigated by ultraviolet radiati on(UV)aging method in this study.The ex... The physicochemical properties and creepage discharge characteristics of aged high temperature Vulca nized(HTV)silicone rubber materials were investigated by ultraviolet radiati on(UV)aging method in this study.The experimental results show that as the aging time increases,the creepage discharge flashover voltage increases first and then decreases.But the aging time has little effect on the creepage discharge inception voltage.With the aging time prolonged,the discharge endurance time of HTV silicone rubber is shortened,and the creepage discharge development velocity is accelerated.In the short time of applying voltage to aging material,the magnitude of discharge in creases rapidly.According to the partial discharge characteristic parameters of creepage discharge,the whole creepage discharge process is partitioned into four stages.Compared with unaged HTV silicone rubber,the aged HTV silicone rubber has less fluctuation in performance parameters and a clear trend.The study found that UV aging not only affects the physicochemical and hydrophobic properties of the HTV silicone rubber,but also accelerates the development of creepage discharge under AC voltage. 展开更多
关键词 HIGH temperature vulcanized silicone rubber CREEPAGE discharge UV AGING INCEPTION VOLTAGE FLASHOVER VOLTAGE HIGH altitude characteristic parameters
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Effect of Spraying Parameters on the Microstructure and Mechanical Properties of Micro-Plasma Sprayed Alumina-Titania Coatings
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作者 刘顾 汪刘应 +3 位作者 陈桂明 魏皖宁 华绍春 朱二雷 《Plasma Science and Technology》 SCIE EI CAS CSCD 2011年第4期474-479,共6页
Electrical property of a micro-plasma spray system with different working-gas feed- ing schemes was tested to optimize the plasma spray process. The arc voltage with an integrated gas injection mode is higher than tha... Electrical property of a micro-plasma spray system with different working-gas feed- ing schemes was tested to optimize the plasma spray process. The arc voltage with an integrated gas injection mode is higher than that with radial injection or axial injection modes. Thus, an integrated gas injection mode with an excellent electrical characteristic was adopted to deposit alumina-titania coating. The microstructure, bonding strength and hardness of the plasma sprayed alumina-titania coating, as a function of the spraying parameters, e.g., plasma current, gas flow rate and gas pressure, were studied. It was shown that the spraying parameters affected remarkably on the microstructure of the coating. Different tendencies in bonding strength and hardness were also shown for different spraying parameters. At an arc current of 250 A, a gas flow rate of 20 L/min and a gas pressure of 0.5 MPa, the bonding strength and micro-hardness of the coatings reach 40.6 MPa and HV1406.1, respectively. 展开更多
关键词 micro-plasma spray voltage-current characteristic spraying parameters micro-structure mechanical properties
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Characteristics of sub-synchronous oscillation in grid-connected wind farm system
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作者 Yan Gong Qi Huang +1 位作者 Dong-Sheng Cai Bamisile Olusola Olorunfemi 《Journal of Electronic Science and Technology》 EI CSCD 2023年第4期91-101,共11页
With the rapid development of wind power, wind turbines are accompanied by a large quantity of power electronic converters connected to the grid, causing changes in the characteristics of the power system and leading ... With the rapid development of wind power, wind turbines are accompanied by a large quantity of power electronic converters connected to the grid, causing changes in the characteristics of the power system and leading to increasingly serious sub-synchronous oscillation (SSO) problems, which urgently require the generalized classification and characterization of the emerging oscillation problems. This paper classifies and characterizes the emerging types of SSO caused by grid-connected wind turbines to address these issues. Finally, the impact of the typical system parameters changes on the oscillation pattern is analyzed in depth to provide effective support for the subsequent suppression and prevention of SSO. 展开更多
关键词 characteristics CLASSIFICATION Sub-synchronous oscillation(SSO) Typical system parameters Wind farm
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燃气涡轮界面参数对模态频率影响规律研究
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作者 张晨 温猛 +3 位作者 吴玉萍 袁巍 梅庆 荆建平 《噪声与振动控制》 北大核心 2025年第1期21-26,共6页
燃气涡轮是驱动船舶、车辆的核心动力机械,叶-盘结构是燃气轮机进行能量转化的关键部分,探究其界面参数对模态频率的影响规律,对提高叶-盘结构安全性具有重大意义。以燃气涡轮枞树形叶-盘结构为研究对象,建立叶-盘结构有限元仿真模型,... 燃气涡轮是驱动船舶、车辆的核心动力机械,叶-盘结构是燃气轮机进行能量转化的关键部分,探究其界面参数对模态频率的影响规律,对提高叶-盘结构安全性具有重大意义。以燃气涡轮枞树形叶-盘结构为研究对象,建立叶-盘结构有限元仿真模型,仿真计算接触刚度、材料弹性模量、材料密度等不同界面参数下的模态频率,分析其影响规律,可为叶-盘结构耦合系统的模态频率预测及其改进提供必要的理论支撑与技术指导。 展开更多
关键词 振动与波 叶-盘结构 界面参数 模态特性 振动频率
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木材微观结构分析方法与特征参数
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作者 漆楚生 詹志斌 戴璐 《北京林业大学学报》 北大核心 2025年第3期7-18,共12页
木材是一种多尺度、高度各向异性的天然高分子材料,其由纤维素、半纤维素和木质素等成分构成复杂的三维网络结构。这些结构是决定木材微观与宏观物理力学性能的关键因素,木材的微观结构和主要特征参数对于理解木材性质、木材改性以及加... 木材是一种多尺度、高度各向异性的天然高分子材料,其由纤维素、半纤维素和木质素等成分构成复杂的三维网络结构。这些结构是决定木材微观与宏观物理力学性能的关键因素,木材的微观结构和主要特征参数对于理解木材性质、木材改性以及加工利用具有重要意义。本文综合分析了木材微观结构的分析方法,并归纳总结了其主要特征参数。在分析方法方面,显微观察、X射线照相及衍射分析、计算机断层扫描等技术被广泛应用,结合数据采集以及二维和三维成像方法,可以重建木材的微观结构模型,进而测量微观结构的特征参数。重建的结构模型能够更清晰地揭示木材的微观形貌特征。木材的微观特征参数主要包括细胞结构特征参数、孔隙率和纤维素微纤丝参数等。目前微观结构的观测研究多集中在微米尺度,而对于纳米尺度以及更小分子尺度结构的分析,主要依赖于理论模拟。因此,能够直接观察和表征这些更小尺度结构的分析方法有待进一步研发。 展开更多
关键词 木材 微观结构 特征参数 显微分析 MICRO-CT
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基于SPH法的套管冲蚀特性及结构优化研究
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作者 张磊 王晨锐 《石油机械》 北大核心 2025年第1期89-97,共9页
针对固井滑套压裂中冲蚀特性及结构优化等问题,基于光滑粒子动力学方法(SPH)建立球形砂粒冲击金属表面的SPH数值模型,模拟多个砂粒冲击套管材料42CrMo的微观过程,分析砂粒的撞击行为与冲蚀之间的关系;同时利用CFD模拟方法与Oka冲蚀模型... 针对固井滑套压裂中冲蚀特性及结构优化等问题,基于光滑粒子动力学方法(SPH)建立球形砂粒冲击金属表面的SPH数值模型,模拟多个砂粒冲击套管材料42CrMo的微观过程,分析砂粒的撞击行为与冲蚀之间的关系;同时利用CFD模拟方法与Oka冲蚀模型结合现场实际工况,对不同端口特性的套管内壁进行冲蚀磨损的数值计算。研究结果表明:SPH法能较好地表现出砂粒在撞击套管材料时的微观变形,有助于研究微观下材料的变形影响因素,且由SPH法模拟得到的无量纲冲蚀速率随冲击角度变化的模拟数据与Oka冲蚀公式中冲击角函数趋势相符。端口特性参数对套管内壁的冲蚀有着较大的影响,具体表现在:随着端口数量、端口面积的增加,平均冲蚀速率均有一定程度的减小,但存在着边际递减效应;在研究的4种端口形状中,胶囊形端口的平均冲蚀速率最小。研究结果可为套管端口优化设计提供参考。 展开更多
关键词 水力压裂 光滑粒子流体动力学 微观冲击模型 套管冲蚀 端口特性参数
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箱型浮式防波堤的波浪消减性能分析研究
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作者 马玉祥 田世豪 董国海 《哈尔滨工程大学学报》 北大核心 2025年第1期46-55,共10页
为了综合比选现有箱型浮式防波堤、分析其截面的改进设计方向,本文总结了目前提出的箱型浮式防波堤的截面型式,并收集对应的物理模型试验结果对其波浪消减性能进行了分析。通过引入无量纲参数β,对各类浮堤的消波特性进行讨论,得到了不... 为了综合比选现有箱型浮式防波堤、分析其截面的改进设计方向,本文总结了目前提出的箱型浮式防波堤的截面型式,并收集对应的物理模型试验结果对其波浪消减性能进行了分析。通过引入无量纲参数β,对各类浮堤的消波特性进行讨论,得到了不同截面型式浮式防波堤的消浪性能边界。结果表明:当入射波周期小于9 s时,各类浮堤的透射系数可达到0.5以下;当大于9 s时,浮堤的消浪能力大幅下降,透射系数集中在0.8~1.0。在此基础上,总结了3种改进浮式防波堤截面的途径,建议优选组合异形截面并添设消波模块。 展开更多
关键词 浮式防波堤 消波特性 物理模型试验 截面型式 消波模块 消波评价参数 截面设计 透射系数
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翼型几何参数对涵道共轴双旋翼气动特性影响研究
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作者 杨永刚 郑炜 《中国民航大学学报》 2025年第1期41-46,共6页
翼型几何参数对旋翼的气动特性影响较大。本文针对涵道共轴双旋翼模型进行数值模拟计算,研究不同几何参数对旋翼气动特性的影响规律,以提高涵道共轴双旋翼的气动效率。结果表明,翼型弯度和桨根安装角的增加均可以显著提高涵道共轴双旋... 翼型几何参数对旋翼的气动特性影响较大。本文针对涵道共轴双旋翼模型进行数值模拟计算,研究不同几何参数对旋翼气动特性的影响规律,以提高涵道共轴双旋翼的气动效率。结果表明,翼型弯度和桨根安装角的增加均可以显著提高涵道共轴双旋翼的总拉力。当拉力系数小于0.04时,小弯度翼型的气动性能参数高于大弯度翼型;随着拉力系数继续增大,在涵道唇口绕流与上旋翼翼尖涡之间以及双旋翼尾迹之间出现气动干扰和涡流轨迹紊乱;涵道出口内壁面发生局部流动分离成为小弯度翼型气动性能参数迅速下降的主要原因。大弯度翼型的气动性能参数变化平稳,拉力系数较大时的气动效率优于小弯度翼型,NACA6412的桨根安装角在20°~40°之间进行旋翼设计是更好的选择。 展开更多
关键词 旋翼几何参数 涵道共轴双旋翼 数值模拟 气动特性
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平行四边形剪切变后掠翼设计及参数优化
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作者 杨广 刘振旭 +3 位作者 肖洪 白玥 郭宏伟 刘荣强 《哈尔滨工业大学学报》 北大核心 2025年第4期105-115,共11页
为探索飞行器变形机翼不同变后掠方式下结构特性与气动特性的差异以及差异产生的物理机理,提出了两种基于平行四边形单元剪切变形拓扑的剪切式变后掠翼方案,并与传统旋转式变后掠翼进行对比研究。首先,通过机翼面积、展弦比、根梢比以... 为探索飞行器变形机翼不同变后掠方式下结构特性与气动特性的差异以及差异产生的物理机理,提出了两种基于平行四边形单元剪切变形拓扑的剪切式变后掠翼方案,并与传统旋转式变后掠翼进行对比研究。首先,通过机翼面积、展弦比、根梢比以及翼型相对厚度4个主要参数探讨了3种变形方式的结构特性。然后,开展了相应的宽速域绕流流场数值模拟,对比并分析了3种变形形式的气动特性与机理。最后,针对综合气动性能最优的对角剪切式变后掠翼,以超音速巡航状态下机翼面积、展弦比以及翼根弦长为优化目标函数对机翼四边形单元的长宽比进行参数优化,并研制可变形样机进行了风洞试验。结果表明:在宽速域范围内,对角剪切式变后掠翼能获得较优的升阻比,差异主要来源于对角剪切式变后掠翼尖截面处翼型完整且机翼相对厚度较小;当机翼四边形单元长宽比为1.75时,机翼的综合气动性能最佳。 展开更多
关键词 平行四边形 变后掠 机翼参数 气动特性 风洞试验
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太湖隧道湖相沉积软土工程特性研究
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作者 吴建 周志芳 +2 位作者 王浩 陈波 王锦国 《河海大学学报(自然科学版)》 北大核心 2025年第2期63-70,共8页
为研究太湖湖底沉积软土的工程特性和土体参数分布规律,收集了太湖隧道沿线湖底软土的大量试验数据,系统分析了软土物理力学参数的取值范围、变异性、概率分布模型以及空间分布规律,并探讨了各土层物理力学参数之间的相关性。结果表明:... 为研究太湖湖底沉积软土的工程特性和土体参数分布规律,收集了太湖隧道沿线湖底软土的大量试验数据,系统分析了软土物理力学参数的取值范围、变异性、概率分布模型以及空间分布规律,并探讨了各土层物理力学参数之间的相关性。结果表明:太湖湖底软土物理力学参数变异系数高,在空间分布上无明显函数变化规律;塑限和液限满足正态分布,密度和干密度近似正态分布,其他参数不符合正态分布;与强度参数最显著相关的物理力学参数包括天然含水率、天然孔隙比、干密度,呈指数或幂函数关系;对比压缩模量,压缩系数和天然含水率、天然孔隙比、干密度之间具有更好的相关性;各土层中黏土变形参数与强度参数间的相关系数最大,淤泥质土与粉质黏土次之,粉土最小。 展开更多
关键词 软土 物理力学参数 抗剪强度 工程特性 太湖隧道
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燃烧室突扩扩压器的几何参数敏感性研究
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作者 闫玥 索建秦 吴艳辉 《西北工业大学学报》 北大核心 2025年第1期13-23,共11页
针对燃烧室突扩扩压器的性能和流动特性开展试验和数值模拟研究,探究不同结构参数对燃烧室突扩扩压器的影响。结果表明:不同单一结构参数对性能和流场的影响规律不同,当前置扩压器扩张角从1.2°增大到18°时,扩压器的总压损失... 针对燃烧室突扩扩压器的性能和流动特性开展试验和数值模拟研究,探究不同结构参数对燃烧室突扩扩压器的影响。结果表明:不同单一结构参数对性能和流场的影响规律不同,当前置扩压器扩张角从1.2°增大到18°时,扩压器的总压损失系数在3个工况下分别降低了35.71%,34.97%和37.26%。当前置扩压器倾斜角从0°增大到30°时,扩压器的总压损失系数在3个工况下分别增大了48.57%,50.79%和49.43%。当相对突扩间隙比从1变化到3时,扩压器的总压损失先减小后增大;不同工况下前置扩压器扩张角对突扩扩压器的性能影响都较大,二阶项前置扩压器扩张角和前置扩压器倾斜角之间的耦合作用对扩压器影响较大。 展开更多
关键词 燃气轮机燃烧室 扩压器 性能 流动特性 突扩扩压器 参数敏感性
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