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Effects of Fatigue Characteristics on Static and Dynamic Performance of Eucommia Rubber Isolators
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作者 Yongsheng Peng Junfeng Yang +2 位作者 Guopei Pan Jianan Zhang Zhuo Wang 《Journal of Applied Mathematics and Physics》 2023年第7期2165-2177,共13页
This study aimed to investigate the effect of fatigue characteristics on the static and dynamic performance of Eucommia ulmoides gum isolators, and to explore the performance changes of Eucommia ulmoides gum isolators... This study aimed to investigate the effect of fatigue characteristics on the static and dynamic performance of Eucommia ulmoides gum isolators, and to explore the performance changes of Eucommia ulmoides gum isolators with different formulations. For this purpose, we used five formulations of Eucommia ulmoides gum isolators and set different fatigue test methods to study the static and dynamic performance changes of Eucommia ulmoides gum isolators with different formulations by changing the amplitude. The experimental results showed that the addition of Eucommia ulmoides gum had an impact on the performance of the isolator, and the number of fatigue cycles would lead to the hardening of the Eucommia ulmoides gum isolator and changes in its static and dynamic performance. In the range of two million vibrations, the performance change of the isolator was significant in the early stage and then tended to be flat, indicating that the impact of fatigue on the performance of the isolator would not continue to persist. It is worth noting that the study found that the addition of 30% Eucommia ulmoides gum had the least impact on the performance of the isolator under fatigue. Therefore, for long-term use of Eucommia ulmoides gum isolators, attention should be paid to their fatigue characteristics to ensure their stability and reliability. Additionally, this study provides a reference for the design and application of Eucommia ulmoides gum isolators. In summary, this study provides important reference value for a deeper understanding of the fatigue characteristics of Eucommia ulmoides gum isolators and for ensuring their stable and reliable performance. . 展开更多
关键词 Fatigue characteristics Eucommia Rubber Vibration Isolators static Performance dynamic Performance
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Theoretical Analysis and Numerical Simulation of the Static and Dynamic Characteristics of Hydrostatic Guides Based on Progressive Mengen Flow Controller 被引量:13
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作者 GAO Dianrong ZHENG Dan ZHANG Zuochao 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2010年第6期709-716,共8页
The oil film thickness of oil hydrostatic guide with constant pressure supply based on capillary restrictor is greatly affected by load, and this kind of hydrostatic guide is usually applied to the machine tools with ... The oil film thickness of oil hydrostatic guide with constant pressure supply based on capillary restrictor is greatly affected by load, and this kind of hydrostatic guide is usually applied to the machine tools with moderate load. The static and dynamic characteristics of the guide have been studied by using some theoretical, numerical and experimental approaches, and some methods and measures have been proposed to improve its performances. The hydrostatic guide based on progressive mengen(PM) flow controller is especially suitable for the heavy numerical control(NC) machine tools. However, few literatures about the research on the static and dynamic characteristics of the hydrostatic guides based on PM flow controller are reported. In this paper, the formulae are derived for analyzing the static and dynamic characteristics of hydrostatic guides with rectangle pockets and PM flow controller according to the theory of hydrostatic bearing. On the basis of the analysis of hydrostatic bearing with circular pocket, some equations are derived for solving the static pressure, volume pressure and squeezing pressure which influence the dynamic characteristics of hydrostatic guides with rectangle pocket. The function and the influencing factors of three pressures are clarified. The formulae of amplitude-frequency characteristics and dynamic stiffness of the hydrostatic guide system are derived. With the help of software MATLAB, programs are coded with C++ language to simulate numerically the static and dynamic characteristics of the hydrostatic guide based on PM flow controller. The simulation results indicate that the sensitive oil volume between the outlet of the PM flow controller and the guide pocket has the greatest influence on the characteristics of the guide, and it should be reduced as small as possible when the field working condition is met. Choosing the oil with a greater viscosity is also helpful in improving the dynamic performance of hydrostatic guides. The research work has instructing significance for analyzing and designing the guide with PM flow controller. 展开更多
关键词 PM flow controller rectangle pocket static characteristics dynamic characteristics hydrostatic guides
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Nonlinear Static and Dynamic Stiffness Characteristics of Support Hydraulic System of TBM 被引量:5
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作者 Jianfeng Tao Junbo Lei +1 位作者 Chengliang Liu Wei Yuan 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2019年第6期26-34,共9页
Full-face hard rock tunnel boring machines(TBM)are essential equipment in highway and railway tunnel engineering construction.During the tunneling process,TBM have serious vibrations,which can damage some of its key c... Full-face hard rock tunnel boring machines(TBM)are essential equipment in highway and railway tunnel engineering construction.During the tunneling process,TBM have serious vibrations,which can damage some of its key components.The support system,an important part of TBM,is one path through which vibrational energy from the cutter head is transmitted.To reduce the vibration of support systems of TBM during the excavation process,based on the structural features of the support hydraulic system,a nonlinear dynamical model of support hydraulic systems of TBM is established.The influences of the component structure parameters and operating conditions parameters on the stiffness characteristics of the support hydraulic system are analyzed.The analysis results indicate that the static stiffness of the support hydraulic system consists of an increase stage,stable stage and decrease stage.The static stiffness value increases with an increase in the clearances.The pre-compression length of the spring in the relief valve a ects the range of the stable stage of the static stiffness,and it does not a ect the static stiffness value.The dynamic stiffness of the support hydraulic system consists of a U-shape and reverse U-shape.The bottom value of the U-shape increases with the amplitude and frequency of the external force acting on the cylinder body,however,the top value of the reverse U-shape remains constant.This study instructs how to design the support hydraulic system of TBM. 展开更多
关键词 Tunnel boring machine Support hydraulic system Nonlinear model static stiffness characteristics dynamic stiffness characteristics
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Lateral static and dynamic characteristics of thin-walled box girder 被引量:1
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作者 甘亚南 周广春 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2009年第1期101-106,共6页
To analyze the static and dynamic behaviors of the thin-walled box girder in its lateral webs in consideration of shear lag effect and shear deformation, an approach based on the minimum potential principle is introdu... To analyze the static and dynamic behaviors of the thin-walled box girder in its lateral webs in consideration of shear lag effect and shear deformation, an approach based on the minimum potential principle is introduced in this paper. Both static and dynamic response equations as well as the corresponding natural boundary conditions of the box girder are deduced. Meanwhile, three generalized displacement functions: w (x) , U(x) and O(x) are employed and their differences in the calculus of variation are quantitatively investigated. The comparison of finite shell element results with analytical results of calculation examples validates the feasibility of the proposed approach. 展开更多
关键词 thin-walled box girder shear lag effect static and dynamic characteristics energy-variation principle
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Static and Dynamic Characterization of High-Speed Silicon Carbide (SiC) Power Transistors
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作者 Johnson A. Asumadu James D. Scofield 《Engineering(科研)》 2010年第9期673-682,共10页
This paper describes the operating characteristics of NPN 4H-SiC (a polytype of silicon carbide) bipolar junction transistor (BJT) and 4H-SiC Darlington Pairs. A large amount of experimental data was collected. The wa... This paper describes the operating characteristics of NPN 4H-SiC (a polytype of silicon carbide) bipolar junction transistor (BJT) and 4H-SiC Darlington Pairs. A large amount of experimental data was collected. The wafer BJTs were able to block over the rated 600 V in the common-emitter configuration and the TO-220 BJTs were able to block over the 1200 V rated voltage. In the thermal analysis, it is found out that at higher temperatures the forward and reverse (blocking) characteristics were stable at 100°C and 200°C. The transistors show positive temperature coefficients of forward voltage (Vf). In general the current gain (β) characteristics obtained (with VCE = 6 V) were approximately as expected for the BJTs. The β‘s were very low (2 to 5 for wafer BJTs, 5 to 20 for the wafer Darlington Pairs, and 5 to 30 for TO-220 BJTs). The large amount of experimental data collected confirms some of the superior properties of the Silicon carbide material when used to fabricate power semiconductor devices, namely high thermal conductivity and high temperature operability. The data presented here will establish the trends and the performance of silicon carbide devices. The silicon carbide BJT has fast switching and recovery characteristics. From the analysis, silicon carbide power devices will be smaller (about 20 times) than a similar silicon power device and with reduced power losses. Silicon carbide will also be very useful for device integration in high densities, as found in integrated chips for current handling capabilities, for applications in instrumentation and measurements. Presently, most of the research is on improving the basic silicon carbide material quality, power device optimization, and applications engineering using devices that have been developed to date. 展开更多
关键词 SILICON CARBIDE static characteristics dynamic characteristics
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Structural Design and Dynamic Characteristics of Overloaded Horizontal Servo Cylinder for Resisting Dynamic Partial Load
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作者 Linan Ma Qingxue Huang +3 位作者 Lifeng Ma Qiangjun Ma Wenze Zhang Heyong Han 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2019年第1期103-112,共10页
When an output curve force is applied to a horizontal servo cylinder with a heavy load, the piston rod bears a dynamic partial load based on the installation and load characteristics, which significantly a ects the fr... When an output curve force is applied to a horizontal servo cylinder with a heavy load, the piston rod bears a dynamic partial load based on the installation and load characteristics, which significantly a ects the frequency response and control accuracy of the servo cylinder. Based on this partial load, increased friction can lead to cylinder bore scu ng, leakage, lack of output power, or even system failure. In this paper, a novel asymmetric static-pressure support structure is proposed based on the principle of hydrostatic support. The radial component force of a dynamic partial load is balanced by cooperation between the support oil cushion of the variable hydraulic pressure support structure, oil cushion of the supportive force, and the damper. Adaptive control of the servo cylinder piston rod, guide sleeve, and piston, as well as the cylinder oil film friction between lubricated surfaces is achieved. In this paper, theoretical design and analysis of the traditional hydrostatic bearing structure and novel structure are presented. A hydraulic dynamic shear scissor is used as a research target to derive a structural dynamic model. Comparative simulations are performed using Matlab Simulink. Additionally, flow field analysis of the novel structure is performed, which verifies the rationality and feasibility of the proposed structure and system. 展开更多
关键词 dynamic partial load SERVO CYLINDER Asymmetrical static-pressure support structure BEARING characteristics
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Research on electromagnetic relay's dynamic characteristics disturbed by uniform static magnetic field 被引量:3
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作者 Guo-fu ZHAI Qi-ya WANG Wan-bin REN 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2008年第4期577-582,共6页
Electromagnetic relay is a widely used apparatus which usually works in a magnetic disturbance environment. To evaluate its electromagnetic compatibility (EMC) in a static magnetic field, dynamic characteristics of a ... Electromagnetic relay is a widely used apparatus which usually works in a magnetic disturbance environment. To evaluate its electromagnetic compatibility (EMC) in a static magnetic field, dynamic characteristics of a clapper relay in a uniform static magnetic field situation based on the finite element method (FEM) is studied. Influences of the magnetic field on dynamic parameters (delay time, pick-up time, end pressure, and final velocity) as well as a situation in which the relay cannot function normally are analyzed. Simulation reveals that the external magnetic field which weakens the relay’s air-gap field has a greater influence on the relay’s dynamic parameters than the one strengthening the field. The validity of the simulation is verified by measured results of coil current and armature displacement. 展开更多
关键词 dynamic characteristics Uniform static magnetic field Electromagnetic relay Finite element method (FEM) Electromagnetic compatibility (EMC)
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High-temperature characteristics of SiC module and 100 kW SiC AC–DC converter at a junction temperature of 180 ℃
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作者 Juanjuan Lu Zhe Zhou +3 位作者 Jianhong Hao Yi Hao Hao Zhang Ruixiang Hao 《Global Energy Interconnection》 2019年第6期522-531,共10页
High-temperature,high-power converters have gained importance in industrial applications given their ability to operate in adverse environments,such as in petroleum exploration,multi-electric aircrafts,and electric ve... High-temperature,high-power converters have gained importance in industrial applications given their ability to operate in adverse environments,such as in petroleum exploration,multi-electric aircrafts,and electric vehicles.SiC metaloxide-semiconductor field-effect transistor(MOSFET),a new,wide bandgap,high-temperature device,is the key component of these converters.In this study,the static and dynamic characteristics of the SiC MOSFET,half-bridge module,are investigated at the junction temperature of 180℃.A simplified experimental method is then proposed pertaining to the power operation of the SiC module at 180℃.This method is based on the use of a thermal resistance test platform and is proven convenient for the study of heat dissipation characteristics.The high-temperature characteristics of the module are verified based on the conducted experiments.Accordingly,a 100 kW high-temperature converter is built,and the test results show that the SiC converter can operate at a junction temperature of 180℃in a stable manner in compliance with the requirements of high-temperature,high-power applications. 展开更多
关键词 SiC MOSFET module static and dynamic characteristics Power operation experimental method Heat dissipation characteristics SiC AC-DC converter
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Theory and Method of Power System Integrated Security Region Irrelevant to Operation States:An Introduction 被引量:12
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作者 Yixin Yu Yanli Liu +1 位作者 Chao Qin Tiankai Yang 《Engineering》 SCIE EI 2020年第7期754-777,共24页
How to comprehensively consider the power flow constraints and various stability constraints in a series of power system optimization problems without affecting the calculation speed is always a problem.The computatio... How to comprehensively consider the power flow constraints and various stability constraints in a series of power system optimization problems without affecting the calculation speed is always a problem.The computational burden of probabilistic security assessment is even more unimaginable.In order to solve such problems,a security region(SR)methodology is proposed,which is a brand-new methodology developed on the basis of the classical point-wise method.Tianjin University has been studying the SR methodology since the 1980s,and has achieved a series of original breakthroughs that are described in this paper.The integrated SR introduced in this paper is mainly defined in the power injection space,and includes SRs to ensure steady-state security,transient stability,static voltage stability,and smalldisturbance stability.These SRs are uniquely determined for a given network topology(as well as location and clearing process for transient faults)and given system component parameters,and are irrelevant to operation states.This paper presents 11 facts and related remarks to introduce the basic concepts,composition,dynamics nature,and topological and geometric characteristics of SRs.It also provides a practical mathematical description of SR boundaries and fast calculation methods to determine them in a concise and systematic way.Thus,this article provides support for the systematic understanding,future research,and applications of SRs.The most critical finding on the topological and geometric characteristics of SRs is that,within the scope of engineering concern,the practical boundaries of SRs in the power injection space can be approximated by one or a few hyperplanes.Based on this finding,the calculation time for power system probabilistic security assessment(i.e.,risk analysis)and power system optimization with security constraints can be decreased by orders of magnitude. 展开更多
关键词 Security region Composition Power flow security static voltage stability small-disturbance stability Transient stability dynamics nature Topological and geometric characteristics HYPERPLANE
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Characteristics of Hoist Structure in X-Y Precision Worktable of Electron-Beam Lithography Machine
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作者 钟佩思 《High Technology Letters》 EI CAS 1998年第1期21-25,共5页
3D solid mechanical model of the hoist structure is built up using ANSYS, a famous software of finite element analysis(FEA) on Apollo workstation. With the model, the static and dynamic characteristics of the hoist st... 3D solid mechanical model of the hoist structure is built up using ANSYS, a famous software of finite element analysis(FEA) on Apollo workstation. With the model, the static and dynamic characteristics of the hoist structure are calculated, in the meantime, they are respectively tested using the laser speck method and the hammerhitting method. The caclulated data are almost in conformity with the experimental results, which states clearly that the static and dynamic characteristics of the hoist stucture can meet the requirements of the submicron positionong precision and high efficiency of the worktable in the electronbeam lithography machine(EBLM). 展开更多
关键词 HOIST STRUCTURE FEA static CHARACTERISTIC dynamic CHARACTERISTIC
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真空预载型多孔质空气静压轴承的静动态特性分析 被引量:1
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作者 闫如忠 张银宝 《Journal of Donghua University(English Edition)》 CAS 2024年第1期81-88,共8页
为进一步提高轴承刚度,将真空预加载技术与多孔质空气静压轴承相结合,使轴承在没有额外预加载导轨的情况下获得双向刚度。探讨工作条件和结构参数对真空预载型多孔质空气静压轴承性能的影响,基于计算流体力学(computational fluid dynam... 为进一步提高轴承刚度,将真空预加载技术与多孔质空气静压轴承相结合,使轴承在没有额外预加载导轨的情况下获得双向刚度。探讨工作条件和结构参数对真空预载型多孔质空气静压轴承性能的影响,基于计算流体力学(computational fluid dynamics,CFD)方法对其静动态特性进行了数值分析。深入研究了供气压力、真空度、渗透率、真空抽气口直径、扰动幅度和扰动频率等因素对轴承性能的影响。结果表明,相比于一般多孔质空气静压轴承,真空预载型多孔质空气静压轴承的刚度提高了22.34%;工作条件和结构参数对其静态和动态特性有显著影响。该研究结果对高刚度空气静压轴承的性能研究和优化设计具有一定的指导意义。 展开更多
关键词 真空预加载技术 计算流体力学(CFD) 静态特性 动态特性
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大跨度上承式钢管混凝土拱桥受力性能分析
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作者 李子特 王根会 +2 位作者 樊江 武维宏 李晓钟 《铁道工程学报》 EI CSCD 北大核心 2024年第1期32-38,共7页
研究目的:为系统地掌握西北地区大温差、峡谷风、高震区共存的复杂建设条件下上承式钢管混凝土拱桥的力学性能,以一座净跨400 m的公路同类型拱桥为例,按照现行设计规范,采用统一模量法建立三维杆系有限元模型,对概率极限状态设计方法要... 研究目的:为系统地掌握西北地区大温差、峡谷风、高震区共存的复杂建设条件下上承式钢管混凝土拱桥的力学性能,以一座净跨400 m的公路同类型拱桥为例,按照现行设计规范,采用统一模量法建立三维杆系有限元模型,对概率极限状态设计方法要求的静力性能、稳定性、动力特性、抗震性能的组合工况进行全面、系统地分析和计算,为同类型桥梁设计提供参考。研究结论:(1)温度效应大于汽车荷载效应,拱脚处横风效应突出;(2)双向偏压、偏拉组合受力为单弦杆控制设计状态,拱顶为桁式拱肋承载力的薄弱位置;(3)腹杆、横撑、平联等构件与弦杆构造匹配性较好时,承载力及疲劳性能等易满足受力需求;(4)温度、徐变预拱度比车道荷载大很多;(5)主拱圈在材料、几何、双重非线性下稳定性分别下降了5.5%、11.9%、17.1%;(6)振型相对密集、频率值较小,主振型为面外弯扭振动,具有多方向和多角度耦联性;(7)时程分析结果大于反应谱分析结果,但小于静力工况,拱桥抗震性能好;(8)上承式钢管混凝土拱桥在复杂建设条件下具有良好的受力性能。 展开更多
关键词 钢管混凝土拱桥 静力性能 稳定性 非线性 动力特性 抗震
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考虑粗糙度的复合微织构轴承动力特性分析
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作者 王丽丽 张伟 +2 位作者 段敬东 李国清 葛雪 《振动.测试与诊断》 EI CSCD 北大核心 2024年第3期544-550,621,622,共9页
为了提高滑动轴承旋转摩擦副的动力学性能和优化轴承结构,综合考虑表面粗糙度和复合微织构等因素,建立轴承转子系统的动力学特性计算模型,从理论上研究了考虑表面粗糙度时的复合微织构轴承的稳定性。针对圆形复合矩形微织构轴承,计算了... 为了提高滑动轴承旋转摩擦副的动力学性能和优化轴承结构,综合考虑表面粗糙度和复合微织构等因素,建立轴承转子系统的动力学特性计算模型,从理论上研究了考虑表面粗糙度时的复合微织构轴承的稳定性。针对圆形复合矩形微织构轴承,计算了不同粗糙度下轴承的油膜压力和临界速度,分析了不同复合微织构深度下的轴承刚度系数、阻尼系数及临界速度。研究结果表明:复合微织构轴承可以获得更大的临界速度,提高轴承的稳定性;复合微织构轴承的稳定性随织构深度的增大先增大后减小,在圆形和矩形织构无量纲深度分别为0.2和0.3附近稳定性最佳;相较于不考虑粗糙度时,采用均方根偏差为0.209μm时的考虑粗糙度的复合微织构轴承稳定性更佳,但最佳织构深度有所减小。 展开更多
关键词 复合微织构轴承 织构深度 动力学特性 临界速度 表面粗糙度
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煤矿采动影响体微生物采残煤与CO_(2)-粉煤灰协同充填关键技术
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作者 苏现波 赵伟仲 +2 位作者 王乾 周艺璇 汪露飞 《煤炭学报》 EI CAS CSCD 北大核心 2024年第1期400-414,共15页
煤矿采空区是我国实现“双碳”目标的重要突破口,煤炭开采形成的、能够富集煤层气、为后期微生物活动和矿化充填提供底物和空间的地质体定义为采动影响体。以采动影响体为研究对象,提出了采动影响体微生物采残煤与CO_(2)-粉煤灰协同矿... 煤矿采空区是我国实现“双碳”目标的重要突破口,煤炭开采形成的、能够富集煤层气、为后期微生物活动和矿化充填提供底物和空间的地质体定义为采动影响体。以采动影响体为研究对象,提出了采动影响体微生物采残煤与CO_(2)-粉煤灰协同矿化充填关键技术,并从必要性和可行性2个方面阐述了该技术在采动影响体资源二次开发、CO_(2)安全封存以及燃煤电厂粉煤灰固废高效处置等的广阔前景。其总体思路是将采动影响体作为一个厌氧发酵“工厂”,高产高效产甲烷菌群作为“劳动者”对“工厂”已有的原材料——残煤、薄煤层和分散有机质以及注入的CO_(2)进行加工,其“产品”是甲烷,进而实现微生物采残煤和CO_(2)资源化。同时,CO_(2)与碱性的粉煤灰结合,在实现了CO_(2)矿化封存的同时,也实现了采动影响体的充填。该技术涉及的关键科学问题包括采动影响体类型划分与有机质特征、采动影响体原位条件下厌氧发酵产甲烷机制、微生物-CO_(2)-粉煤灰协同矿化/固化机制以及微生物采残煤与充填关键技术示范工程建设。实验室物理模拟采动影响体原位条件实验表明其中残煤和富含有机质的泥页岩能够在微生物作用下生成生物甲烷,且添加少量的粉煤灰能够进一步强化甲烷的产出。物理模拟地下水补给的动态实验表明营养物质的补给对厌氧发酵系统的影响尤为重要,补给循环周期为14 d的厌氧发酵系统恰与产甲烷菌群繁殖的周期一致,能够保证厌氧发酵系统的持续高效运行。高钙粉煤灰-CO_(2)-矿井水协同胶结的试件经过28 d的养护后抗压强度为12.31 MPa,其矿化封存潜力约为21.99 m3 CO_(2)/t(粉煤灰),说明粉煤灰在实现采空区固化的同时能够实现CO_(2)减排。此外,基于微生物采残煤与粉煤灰充填目的对工程试验靶区进行优选,地下水滞留区是CO_(2)矿化和粉煤灰充填的最佳场所,因采掘活动自然形成的自然圈闭和人工充填形成的圈闭是较有利的工程试验靶区之一。针对这些靶区提出了微生物采残煤与CO_(2)-粉煤灰协同充填关键技术,旨在为中国碳减排和采空区生态环境治理提供一条新的技术路径。 展开更多
关键词 煤矿采动影响体 微生物采残煤 CO_(2)封存 粉煤灰胶结充填 动静态特征 有机质特征
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基于塑性元件微元化的重塑黄土黏弹塑性本构模型
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作者 骆亚生 赵程斌 +3 位作者 孙哲 范全 牛雨欣 李斌 《岩土工程学报》 EI CAS CSCD 北大核心 2024年第3期624-631,共8页
基于塑性元件微元化和无穷级数的思想,通过加、卸载条件的三轴蠕变试验建模并通过动力三轴试验验证,建立了重塑黄土的黏弹塑性本构模型,并获得了相应的参数指标。研究表明,该模型可以很好地描述重塑黄土的蠕变、静力和动力特性,且能更... 基于塑性元件微元化和无穷级数的思想,通过加、卸载条件的三轴蠕变试验建模并通过动力三轴试验验证,建立了重塑黄土的黏弹塑性本构模型,并获得了相应的参数指标。研究表明,该模型可以很好地描述重塑黄土的蠕变、静力和动力特性,且能更加合理地解释卸载条件下回弹曲线的变化特征。塑性元件微元化的处理方法弥补了以往黏弹塑性本构模型中塑性变形不易描述的缺点,相比其他的黏弹塑性本构模型,该模型应用更加简单且适用范围更广。 展开更多
关键词 重塑黄土 本构模型 塑性元件微元化 蠕变特性 静力特性 动力特性
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基于不同加工工艺的微孔节流空气静压轴承的特性研究
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作者 于贺春 寇新俊 +4 位作者 侯玮杰 刘海腾 李广平 张国庆 王文博 《机床与液压》 北大核心 2024年第7期123-128,133,共7页
随着超精密加工技术和地面微低重力仿真的发展,相关产业对空气静压轴承的性能要求越来越高。由于传统的孔式节流器其结构特点不能完全满足实际使用的需要,节流孔直径与气膜间隙同一数量级的微孔节流空气静压轴承因其良好的刚度和承载特... 随着超精密加工技术和地面微低重力仿真的发展,相关产业对空气静压轴承的性能要求越来越高。由于传统的孔式节流器其结构特点不能完全满足实际使用的需要,节流孔直径与气膜间隙同一数量级的微孔节流空气静压轴承因其良好的刚度和承载特性,越来越受到关注。但在微孔节流器的发展过程中,微孔的加工工艺却限制了其推广应用。针对目前常用的三类微孔加工工艺,进行了理论仿真研究,通过建立不同加工工艺轴承仿真模型,运用双向流固耦合仿真方法,对比分析了基于不同加工工艺的微孔节流空气静压轴承的动静态特性。研究结果表明:锥孔类轴承承载性能优于其他两类,但耗气量大且在小间隙时刚度较差;薄壁直孔类轴承承载性能稍逊,但在大间隙下轴承刚度较佳;嵌套类轴承承载性能较差,但在小间隙下轴承刚度较大且耗气量较低。 展开更多
关键词 空气静压轴承 超精密加工 微低重力仿真 微孔节流 静动态特性
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带人字槽和轴向微通槽的动静压气体轴承静态特性
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作者 李树森 马添潇 穆岩璞 《润滑与密封》 CAS CSCD 北大核心 2024年第3期35-40,共6页
设计带人字槽和轴向微通槽的动静压气体轴承,运用FLUENT对其静态特性进行仿真分析,通过改变轴向微通槽深度、偏心率、气膜厚度、供气压力等参数,研究其对轴承刚度和承载能力的影响。结果表明:其他条件不变,偏心率越大,轴承刚度越小、承... 设计带人字槽和轴向微通槽的动静压气体轴承,运用FLUENT对其静态特性进行仿真分析,通过改变轴向微通槽深度、偏心率、气膜厚度、供气压力等参数,研究其对轴承刚度和承载能力的影响。结果表明:其他条件不变,偏心率越大,轴承刚度越小、承载能力越大;人字槽可以提升气体轴承的承载能力和刚度,主轴转速越快,动压效应越强,轴承刚度和承载能力越大;随微通槽深度增加,轴承刚度先增大后保持稳定,轴承承载能力先增大后减小,因此当微通槽深度过大时,轴承刚度变化不大,但轴承承载能力会减小。 展开更多
关键词 动静压气体轴承 人字槽 轴向微通槽 静态特性
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翁结水库碾压混凝土重力坝动力特性及其抗滑稳定分析 被引量:1
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作者 严克兵 杨翔 +2 位作者 朱代富 任旭华 张继勋 《三峡大学学报(自然科学版)》 CAS 北大核心 2024年第2期35-41,共7页
重力坝是水利工程中最常用的主要水工建筑物之一,混凝土重力坝在地震作用下的动力稳定是坝工设计中的重要问题.本文以翁结碾压混凝土重力坝为对象,取位于河谷中的7、8号溢流坝段和9号非溢流坝段,建立三维有限元模型,通过计算分析了碾压... 重力坝是水利工程中最常用的主要水工建筑物之一,混凝土重力坝在地震作用下的动力稳定是坝工设计中的重要问题.本文以翁结碾压混凝土重力坝为对象,取位于河谷中的7、8号溢流坝段和9号非溢流坝段,建立三维有限元模型,通过计算分析了碾压混凝土重力坝在不同工况下的应力变形规律及抗滑稳定性.结果表明:静力荷载作用下,坝体位移符合重力坝一般规律,坝踵主拉应力范围较小;动力荷载作用下,位移等响应在坝顶达到最大,符合鞭鞘效应特征,同时坝体残余位移较小,坝体在一些部位出现瞬时拉应力超标现象,坝基塑性区未发生贯通;对7、8号坝段和9号坝段在建基面及碾压层面进行抗滑稳定验算,坝体坝基均满足稳定要求. 展开更多
关键词 碾压混凝土重力坝 有限元法 静力分析 动力特性 稳定性
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S-CO_(2)箔片气体动压轴承静动态特性分析
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作者 曲智旭 郝开元 +4 位作者 杨靖贵 朱鹏程 刘水华 李文俊 冯凯 《振动与冲击》 EI CSCD 北大核心 2024年第14期131-141,共11页
以超临界二氧化碳(supercritical carbon dioxide, S-CO_(2))为介质的动力循环系统因其结构紧凑、效率高、能源清洁等优势受到广泛的关注。针对S-CO_(2)介质径向箔片气体动压轴承建立力学计算模型,通过物性数据库获取S-CO_(2)物性数据... 以超临界二氧化碳(supercritical carbon dioxide, S-CO_(2))为介质的动力循环系统因其结构紧凑、效率高、能源清洁等优势受到广泛的关注。针对S-CO_(2)介质径向箔片气体动压轴承建立力学计算模型,通过物性数据库获取S-CO_(2)物性数据并基于反向传播(back propagation, BP)神经网络训练S-CO_(2)物性模型,与变黏度变密度的湍流气体润滑雷诺方程进行耦合。利用热平衡计算轴承气膜的平均温升,计算S-CO_(2)径向箔片气体动压轴承的静态特性并对程序进行验证。基于小扰动法计算动态刚度与阻尼系数,分析雷诺数、静态承载和轴承名义间隙对S-CO_(2)介质径向箔片轴承动态特性的影响规律。结果表明,利用神经网络训练获得的S-CO_(2)物性模型,获取到的不同温度与压力状态下的S-CO_(2)物性值可靠性相当高。适当增大局部雷诺数,减少名义间隙,提高静态载荷,可以获得更好的轴承动态性能。 展开更多
关键词 超临界二氧化碳 径向箔片轴承 神经网络 静态特性 动态特性
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海水淡化高压泵与能量回收一体机水润滑轴承-转子系统稳定性
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作者 潘文翊 李岩 +3 位作者 张德胜 敬睿 胡敬宁 叶晓琰 《排灌机械工程学报》 CSCD 北大核心 2024年第1期21-29,共9页
为保障海水淡化高压泵与能量回收一体机的安全稳定运行,对轴颈倾斜时的水润滑转子系统的稳定性展开研究.基于流体动压润滑理论,采用差分法和微扰法,建立考虑四自由度的32动力系数模型,同时求解转子动力学方程,分析不同偏心距、倾斜角、... 为保障海水淡化高压泵与能量回收一体机的安全稳定运行,对轴颈倾斜时的水润滑转子系统的稳定性展开研究.基于流体动压润滑理论,采用差分法和微扰法,建立考虑四自由度的32动力系数模型,同时求解转子动力学方程,分析不同偏心距、倾斜角、载荷下轴承的动静特性和口环间隙水膜产生的流体动压润滑效应对转子稳定性的影响.求解转子系统特征方程,并通过特征值实部对转子的稳定性进行分析.研究结果表明:倾斜运动对转子稳定性影响较大,四自由度下偏心率和倾斜角的增大使得32个动特性系数有不同程度的增大,从而减小运行过程中转子涡动产生的位移量,同时具有更高的承载能力;口环间隙水膜的动压润滑效应对转子稳定性具有不可忽视的影响,可使得转子的位移响应减小为原来的1/3,达到稳定运行的时间缩短为原来的1/3;一体机转子的极限转速为40000~45000 r/min,当转速超过极限转速时,系统出现正实部的特征值,增大口环宽度和减小口环水膜间隙厚度可增大转子的极限转速. 展开更多
关键词 水润滑转子 四自由度 动静特性 稳定性 轴心轨迹
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