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Significance of including lid thickness and particle shape factor in numerical modeling for prediction of particle trap efficiency of invert trap
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作者 Salman Beg Deo Raj Kaushal 《Water Science and Engineering》 EI CAS CSCD 2024年第2期166-176,共11页
Sediment accumulation on the bed of open sewers and drains reduces hydraulic efficiency and can cause localized flooding.Slotted invert traps installed underneath the bed of open sewers and drains can eliminate sedime... Sediment accumulation on the bed of open sewers and drains reduces hydraulic efficiency and can cause localized flooding.Slotted invert traps installed underneath the bed of open sewers and drains can eliminate sediment build-up by catching sediment load.Previous three-dimensional(3D)computational studies have examined the particle trapping performance of invert traps of different shapes and depths under varied sediment and flow conditions,considering particles as spheres.For two-dimensional and 3D numerical modeling,researchers assumed the lid geometry to be a thin line and a plane,respectively.In this 3D numerical study,the particle trapping efficiency of a slotted irregular hexagonal invert trap fitted at the flume bottom was examined by incorporating the particle shape factor of non-spherical sewage solid particles and the thicknesses of upstream and downstream lids over the trap in the discrete phase model of the ANSYS Fluent 2020 R1 software.The volume of fluid(VOF)and the realizable k-turbulence models were used to predict the velocity field.The two-dimensional particle image velocimetry(PIV)was used to measure the velocity field inside the invert trap.The results showed that the thicknesses of upstream and downstream lids affected the velocity field and turbulent kinetic energy at all flow depths.The joint impact of the particle shape factor and lid thickness on the trap efficiency was significant.When both the lid thickness and particle shape factor were considered in the numerical modeling,trap efficiencies were underestimated,with relative errors of-8.66%to-0.65%in comparison to the experimental values of Mohsin and Kaushal(2017).They were also lower than the values predicted by Mohsin and Kaushal(2017),which showed an overall overestimation with errors of-2.3%to 17.4%. 展开更多
关键词 Invert trap Lid thickness Particle image velocimetry Particle shape factor Turbulent kinetic energy Scanning electron microscope
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Optimal Shape Factor and Fictitious Radius in the MQ-RBF:Solving Ill-Posed Laplacian Problems
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作者 Chein-Shan Liu Chung-Lun Kuo Chih-Wen Chang 《Computer Modeling in Engineering & Sciences》 SCIE EI 2024年第6期3189-3208,共20页
To solve the Laplacian problems,we adopt a meshless method with the multiquadric radial basis function(MQRBF)as a basis whose center is distributed inside a circle with a fictitious radius.A maximal projection techniq... To solve the Laplacian problems,we adopt a meshless method with the multiquadric radial basis function(MQRBF)as a basis whose center is distributed inside a circle with a fictitious radius.A maximal projection technique is developed to identify the optimal shape factor and fictitious radius by minimizing a merit function.A sample function is interpolated by theMQ-RBF to provide a trial coefficient vector to compute the merit function.We can quickly determine the optimal values of the parameters within a preferred rage using the golden section search algorithm.The novel method provides the optimal values of parameters and,hence,an optimal MQ-RBF;the performance of the method is validated in numerical examples.Moreover,nonharmonic problems are transformed to the Poisson equation endowed with a homogeneous boundary condition;this can overcome the problem of these problems being ill-posed.The optimal MQ-RBF is extremely accurate.We further propose a novel optimal polynomial method to solve the nonharmonic problems,which achieves high precision up to an order of 10^(−11). 展开更多
关键词 Laplace equation nonharmonic boundary value problem Ill-posed problem maximal projection optimal shape factor and fictitious radius optimal MQ-RBF optimal polynomial method
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Study on shape factor of the fusion-solidification zone of electron beam weld 被引量:2
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作者 王亚军 关永军 +2 位作者 付鹏飞 危银涛 卢志军 《China Welding》 EI CAS 2008年第4期62-67,共6页
The concept of shape factors of the fusion-solidification zone is proposed to describe the weld cross section geometry. According to these shape factors, the electron beam weld fusion-solidification zone is divided in... The concept of shape factors of the fusion-solidification zone is proposed to describe the weld cross section geometry. According to these shape factors, the electron beam weld fusion-solidification zone is divided into four typical shapes and the classification criterion for these typical shapes is suggested. An integrated parameter n, combining the line power density of electron beam and material thermal properties is proposed to describe the relative power input, and another integrated parameter n2 combing the accelerating voltage and focusing current is proposed to reflect the power distribution in the keyhole. A series of new expressions, which can reflect the influence of focusing current, accelerating voltage, beam current, and material thermal properties, are developed to predict the fusion-solidification zone shape based on experimental results nonlinear fitting of n1 and n2. 展开更多
关键词 eleetron beam weld fusion-solidification zone shape factor mathematical model
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A Perfect Shape Factor Corresponding States Principle for Pure Non-Polar and Polar Fluids
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作者 陈新志 王连尉 侯虞钧 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2001年第4期421-426,共6页
In the two-parameter corresponding states principle(CSP), the critical compressibility factors of the fluid under study(called 'a' fluid) and the reference fluid(called 'o' fluid) must be identical. Th... In the two-parameter corresponding states principle(CSP), the critical compressibility factors of the fluid under study(called 'a' fluid) and the reference fluid(called 'o' fluid) must be identical. This is not generally observed in nature. To overcome this limitation, a perfect shape factor CSP is proposed in which the compressibility factors of 'a' and 'o' fluids are corresponded perfectly by introducing a new pressure shape factor 8. Using methane as the 'o' fluid, the shape factors of many fluids are calculated from PVT properties at saturation state and the second virial coefficients. Models are also formulated for the shape factors with the assumption of is a function of temperature and volume while 6 and 5 are temperature dependent only. The models described the shape factors satisfactorily in whole region including vapor, liquid and their co-existing phases. The perfect shape factor CSP could be applied for both polar and non-polar fluids. 展开更多
关键词 perfect shape factor corresponding states principle thermodynamic property equation of state
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The influence of joint geometric parameters on shape factor of butt joint with center through crack
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作者 张敬强 杨建国 +3 位作者 王涛 刘雪松 董志波 方洪渊 《China Welding》 EI CAS 2012年第2期52-54,共3页
In this research, the influence of such joint geometric parameters as weld width and reinforcement on shape ~actor of butt joint with center crack subjected to static loading was investigated by finite element analyse... In this research, the influence of such joint geometric parameters as weld width and reinforcement on shape ~actor of butt joint with center crack subjected to static loading was investigated by finite element analyses method. According to the analytical resuhs, a well fracture resistant joint shape of butt joint with center crack has been approved. 展开更多
关键词 joint geometric parameters butt joint with center crack shape factor
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Shape factor for regular and irregular matrix blocks in fractured porous media 被引量:2
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作者 Peyman Rostami Mohammad Sharifi Morteza Dejam 《Petroleum Science》 SCIE CAS CSCD 2020年第1期136-152,共17页
Describing matrix–fracture interaction is one of the most important factors for modeling natural fractured reservoirs.A common approach for simulation of naturally fractured reservoirs is dual-porosity modeling where... Describing matrix–fracture interaction is one of the most important factors for modeling natural fractured reservoirs.A common approach for simulation of naturally fractured reservoirs is dual-porosity modeling where the degree of communication between the low-permeability medium(matrix)and high-permeability medium(fracture)is usually determined by a transfer function.Most of the proposed matrix–fracture functions depend on the geometry of the matrix and fractures that are lumped to a factor called shape factor.Unfortunately,there is no unique solution for calculating the shape factor even for symmetric cases.Conducting fine-scale modeling is a tool for calculating the shape factor and validating the current solutions in the literature.In this study,the shape factor is calculated based on the numerical simulation of fine-grid simulations for single-phase flow using finite element method.To the best of the author’s knowledge,this is the first study to calculate the shape factors for multidimensional irregular bodies in a systematic approach.Several models were used,and shape factors were calculated for both transient and pseudo-steady-state(PSS)cases,although in some cases they were not clarified and assumptions were not clear.The boundary condition dependency of the shape factor was also investigated,and the obtained results were compared with the results of other studies.Results show that some of the most popular formulas cannot capture the exact physics of matrix–fracture interaction.The obtained results also show that both PSS and transient approaches for describing matrix–fracture transfer lead to constant shape factors that are not unique and depend on the fracture pressure(boundary condition)and how it changes with time. 展开更多
关键词 Fractured RESERVOIRS shape factor Matrix–fracture BOUNDARY conditions COMPUTATIONAL fluid dynamic(CFD)
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Benchmarking the composite performance of distinct shapes of ferrometallic gold nanoshells:photothermal cancer therapy 被引量:1
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作者 Sara I.Abdelsalam Essam T.Abdelwahab +2 位作者 I.M.Eldesoky Ramzy M.Abumandour M.M.Ahmed 《Acta Mechanica Sinica》 2025年第6期3-15,共13页
This article presents a detailed theoretical hybrid analysis of the magnetism and the thermal radiative heat transfer in the presence of heat generation affecting the behavior of the dispersed gold nanoparticles(AuNPs... This article presents a detailed theoretical hybrid analysis of the magnetism and the thermal radiative heat transfer in the presence of heat generation affecting the behavior of the dispersed gold nanoparticles(AuNPs)through the blood vessels of the human body.The rheology of gold-blood nanofluid is treated as magnetohydrodynamic(MHD)flow with ferromagnetic properties.The AuNPs take different shapes as bricks,cylinders,and platelets which are considered in changing the nanofluid flow behavior.Physiologically,the blood is circulated under the kinetics of the peristaltic action.The mixed properties of the slip flow,the gravity,the space porosity,the transverse ferromagnetic field,the thermal radiation,the nanoparticles shape factors,the peristaltic amplitude ratio,and the concentration of the AuNPs are interacted and analyzed for the gold-blood circulation in the inclined tube.The appropriate model for the thermal conductivity of the nanofluid is chosen to be the effective Hamilton-Crosser model.The undertaken nanofluid can be treated as incompressible non-Newtonian ferromagnetic fluid.The solutions of the partial differential governing equations of the MHD nanofluid flow are executed by the strategy of perturbation approach under the assumption of long wavelength and low Reynolds number.Graphs for the streamwise velocity distributions,temperature distributions,pressure gradients,pressure drops,and streamlines are presented under the influences of the pertinent properties.The practical implementation of this research finds application in treating cancer through a technique known as photothermal therapy(PTT).The results indicate the control role of the magnetism,the heat generation,the shape factors of the AuNPs,and its concentration on the enhancement of the thermal properties and the streamwise velocity of the nanofluid.The results reveal a marked enhancement in the temperature profiles of the nanofluid,prominently influenced by both the intensified heat source and the heightened volume fractions of the nanoparticles.Furthermore,the platelet shape is regarded as most advantageous for heat conduction owing to its highest effective thermal conductivity.AuNPs proved strong efficiency in delivering and targeting the drug to reach the affected area with tumors.These results offer valuable insights into evaluating the effectiveness of PTT in addressing diverse cancer conditions and regulating their progression. 展开更多
关键词 Peristaltic flow NANOFLUID AuNPs MAGNETISM shape factor Gravity Heat transfer Porous medium
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Numerical investigation of the influence of kinetics and shape factor on barium sulfate precipitation in a continuous stirred tank
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作者 Zheng WANG Zai-Sha MAO +2 位作者 Chao YANG Qinghua ZHANG Jingcai CHENG 《Frontiers of Chemical Science and Engineering》 SCIE EI CSCD 2009年第3期272-281,共10页
The effect of kinetics and shape factor on barium sulfate precipitation in a continuous stirred tank has been investigated numerically through solving the standard momentum and mass transport equations in combination ... The effect of kinetics and shape factor on barium sulfate precipitation in a continuous stirred tank has been investigated numerically through solving the standard momentum and mass transport equations in combination with the moment equations for crystal population balance.The numerical method was validated with the literature data.The simulated results include the distribution of the local supersaturation ratio in the reactor,the mean crystal size,and the coefficient of variation.The simulation results show that the value of shape factor used in the model affected greatly the mean crystal size and the moments of the crystal size distribution.The influence of the kinetic expressions on the simulation is also analyzed.It is important to investigate the relationship of the shape factor with the precipitator type and other operation conditions to obtain reliable simulation results and suitable kinetic equations of crystal nucleation and growth rates. 展开更多
关键词 stirred tank numerical simulation precipita-tion shape factor crystal kinetics
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Velocity profiles description and shape factors inclusion in a hyperbolic,one-dimensional,transient two-fluid model for stratified and slug flow simulations in pipes
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作者 Arianna Bonzanini Davide Picchi +1 位作者 Marco Ferrari Pietro Poesio 《Petroleum》 CSCD 2019年第2期191-198,共8页
In a previous work it has been shown that a one-dimensional,hyperbolic,transient five equations twofluid model is able to numerically describe stratified,wavy,and slug flow in horizontal and nearhorizontal pipes.Slug ... In a previous work it has been shown that a one-dimensional,hyperbolic,transient five equations twofluid model is able to numerically describe stratified,wavy,and slug flow in horizontal and nearhorizontal pipes.Slug statistical characteristics can be numerically predicted with results in good agreement with experimental data and well-known empirical relations.In this model some approximated and simplified assumptions are adopted to describe shear stresses at wall and at phase interface.In this paper,we focus on the possibility to account for the cross sectional flow by inserting shape factors into the momentum balance equations of the aforementioned model.Velocity profiles are obtained by a pre-integrated model and they are computed at each time step and at each computational cell.Once that the velocity profiles are known,the obtained shape factors are inserted in the numerical resolution.In this way it is possible to recover part of the information lost due to the one-dimensional flow description.Velocity profiles computed in stratified conditions are compared against experimental profiles measured by PIV technique;a method to compute the velocity profile during slug initiation and growth has been developed and the computed velocity distribution in the liquid phase was compared against the one-seventh power law. 展开更多
关键词 Multi-phase pipeline transport Oil&gas Hyperbolic two-fluid model Velocity profiles shape factors
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Assessment of Dependent Performance Shaping Factors in SPAR-H Based on Pearson Correlation Coefficient 被引量:2
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作者 Xiaoyan Su Shuwen Shang +2 位作者 Zhihui Xu Hong Qian Xiaolei Pan 《Computer Modeling in Engineering & Sciences》 SCIE EI 2024年第2期1813-1826,共14页
With the improvement of equipment reliability,human factors have become the most uncertain part in the system.The standardized Plant Analysis of Risk-Human Reliability Analysis(SPAR-H)method is a reliable method in th... With the improvement of equipment reliability,human factors have become the most uncertain part in the system.The standardized Plant Analysis of Risk-Human Reliability Analysis(SPAR-H)method is a reliable method in the field of human reliability analysis(HRA)to evaluate human reliability and assess risk in large complex systems.However,the classical SPAR-H method does not consider the dependencies among performance shaping factors(PSFs),whichmay cause overestimation or underestimation of the risk of the actual situation.To address this issue,this paper proposes a new method to deal with the dependencies among PSFs in SPAR-H based on the Pearson correlation coefficient.First,the dependence between every two PSFs is measured by the Pearson correlation coefficient.Second,the weights of the PSFs are obtained by considering the total dependence degree.Finally,PSFs’multipliers are modified based on the weights of corresponding PSFs,and then used in the calculating of human error probability(HEP).A case study is used to illustrate the procedure and effectiveness of the proposed method. 展开更多
关键词 Reliability evaluation human reliability analysis SPAR-H performance shaping factors DEPENDENCE pearson correlation analysis
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Factors Affecting Transformation Temperatures in Fe-Mn-Si-Cr-Ni Shape Memory Alloy 被引量:1
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作者 Yuhua WEN+, ding LI and Mingjing TU (Department of Materials Shaping and Controlling Engineering, Sichuan University, Chengdu 610065, China) 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2000年第5期537-539,共3页
The effects of prestrain and annealing temperature on phase transformation temperatures in Fel4Mn5Si8Cr4Ni shape memory alloy have been studied. The results showed that when the annealing temperature was 673 K, both t... The effects of prestrain and annealing temperature on phase transformation temperatures in Fel4Mn5Si8Cr4Ni shape memory alloy have been studied. The results showed that when the annealing temperature was 673 K, both the At and the Ms temperatures increased appreciably as the prestrain increased, the As temperature increased slightly with increasing prestrain; the resistivity difference at 303 K between the heating and cooling curve also increased with increasing prestrain, which agreed with the recovery strain. The shape memory effect in Fe-Mn-Si-Cr-Ni shape memory alloy is caused by the stress-induced γ→ε martensite transformation and its reverse transformation. When the prestrain was 10%, the Ms temperature decreased remarkably as the annealing temperature increased. 展开更多
关键词 factors Affecting Transformation Temperatures in Fe-Mn-Si-Cr-Ni shape Memory Alloy FE MN CR NI SI
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Modified Sadowski formula-based model for the slope shape amplification effect under multistage slope blasting vibration
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作者 Xiaogang Wu Mingyang Wang +2 位作者 Hao Lu Yongjun Zhang Wen Nie 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2024年第5期631-641,共11页
Blasting operations,which are crucial to open-pit mine production due to their simplicity and efficiency,require precise control through accurate vibration velocity calculations.The conventional Sadowski formula mainl... Blasting operations,which are crucial to open-pit mine production due to their simplicity and efficiency,require precise control through accurate vibration velocity calculations.The conventional Sadowski formula mainly focuses on blast center distance but neglects the amplification effect of blasting vibration waves by terraced terrain,from which the calculated blasting vibration velocities are smaller than the actual values,affecting the safety of the project.To address this issue,our model introduces the influences of slope and time into Sadowski formula to measure safety through blast vibration displacement.In the northern section of the open-pit quartz mine in Jinchang City,Gansu Province,China,the data of a continuous blasting slope project are referred to.Our findings reveal a noticeable vibration amplification effect during blasting when a multi-stage slope platform undergoes a sudden cross-sectional change near the upper overhanging surface.The amplification vibration coefficient increases with height,while vibration waves within rocks decrease from bottom to top.Conversely,platforms without distinct crosssectional changes exhibit no pronounced amplification during blasting.In addition,the vibration intensity decreases with distance as the rock height difference change propagates.The results obtained by the proposed blast vibration displacement equation incorporating slope shape influence closely agree with real-world scenarios.According to Pearson correlation coefficient(PPMCC)analysis,the average accuracy rate of our model is 88.84%,which exceeds the conventional Sadowski formula(46.92%). 展开更多
关键词 Multistage slope Slope shape influence factor Continuous blasting Sadowski formula Amplification effect
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基于k-shape_STL的用户短期用电负荷预测模型 被引量:1
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作者 刘红菊 班浩然 +1 位作者 刘红艳 梁宏涛 《青岛科技大学学报(自然科学版)》 CAS 2024年第3期132-140,共9页
为挖掘复杂环境因素对电力负荷预测效果的影响,提高电力负荷预测精确度,提出了一种基于k-shape时间序列聚类与STL季节趋势分解算法相结合的负荷曲线聚类预测模型(k-shape-seasonal and trend decomposition using loess-gradient boosti... 为挖掘复杂环境因素对电力负荷预测效果的影响,提高电力负荷预测精确度,提出了一种基于k-shape时间序列聚类与STL季节趋势分解算法相结合的负荷曲线聚类预测模型(k-shape-seasonal and trend decomposition using loess-gradient boosting decision tree,k-shape-STL-GBDT)。首先分析用户用电时序特征,利用k-shape时间序列聚类算法根据负荷曲线划分用户聚类,其次,使用STL算法将不同簇的负荷数据划分为季节项、趋势项与随机项。然后,结合温度、湿度等影响因素搭建预测模型,以麻省大学smart*可再生能源项目的公开数据集为例进行分析,并与多种主流聚类分解预测模型进行对比。结果表明新提出的模型框架MAPE减少了4%以上,针对短期负荷预测表现出了较好的性能与预测精度。 展开更多
关键词 负荷预测 k-shape STL 趋势项 气象因素
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STUDY OF THE STRESS INTENSITY FACTOR OF PREFORMED V SHAPE FRACTURE TIP
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作者 王成端 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 1992年第5期487-496,共10页
In order to make the fracture cross-section of rock smooth in controlled cutting-blast, generally, two V-shape-notches on the inner wall of a shot hole are notched in symmetry along the design direction. A V-shape not... In order to make the fracture cross-section of rock smooth in controlled cutting-blast, generally, two V-shape-notches on the inner wall of a shot hole are notched in symmetry along the design direction. A V-shape notch approximately be considered as V-shape-fracture under certain condition. This paper gave the complex stress function of preformed V-shape-fracture under a blasting load. The stress field and displacement field at the tip of a preformed V-shape-fracture were derived with Westergaard's method, hence its stressintensity factor was obtained. To verify the derived results, blasting tests were made with concrete samples of 400mm×400mm×300mm, and all having, in the center, a drilled hole of 25mm in diameter and 200mm in height. The test result showed that the formulas derived are correct and effective. 展开更多
关键词 V shape fracture complex stress function stress intensity factor
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沿海地区站台柱Y型雨棚风压分布特征研究 被引量:1
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作者 彭仪普 于风晓 +1 位作者 谢稳江 陈立 《工业建筑》 2025年第3期196-203,共8页
站台柱雨棚是一种大跨度的空间结构,对风荷载的作用非常敏感,由于高铁站的功能比较特殊,沿海地区站台柱Y型雨棚与风荷载之间的相互作用研究也相对较少。为了研究沿海地区站台柱Y型雨棚表面的风压分布特征以及风载体型系数,通过计算流体... 站台柱雨棚是一种大跨度的空间结构,对风荷载的作用非常敏感,由于高铁站的功能比较特殊,沿海地区站台柱Y型雨棚与风荷载之间的相互作用研究也相对较少。为了研究沿海地区站台柱Y型雨棚表面的风压分布特征以及风载体型系数,通过计算流体动力学(Computational Fluid Dynamics,CFD)方法建立起雨棚的数值模拟模型进行分析。结果表明:运用CFD方法建立的数值模拟模型与已有文献中风洞实验结果吻合,可信度较高;在0°~90°方向角的作用下,雨棚上表面风压会随风向角的增大而增大,下表面风压变化范围不大,同时确定了最不利风向角为0°,在此风向角下雨棚会产生扭转破坏的趋势,影响雨棚的稳定性;在0°最不利风向角的条件下求得沿海地区Y型雨棚表面的风载体型系数,相邻雨棚对所研究的雨棚的风荷载几乎无影响。 展开更多
关键词 站台雨棚 数值模拟 计算流体动力学(CFD) 风压分布 风向角 风载体型系数
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Digital Image Correlation Using Specific Shape Function for Stress Intensity Factor Measurement
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作者 Chunhua Ren Jia Yang +1 位作者 Xiaochuan Zhang Hongwei Ji 《Transactions of Tianjin University》 EI CAS 2017年第2期157-162,共6页
The stress intensity factor (SIF) is a critical parameter associated with the fracture behaviour of materials. In this paper, we select the displacement function around a crack tip as the shape function of the digital... The stress intensity factor (SIF) is a critical parameter associated with the fracture behaviour of materials. In this paper, we select the displacement function around a crack tip as the shape function of the digital image correlation (DIC), which makes it possible to directly calculate the SIF by the correlation scheme. Moreover, we use a non-rectangular subset, which can reduce the influence of plastic deformation and crack width on the DIC measurement accuracy. We measured the SIF of a mode I crack in a super-hard aluminium alloy specimen to verify the performance of the proposed method. Our experimental results show that a DIC with a specific shape function can be used to accurately and efficiently calculate the SIF. Furthermore, we also present a practical application of our proposed method for determining the SIF, crack propagation angle and crack tip displacement. © 2017, Tianjin University and Springer-Verlag Berlin Heidelberg. 展开更多
关键词 Crack propagation Cracks Fracture mechanics Image analysis Strain measurement Stress intensity factors
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层间粘结废旧轮胎隔震垫水平力学性能设计值取值
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作者 张广泰 陈锐 +2 位作者 张军福 赵建新 盛瑞 《同济大学学报(自然科学版)》 北大核心 2025年第10期1499-1507,共9页
在已提出的废旧轮胎隔震垫基础上,在设计压应力P为3、4、5 MPa下开展了水平力学性能试验和有限元分析,对其水平等效刚度、屈服后刚度和等效阻尼比随设计压应力和第二形状系数变化的规律进行分析,并确定了三者的具体取值方法。水平力学... 在已提出的废旧轮胎隔震垫基础上,在设计压应力P为3、4、5 MPa下开展了水平力学性能试验和有限元分析,对其水平等效刚度、屈服后刚度和等效阻尼比随设计压应力和第二形状系数变化的规律进行分析,并确定了三者的具体取值方法。水平力学性能试验结果表明:层间粘接废旧轮胎隔震垫的水平等效刚度和屈服后刚度随设计压应力和第二形状系数的增大而增大,二者存在下限值分别可确定为0.5和0.37 kN·mm^(-1)。同时,二者的取值呈现扇面分布的规律。等效阻尼比的变化与设计压应力和第二形状系数无明显关系,但其取值可确定为0.09~0.15之间。根据层间粘接废旧轮胎隔震垫的水平等效刚度和屈服后刚度的取值规律,通过ABAQUS建立层间粘接废旧轮胎隔震垫的有限元模型,建立了层间粘接废旧轮胎隔震垫水平等效刚度和屈服后刚度取值扇面的计算公式。 展开更多
关键词 层间粘接废旧轮胎隔震垫(LBSTP) 水平等效刚度 屈服后刚度 等效阻尼比 设计压应力 第二形状系数
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V形沟谷路堤空间效应与安全系数计算方法
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作者 阙云 张吉松 +1 位作者 朱啸辉 王之航 《公路交通科技》 北大核心 2025年第4期57-68,共12页
【目标】针对V形沟谷地形对路堤稳定性的影响机制展开系统分析。【方法】以侧岸角度、沟底宽度、路堤填高、后缘坡度及前缘边坡系数为关键控制参数,采用强度折减理论与灰色关联分析法,从空间效应产生机理、影响因素敏感性、三维安全系... 【目标】针对V形沟谷地形对路堤稳定性的影响机制展开系统分析。【方法】以侧岸角度、沟底宽度、路堤填高、后缘坡度及前缘边坡系数为关键控制参数,采用强度折减理论与灰色关联分析法,从空间效应产生机理、影响因素敏感性、三维安全系数计算及空间效应产生条件4个维度构建研究体系。【结果】由于沟谷侧岸对路堤变形的约束,会产生不均匀位移,导致路堤内部的应力传递发生偏转,将部分土压力传递给侧岸,路堤内部会出现土拱现象,进而引发空间效应的产生;基于灰色关联度分析,揭示各因素的综合关联度由大到小排序为侧岸角度(0.936),沟底宽度(0.782),路堤填高(0.741),前缘边坡系数(0.661),而填土材料参数及本构模型对空间效应无显著影响。【结论】通过建立考虑真实地形特征的数值模型验证,本研究所提出的三维稳定系数计算方法相对误差小于5%,并可以大幅减少三维安全系数求解的工作量,可为复杂地形条件下路堤稳定性评估提供一定的理论依据。 展开更多
关键词 道路工程 路堤空间效应 强度折减法 V形沟谷 安全系数
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机织物裤形试样法撕破强力的影响因素及其不确定度评定
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作者 周成凤 高倩 王娜 《纺织报告》 2025年第9期1-4,共4页
文章首先研究了机织物裤形试样法撕破强力测试的影响因素,其中,织物密度、织物组织结构对织物撕破强力的影响较大,拉伸速度、隔距长度和夹持张力的影响较小;其次进行了裤形试样法测试织物撕破强力的不确定度分析,通过建立数学模型得出使... 文章首先研究了机织物裤形试样法撕破强力测试的影响因素,其中,织物密度、织物组织结构对织物撕破强力的影响较大,拉伸速度、隔距长度和夹持张力的影响较小;其次进行了裤形试样法测试织物撕破强力的不确定度分析,通过建立数学模型得出使用INSTRON 5500R型等速伸长试验仪测试织物撕破性能时所产生的合成不确定度为0.77 N。 展开更多
关键词 撕破强力 裤形试样法 影响因素 不确定度
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考虑尺寸和形状效应的粗粒土单颗粒破碎试验研究
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作者 梁玉珍 顾晓强 +1 位作者 周奇辉 邓刚 《岩土工程学报》 北大核心 2025年第S1期51-55,共5页
颗粒大小和形状显著影响颗粒的破碎行为。本研究对白鹤滩水电站高填方工程的砾石填料颗粒进行了颗粒扫描、形状分析和单颗粒压缩试验。结果表明:单颗粒破碎强度具有明显的尺寸效应,特征应力随着粒径的增大而减小,并评估了Weibull理论在... 颗粒大小和形状显著影响颗粒的破碎行为。本研究对白鹤滩水电站高填方工程的砾石填料颗粒进行了颗粒扫描、形状分析和单颗粒压缩试验。结果表明:单颗粒破碎强度具有明显的尺寸效应,特征应力随着粒径的增大而减小,并评估了Weibull理论在描述颗粒破碎强度尺寸效应方面的适用性。颗粒形状对破碎力有较为显著的影响,在计算颗粒破碎强度时考虑颗粒形状的影响,应用人工神经网络算法计算形状因子,提出了一个考虑颗粒尺寸和形状效应的破碎强度概率分布模型。 展开更多
关键词 颗粒尺寸 颗粒形状 破碎强度 WEIBULL分布 形状因子
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