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Discussion on Pipe Model through Hydraulic Architecture of Pinus tabulaeformis Seedling 被引量:1
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作者 ZHAIHongbo LIJiyue NIELishui 《Chinese Forestry Science and Technology》 2004年第1期53-58,共6页
In the paper, the hydraulic architecture parameters of Pinus tabulaeformis seedlings (4 years old)were measured by improved flushing method under normal water condition in the green house and the basictheory of hydrau... In the paper, the hydraulic architecture parameters of Pinus tabulaeformis seedlings (4 years old)were measured by improved flushing method under normal water condition in the green house and the basictheory of hydraulic architecture is used to discuss the rationality of the pipe model. The results of theexperiment and simulation show that the differences of hydraulic conductivity, specific conductivity and leafspecific conductivity is great in different stems and branches of Pinus tabulaeformis seedlings. The hydraulicconductivity of non-constriction area is higher than that of constriction area. The devotion of functionalxylem of stem to unit leaf growth is not a constant, namely, the Huber value is diverse. Even though the pipemodel has been accepted in some areas, its precondition is not perfect, and it is helpless in correctlyunderstanding the essence of water transport in seedlings from the prospective of water physiology. 展开更多
关键词 pipe model Pinus tabulaeformis hydraulic architecture SEEDLING
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AXIAL HEAT CONDUCTION MODEL TO PREDICT MAXIMUM HEAT REMOVE OF MINIATURE HEAT PIPE BASED ON GREY MODEL THEORY 被引量:3
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作者 Tsai Mengchang Chang Shinhsing Kang Shungwen 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2005年第4期477-481,共5页
Computer chip is always accompanied by the increase of heat dissipation and miniaturization. The miniature heat pipes are widely used in notebook computer to resolve the heat dissipation problems. Maximum heat removed... Computer chip is always accompanied by the increase of heat dissipation and miniaturization. The miniature heat pipes are widely used in notebook computer to resolve the heat dissipation problems. Maximum heat removed model of miniature heat pipes building by grey model is presented. In order to know the foundation for modeling, the smooth grade of error examination is inquired and the accuracy of grey relational grade is verified. The model can be used to select a suitable heat pipes to solve electric heat problems in the future. Final results show that the grey model only needs four experiment data and its error value is less than 10%, further, it is better than computational fluid dynamics (CFD) model. 展开更多
关键词 Maximum heat removed model Miniature heat pipe Grey model theory Computational fluid dynamics (CFD) Grey relational grade
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A p-version embedded model for simulation of concrete temperature fields with cooling pipes 被引量:7
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作者 Sheng Qiang Zhi-qiang Xie Rui Zhong 《Water Science and Engineering》 EI CAS CSCD 2015年第3期248-256,共9页
Pipe cooling is an effective method of mass concrete temperature control, but its accurate and convenient numerical simulation is still a cumbersome problem. An improved embedded model, considering the water temperatu... Pipe cooling is an effective method of mass concrete temperature control, but its accurate and convenient numerical simulation is still a cumbersome problem. An improved embedded model, considering the water temperature variation along the pipe, was proposed for simulating the temperature field of early-age concrete structures containing cooling pipes. The improved model was verified with an engineering example. Then, the p-version self-adaption algorithm for the improved embedded model was deduced, and the initial values and boundary conditions were examined. Comparison of some numerical samples shows that the proposed model can provide satisfying precision and a higher efficiency. The analysis efficiency can be doubled at the same precision, even for a large-scale element. The p-version algorithm can fit grids of different sizes for the temperature field simulation. The convenience of the proposed algorithm lies in the possibility of locating more pipe segments in one element without the need of so regular a shape as in the explicit model. 展开更多
关键词 Concrete temperature field Cooling pipe Embedded model P-VERSION Numerical simulation
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IMPROVEMENT OF FLUID PIPE LUMPED PARAMETER MODEL 被引量:4
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作者 KongXiaowu WeiJianhua QiuMinxiu WuGenmao 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2004年第1期114-116,共3页
The traditional lumped parameter model of fluid pipe is introduced and itsdrawbacks are pointed out. Furthermore, two suggestions are put forward to remove these drawbacks.Firstly, the structure of equivalent circuit ... The traditional lumped parameter model of fluid pipe is introduced and itsdrawbacks are pointed out. Furthermore, two suggestions are put forward to remove these drawbacks.Firstly, the structure of equivalent circuit is modified, and then the evaluation of equivalentfluid resistance is change to take the frequency-dependent function into account. Both simulationand experiment prove that this model is precise to characterize the dynamic behaviors of fluid inpipe. 展开更多
关键词 Fluid pipe Center-parameter model
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Simulation and model design of pipe-shell reactor for the direct synthesis of dimethyl ether from syngas 被引量:3
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作者 Yanfang Hu Zhaoguang Nie Dingye Fang 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2008年第2期195-200,共6页
The simulation was made based on the model of pipe-shell reactor that was established by the model of global kinetics of synthesis of dimethyl ether from syngas over a bifunctional catalyst. The results of simulation ... The simulation was made based on the model of pipe-shell reactor that was established by the model of global kinetics of synthesis of dimethyl ether from syngas over a bifunctional catalyst. The results of simulation showed that the selectivity for dimethyl ether (DME) and the conversion of CO were higher but the hot spot was kept below the temperature limit of the pipe-shell reactor. The suitable diameter of the pipe was φ38×2 mm, and the length of the pipe was 5.8 m. The optimal process conditions of the reactor were that the pressure was 5 MPa, the temperature of the cooling water was 240 ℃, and the temperature of the raw gas at inlet of the reactor was 220 ℃. The production of this reactor was 102800 t/y (ton per year) under these conditions. 展开更多
关键词 SIMULATION model dimethyl ether pipe-shell reactor SYNGAS
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Virtual Prototype Modeling and Simulation of Pipe Wagon Articulating System 被引量:3
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作者 Ying Li Samuel Frimpong Wenyuan Liu 《Modern Mechanical Engineering》 2011年第2期38-46,共9页
Virtual prototype of pipe wagon articulating (PWA) system has been developed and simulated based on the kinematics and dynamics of machinery and Automatic Dynamic Analysis of Mechanical Systems (ADAMS) software. It ha... Virtual prototype of pipe wagon articulating (PWA) system has been developed and simulated based on the kinematics and dynamics of machinery and Automatic Dynamic Analysis of Mechanical Systems (ADAMS) software. It has been integrated with real-time three dimensional (3-D) system simulations for detailed and responsive interaction with dynamic virtual environments. By using this virtual model, the conceptual design examination and performance analysis of the PWA system have been realized dynamically in virtual laboratory. System dynamic force, displacement and tension of pipe have been measured through verifying this 3- D virtual prototype. By comparing the static tension and dynamic tension of pipe, the difference between the two kind tensions has been found. The simulated dynamic tension is much greater than the static tension obtained from the static theory. The results attained in this work suggest that the conceptual designed PWA system can meet the requirements of the operation. 展开更多
关键词 pipe WAGON Articulating DYNAMIC modelING VIRTUAL PROTOTYPE DYNAMIC Simulation
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Centrifuge modeling of PGD response of buried pipe 被引量:8
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作者 Michael O'Rourke Vikram Gadicherla Tarek Abdoun 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2005年第1期69-73,共5页
A new centrifuge based method for determining the response of continuous buried pipe to PGD is presented. The physical characteristics of the RPI's 100 g-ton geotechnical centrifuge and the current lifeline experi... A new centrifuge based method for determining the response of continuous buried pipe to PGD is presented. The physical characteristics of the RPI's 100 g-ton geotechnical centrifuge and the current lifeline experiment split-box are described: The split-box contains the model pipeline and surrounding soil and is manufactured such that half can be offset, in flight, simulating PGD. In addition, governing similitude relations which allow one to determine the physical characteristics, (diameter, wall thickness and material modulus of elasticity) of the model pipeline are presented. Finally, recorded strains induced in two buried pipes with prototype diameters of 0.63 m and 0.95 m (24 and 36 inch) subject to 0.6 and 2.0 meters (2 and 6 feet) of full scale fault offsets and presented and compared to corresponding FE results. 展开更多
关键词 EARTHQUAKES buried pipe permanent ground deformation centrifuge models fault crossings lifeline earthquake engineering
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Mathematical Model of Microstructure Evolution of X60 Line Pipe Steel During CSP Hot Rolling 被引量:4
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作者 Li Quan LIU Zheng-dong +2 位作者 TANG Guang-bo TIAN Zhi-ling Siciliano Fulio 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2010年第1期70-78,共9页
An integrated process modelling system for simulating the microstructure evolution of Nb-microalloyed HSLA steel produced in CSP hot rolling process has been developed on the basis of the microstructure simulation and... An integrated process modelling system for simulating the microstructure evolution of Nb-microalloyed HSLA steel produced in CSP hot rolling process has been developed on the basis of the microstructure simulation and mechanical properties prediction technology. 3-D thermomechanical coupled finite element models for simulating hot strip rolling have been developed and the distribution of equivalent plastic strain through the thickness direction of the rolled material by CSP rolling was obtained. Thus the distribution of temperature, strain and strain rate through the thickness of the steel stocks, as well as the microstructure evolution during hot rolling of X60 line pipe steel strip has been investigated by using the developed integrated process modelling system. In addition, the determination and optimization of controllable process parameters during CSP hot strip rolling for the Nb-microalloyed X60 line pipe steel have been implemented, and control strategies such as adopting larger pass reduction in the first stand, arranging appropriate pass interval times and proper rolling speed, to reduce or eliminate mixed grain microstructure of Nb microalloyed strip in CSP processing have been proposed. 展开更多
关键词 CSP line pipe steel niobium microalloying microstructure evolution mathematical modelling
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Mechanism of local scour around submarine pipelines based on numerical simulation of turbulence model 被引量:5
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作者 LUE Lin LI Yucheng CHEN Bing 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2006年第2期142-152,共11页
The mechanism of local scour around submarine pipelines is studied numerically based on a renormalized group (RNG) turbulence model. To validate the numerical model, the equilibrium profiles of local scour for two c... The mechanism of local scour around submarine pipelines is studied numerically based on a renormalized group (RNG) turbulence model. To validate the numerical model, the equilibrium profiles of local scour for two cases are simulated and compared with the experimental data. It shows that the RNG turbulence model can give an appropriate prediction for the configuration of equilibrium scour hole, and it is applicable to this situation. The local scour mechanism around submarine pipelines including the flow structure, shear stress distribution and pressure field is then analyzed and compared with experiments. For further comparison and validation, especially for the flow structure, a numerical calculation employing the large eddy simulation (LES) is also conducted. The numerical results of RNG demonstrate that the critical factor governing the equilibrium profile is the seabed shear stress distribution in the case of bed load sediment transport, and the two-equation RNG turbulence model coupled with the law of wall is capable of giving a satisfying estimation for the bed shear stress. Moreover, the piping phenomena due to the great difference of pressure between the upstream and downstream parts of pipelines and the vortex structure around submarine pipelines are also simulated successfully, which are believed to be the important factor that lead to the onset of local scour. 展开更多
关键词 submarine pipeline mechanism of local scour renormalized group turbulence model large eddy simulation PIPING
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Simulation of Average Turbulent Pipe Flow: A Three-Equation Model
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作者 Khalid Alammar 《Open Journal of Fluid Dynamics》 2014年第1期69-73,共5页
The aim of this study is to evaluate a three-equation turbulence model applied to pipe flow. Uncertainty is approximated by comparing with published direct numerical simulation results for fully-developed average pipe... The aim of this study is to evaluate a three-equation turbulence model applied to pipe flow. Uncertainty is approximated by comparing with published direct numerical simulation results for fully-developed average pipe flow. The model is based on the Reynolds averaged Navier-Stokes equations. Boussinesq hypothesis is invoked for determining the Reynolds stresses. Three local length scales are solved, based on which the eddy viscosity is calculated. There are two parameters in the model;one accounts for surface roughness and the other is possibly attributed to the fluid. Error in the mean axial velocity and Reynolds stress is found to be negligible. 展开更多
关键词 pipe Flow REYNOLDS STRESS TURBULENCE modeling
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Analyses and Modeling of Laminar Flow in Pipes Using Numerical Approach
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作者 O. Saheed Ismail George T. Adewoye 《Journal of Software Engineering and Applications》 2012年第9期653-658,共6页
This paper investigate some important works done on numerical analysis and modeling of laminar flow in pipes. This review is focused on some methods of approach and the analytical tools used in analyzing of the import... This paper investigate some important works done on numerical analysis and modeling of laminar flow in pipes. This review is focused on some methods of approach and the analytical tools used in analyzing of the important parameters to be considered in laminar flow;such as frictional losses, heat transfer etc. in laminar flow in pipes of different shapes, and the importance of laminar flow in its areas of applications. Prominent researchers have approached this from different perspectives. Some carried out analysis on the pressure drop as a function of permeability, some worked on friction factor analysis, some discussed heat transfer effects of laminar flow in the entrance region, while some discussed its applications in various industries. Some of these works were done considering a given form of pipe configuration or shape which is circular pipes. Only a few, of the literature reviewed have related their considerations to different forms of pipes. Most consider pipes to be majorly circular in shape, but in industries today some circular pipes have become elliptical in shape due to long time usage of the pipes, which would have contributed to increase in some different forms of losses in the industries. In engineering, efficiency and effectiveness improvement is the major goal, if a research work has been done, considering the important parameters in laminar flow showing their effects on different forms of pipe configuration as a result of pipe deformation due to usage, huge amount of money will be saved. This will show clearly how the efficiency of a given circular pipe has seriously been affected due to deformation, and the level of loss this has resulted to. 展开更多
关键词 LAMINAR FLOW FLOW Parameters CIRCULAR and ELLIPTICAL pipeS FLOW Numerical modeling and ANALYSES
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Mathematical Model of Steady State Operation in Jet Pipe Electro-Hydraulic Servo Valve 被引量:2
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作者 范春红山 陈天福 《Journal of Donghua University(English Edition)》 EI CAS 2013年第4期269-275,共7页
Jet pipe electro-hydraulic servo valve is the heart of feedback control systems,and it is one of the mechatronic components used for precision flow control application.It consists of several precision and ddicate comp... Jet pipe electro-hydraulic servo valve is the heart of feedback control systems,and it is one of the mechatronic components used for precision flow control application.It consists of several precision and ddicate components.The performance of the jet pipe servo valve depends on many parameters.During the developmental stage,it is very difficult to ascertain the function parameters.The steady-state analysis of jet pipe electro-hydraulic servo valve has been made to simulate its fluid characteristics (flowin,flow-out,leakage flow,recovery or load pressure,etc.) by mathematical modeling.Theoretical model was conducted on various affecting parameters on the pressure,the main flow rate of fluid,or leakage flow through the receiver holes.The major parameters studied are jet pipe nozzle diameters,receiver hole diameters,angle between the two centre-lines of receiver hole,nozzle offset,and nozzle stand-of distance.In this paper the research is important to determine and optimize the structural parameters of jet pipe servo valve.Thus,equations of the pressure and flow characteristics are set up and the optimal structural parameters of jet pipe are established. 展开更多
关键词 jet pipe servo valve pressure characteristics fluid characteristics mathematical modelCLC number:O351.2Document code:AArticle ID:1672-5220(2013)04-0269-07
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Analytical dynamic model of elastic-plastic pipe-on-pipe impact
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作者 闫冬梅 孙玉鑫 杨嘉陵 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2013年第6期731-746,共16页
Abstract The dynamic response of pipe-on-pipe impact is described by an analytical model. The model considers the impact of a whipping pipe with one end hinged and the other end free on a simply-supported target pipe ... Abstract The dynamic response of pipe-on-pipe impact is described by an analytical model. The model considers the impact of a whipping pipe with one end hinged and the other end free on a simply-supported target pipe at its midpoint. Combining with the contact theory, the Laplace transformation, and the inverse Laplace transformation method, an analytical model based on the tubular beam theory is proposed to study the elastic-plastic behavior of a target pipe laterally impacted by a whipping pipe. Numerical simulations using the explicit finite element code MSC/DYTRAN are also performed. The results are coincident with the theoretical prediction. 展开更多
关键词 pipe impact dynamic response Laplace transformation analytical model
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Model optimization method and connected-pipe experiment of a liquid fuel ramjet engine 被引量:2
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作者 MA Qian-rong GUO Xin +1 位作者 WU Hu CHOU Qian 《航空动力学报》 EI CAS CSCD 北大核心 2013年第6期1277-1285,共9页
The optimization method of a mathematical model and connected-pipe experimental technique for a test in altitude test facility (ATF) of a liquid fuel ramjet engine was researched.The optimization of the simple mathema... The optimization method of a mathematical model and connected-pipe experimental technique for a test in altitude test facility (ATF) of a liquid fuel ramjet engine was researched.The optimization of the simple mathematical model was divided into two steps.Firstly,using the test engine's geometry configuration size data,a preliminary adjustment was done.Secondly,using experimental test data,the components' experiential coefficients were modified appropriately.Emphasis was laid on the simulation technique of flight condition and parameters measurement method.The experimental technique was applied to a ramjet ATF test successfully.The comparison results show that the optimized-model has higher precision and the nozzle gross thrust difference drops from 12% to about 4%. 展开更多
关键词 ramjet engine model optimization altitude test facility(ATF) connected-pipe experiment simulation technique
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Exact Solution of Unsteady Flow of Viscoelastic Fluid in a Pipe with Fractional Maxwell Model
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作者 贾九红 杜俭业 +1 位作者 汪玉 华宏星 《Journal of Shanghai Jiaotong university(Science)》 EI 2007年第6期813-816,共4页
The unsteady flow of viscoelastic fluid in a cylindrical pipe was investigated using the fractional Maxwell model. Two special cases of unsteady pipe flow were expressed. The first is start-up flow, and the second is ... The unsteady flow of viscoelastic fluid in a cylindrical pipe was investigated using the fractional Maxwell model. Two special cases of unsteady pipe flow were expressed. The first is start-up flow, and the second is oscillating flow. The exact solution of start-up flow under a constant pressure gradient was obtained by using the theories of Laplace transform and Fourier-Bessel series for fractional derivatives. The exact solution of oscillating flow was obtained by utilizing the separation of variables. 展开更多
关键词 FRACTIONAL Maxwell model viscoelastic fluid unsteady pipe FLOW START-UP FLOW oscillating FLOW exact solution
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Mass-Spring-Damper Model with Steady State Parameters for Predicting the Movement of Liquid Column and Temperature Oscillation in Loop Heat Pipe
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作者 Ge Zhang Di Chen +1 位作者 Yingying Hong Li Liu 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2016年第5期82-89,共8页
In order to investigate the mechanism of the temperature oscillation in loop heat pipes,this paper investigated the movement of the phase interface as the changed input power by a mass-spring-damper model.The model wa... In order to investigate the mechanism of the temperature oscillation in loop heat pipes,this paper investigated the movement of the phase interface as the changed input power by a mass-spring-damper model.The model was solved with MATLAB and was used to explain the high-frequency and low-amplitude temperature oscillation.Temperature variation with the input power from 20 W to 75 W was investigated based on a LHP prototype in a literature.The model agreed well with the experimental data in the literature.The simulation results suggested that the movement of the liquid column was caused by the fluctuation of pressure difference applied on the liquid column and the stiffness coefficients of the vapor springs increasing with the input power.According to parameter analyses,the temperature oscillation at the outlet of the condenser can be weakened by increasing the mass of the liquid column and keeping the temperature at the outlet of the condenser steady. 展开更多
关键词 loop heat pipe temperature oscillation DISPLACEMENT mass-spring-da^nper model steady state para^neters
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Hydraulic fracturing of reservoirs containing rough discrete fracture networks:FDEM-UPM approach
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作者 Wanrun Li Zhengzhao Liang Chengye Zhao 《Journal of Rock Mechanics and Geotechnical Engineering》 2026年第2期1368-1389,共22页
Fractures are typically characterized by roughness that significantlyaffects the mechanical and hydraulic characteristics of reservoirs.However,hydraulic fracturing mechanisms under the influenceof fracture morphology... Fractures are typically characterized by roughness that significantlyaffects the mechanical and hydraulic characteristics of reservoirs.However,hydraulic fracturing mechanisms under the influenceof fracture morphology remain largely unexplored.Leveraging the advantages of the finite-discrete element method(FDEM)for explicitly simulating fracture propagation and the strengths of the unifiedpipe model(UPM)for efficientlymodeling dual-permeability seepage,we propose a new hydromechanical(HM)coupling approach for modeling hydraulic fracturing.Validated against benchmark examples,the proposed FDEM-UPM model is further augmented by incorporating a Fourier-based methodology for reconstructing non-planar fractures,enabling quantitative analysis of hydraulic fracturing behavior within rough discrete fracture networks(DFNs).The FDEM-UPM model demonstrates computational advantages in accurately capturing transient hydraulic seepage phenomena,while the asynchronous time-stepping schemes between hydraulic and mechanical analyses substantially enhanced computational efficiencywithout compromising computational accuracy.Our results show that fracture morphology can affect both macroscopic fracture networks and microscopic interaction types between hydraulic fractures(HFs)and natural fractures(NFs).In an isotropic stress field,the initiation azimuth,propagation direction and microcracking mechanism are significantly influencedby fracture roughness.In an anisotropic stress field,HFs invariably propagate parallel to the direction of the maximum principal stress,reducing the overall complexity of the stimulated fracture networks.Additionally,stress concentration and perturbation attributed to fracture morphology tend to be compromised as the leak-off increases,while the breakdown and propagation pressures remain insensitive to fracture morphology.These findingsprovide new insights into the hydraulic fracturing mechanisms of fractured reservoirs containing complex rough DFNs. 展开更多
关键词 Hydraulic fracturing Unified pipe model(UPM) Finite-discrete element method(FDEM) Hydro-mechanical coupling Discrete fracture network(DFN)
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Movement Properties of Pipe Flow Along Granite Slope of Three Gorges Area of Yangtze River in China 被引量:2
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作者 张洪江 史玉虎 +4 位作者 程云 盛前丽 肖辉杰 陈宗伟 常丹东 《Forestry Studies in China》 CAS 2002年第1期35-43,共9页
It is well known that, in most cases, soil water doesn't move in the form of laminar flow as described by Darcy law. Only when Reynolds number ( Re ) is no more than 10, does water movement follow Darcy law. A s... It is well known that, in most cases, soil water doesn't move in the form of laminar flow as described by Darcy law. Only when Reynolds number ( Re ) is no more than 10, does water movement follow Darcy law. A soil profile with 2 9 m long and 2 13 2 60 m deep was excavated on a lower slope located at Zigui County, Hubei Province, China. Field observation found that soil pipes were mainly distributed in the transient layer between horizon B with higher degree of granite weathering and horizon C with lower degree of granite weathering. At the foot of the slope, about 5 7 soil pipes per meter were observed along the vertical direction of the slope. The observed results, obtained by continuous observation of soil pipes and pipe flow processes at granite slope for many rainfall events, indicate that the relationship between velocity of pipe flow and hydraulic gradient along the pipe is parabolic rather than linear. Based on the investigated data of soil, landform, and land use etc., combined with observed data of pipe flow derived from many rainfall events, a pipe flow model was developed. For velocity V p, discharge Q p of pipe flow and radius r of soil pipe, great similarity was found between simulated and observed values. Particularly, the simulated length of soil pipes reflects the great difference among soil pipes as a result of its different position in the soil profile. The length values of 4 soil pipes were estimated to be 98 1%, 27 6%, 11 0% and 3 0% of the longest distance of the catchment, respectively. As a special case of water movement, soil pipe flow follows Darcy Weisbach law. Discharge of pipe flow is much greater than infiltration discharge in common. Only when the depth of groundwater is more than the diameter of soil pipe and water layer submerges soil pipes during rainfall, may pipe flow occur. Under these circumstances, discharge of pipe flow is directly proportional to the depth of groundwater. 展开更多
关键词 soil pipe pipe flow granite slope the Three Gorges area the Yangtze River pipe flow model
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基于Modelica的两相热工水力特性仿真模型架构与概念验证 被引量:6
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作者 黄彦平 曾小康 丁吉 《核动力工程》 EI CAS CSCD 北大核心 2021年第1期1-7,共7页
结合国际仿真技术的最新进展,探索研究了基于Modelica的核反应堆热工水力系统先进仿真技术,开展了基于Modelica的两相热工水力特性模型架构,建立了从底层的基本控制方程模型到顶层的系统模型的层次化架构图,并通过对热工水力系统常见的... 结合国际仿真技术的最新进展,探索研究了基于Modelica的核反应堆热工水力系统先进仿真技术,开展了基于Modelica的两相热工水力特性模型架构,建立了从底层的基本控制方程模型到顶层的系统模型的层次化架构图,并通过对热工水力系统常见的管内两相流进行Modelica建模仿真,论证了模型架构的可行性。研究表明,基于Modelica的层次化建模技术,可以极简地提取核反应堆系统及设备在两相热工水力方向的共性基类,即基础级模型;采用多级继承的方式,仅需对基础级模型进行参数配置和关联组合,就可形成针对特定对象的Modelica设备模型,进而通过组合封装或拖拽式建模,形成组件模型或系统模型;与传统软件Relap5对比,基于Modelica构建的模型仿真计算结果与其基本重合,但建模方式规范高效且灵活开放,是一种非常适用于复杂物理系统协同仿真的技术方向。 展开更多
关键词 modelICA 管内两相流 热工水力 仿真模型架构 概念验证
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管底沉积物冲刷模型在雨水泵站放江分析中的构建及应用
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作者 张庆民 张力元 +2 位作者 赵庚润 刘晨宇 李颖 《环境科学学报》 北大核心 2026年第2期304-314,共11页
泵站放江污染特征是城市水环境管控提升关注的重要方面,本文利用SWMM水质模型结合悬移质冲淤方程,构建了一种底部污染颗粒物冲刷沉积水质模型,经实测数据验证后对5、10、20、48(1年一遇)、67(3年一遇)、76 mm(5年一遇)降雨情景下典型雨... 泵站放江污染特征是城市水环境管控提升关注的重要方面,本文利用SWMM水质模型结合悬移质冲淤方程,构建了一种底部污染颗粒物冲刷沉积水质模型,经实测数据验证后对5、10、20、48(1年一遇)、67(3年一遇)、76 mm(5年一遇)降雨情景下典型雨水系统放江特征进行分析.结果表明:①泵站放江过程中SS、COD、TP的峰值浓度可达到1313、248、4 mg·L^(-1),远超地表V类水;②利用改进的水质模型模拟实测放江过程,模拟结果与实测数据趋势基本一致,纳什系数在0.5~0.8,基本可实现放江过程的计算模拟;③降雨情景下模拟放江过程,放江污染物总量约占系统总污染量的70%~80%,其中50%~80%的污染物来源于底部冲刷,其次是来源于地表径流污染,约占10%~30%,并且随着降雨总量的增加,放江总量占比和底部冲刷占比不断增加.改进的底部冲刷沉积水质模型补充了传统SWMM水质模型中忽略的放江流量冲刷影响,更加适用于现状雨水管网系统放江污染研究. 展开更多
关键词 雨水泵站 放江污染 管底沉积物 冲刷模型
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