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Predication of 3-D Viscous Flowfield of a Centrifugal Impeller
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作者 Limin Gao Xudong Feng Jian Xie 《Energy and Power Engineering》 2011年第1期29-33,共5页
A three-dimensional viscous code has been developed to solve Reynolds-averaged Navier-Stokes equations. The governing equations in finite volume form are solved by two-step Runge-Kutta scheme with implicit residual sm... A three-dimensional viscous code has been developed to solve Reynolds-averaged Navier-Stokes equations. The governing equations in finite volume form are solved by two-step Runge-Kutta scheme with implicit residual smoothing. The eddy viscous is obtained using the Baldwin-Lomax model. A prediction of the 3-D turbulent flow and the performance in the “all-over controlled vortex distribution” centrifugal impeller with a vaneless diffuser has been made for the compressor at design and off-design condition. The predicted effi-ciency is a little higher than the experiment data. These results suggest that the present calculation code is able to determine the flow development in the impeller and also the turbulence model in the centrifugal im-peller should be improved. 展开更多
关键词 CENTRIFUGAL IMPELLER Aerodynamic Performance 3-d VISCOUS flow Calculation Design & OFF-dESIGN Conditions
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Visualization of 3-D Field of Explosion 被引量:1
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作者 孙娟 宁建国 《Journal of Beijing Institute of Technology》 EI CAS 2002年第4期397-400,共4页
In order to visualize the 3-D field of explosion and describe the complex physical phenomena of explosion, the 3-D data resulting from numerical simulation by 3-D multi-material in cell (MMIC), and the application of ... In order to visualize the 3-D field of explosion and describe the complex physical phenomena of explosion, the 3-D data resulting from numerical simulation by 3-D multi-material in cell (MMIC), and the application of volume visualization is explored, based on the characteristics of explosion and shock. Based on this, a visualization system for 3-D explosion--ViSC3D is designed. Approaches for the visualization of 3-D field of explosion are presented. The algorithm and the functions of ViSC3D are also presented. ViSC3D is thus a useful tool to observe and analyze either the full picture or the details of a 3-D field of explosion, that are difficult to observe and analyze directly. With ViSC3D, the field of explosion between the hill slopes is visualized. The cutaway views and 2-D slices are also given. The full picture and partial details of 3-D field of explosion can be observed clearly. Furthermore, ViSC3D can be used to visualize other similar 3-D data fields. 展开更多
关键词 VISUALIZATION 3-d explosion field ViSC3D
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3D FEM simulation of flow velocity field for 5052 aluminum alloy multi-row sprocket in cold semi-precision forging process 被引量:1
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作者 程旺军 池成忠 +3 位作者 王永祯 林鹏 赵日红 梁伟 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第3期926-935,共10页
Based on the design of the multi-row sprocket with a new tooth profile,a cold semi-precision forging process for manufacturing 5052 aluminum alloy multi-row sprocket was presented.Through simulating the forging proces... Based on the design of the multi-row sprocket with a new tooth profile,a cold semi-precision forging process for manufacturing 5052 aluminum alloy multi-row sprocket was presented.Through simulating the forging process of 5052 aluminum alloy sprocket billet with 3D rigid-viscoplastic FEM,both the distributions of flow velocity field in axial(U_Z),radial(U_R) and circumferential(U_θ) directions and the curves of velocity component in different deformation regions were respectively obtained.By comparison and analysis of the velocity varying curves,the velocity component relation conditions for filling the die cavity were clarified.It shows that when the die cavity is almost fully filled,the circumferential velocity U_θ increases sharply,implying that U_θplays a key role in fully filling the die cavity. 展开更多
关键词 multi-row sprocket cold semi-precision forging 5052 aluminum alloy flow velocity field 3D FEM
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A CFD Based Investigation of the Unsteady Hydrodynamic Coefficients of 3-D Fins in Viscous Flow 被引量:3
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作者 Nazir Zulfiqar 苏玉民 王兆立 《Journal of Marine Science and Application》 2010年第3期250-255,共6页
The motion of the fins and control surfaces of underwater vehicles in a fluid is an interesting and challenging research subject.Typically the effect of fin oscillations on the fluid flow around such a body is highly ... The motion of the fins and control surfaces of underwater vehicles in a fluid is an interesting and challenging research subject.Typically the effect of fin oscillations on the fluid flow around such a body is highly unsteady, generating vortices and requiring detailed analysis of fluid-structure interactions.An understanding of the complexities of such flows is of interest to engineers developing vehicles capable of high dynamic performance in their propulsion and maneuvering.In the present study, a CFD based RANS simulation of a 3-D fin body moving in a viscous fluid was developed.It investigated hydrodynamic performance by evaluating the hydrodynamic coefficients (lift, drag and moment) at two different oscillating frequencies.A parametric analysis of the factors that affect the hydrodynamic performance of the fin body was done, along with a comparison of results from experiments.The results of the simulation were found in close agreement with experimental results and this validated the simulation as an effective tool for evaluation of the unsteady hydrodynamic coefficients of 3-D fins.This work can be further be used for analysis of the stability and maneuverability of fin actuated underwater vehicles. 展开更多
关键词 oscillating 3-d fin RANS hydrodynamic performance viscous flow
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Conical Sonic-Supersonic Solutions for the 3-D Steady Full Euler Equations
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作者 Yanbo Hu Xingxing Li 《Communications on Applied Mathematics and Computation》 2023年第3期1053-1096,共44页
This paper concerns the sonic-supersonic structures of the transonic crossflow generated by the steady supersonic flow past an infinite cone of arbitrary cross section.Under the conical assumption,the three-dimensiona... This paper concerns the sonic-supersonic structures of the transonic crossflow generated by the steady supersonic flow past an infinite cone of arbitrary cross section.Under the conical assumption,the three-dimensional(3-D)steady Euler equations can be projected onto the unit sphere and the state of fluid can be characterized by the polar and azimuthal angles.Given a segment smooth curve as a conical-sonic line in the polar-azimuthal angle plane,we construct a classical conical-supersonic solution near the curve under some reasonable assumptions.To overcome the difficulty caused by the parabolic degeneracy,we apply the characteristic decomposition technique to transform the Euler equations into a new degenerate hyperbolic system in a partial hodograph plane.The singular terms are isolated from the highly nonlinear complicated system and then can be handled successfully.We establish a smooth local solution to the new system in a suitable weighted metric space and then express the solution in terms of the original variables. 展开更多
关键词 Three-dimensional(3-d)full Euler equations Conical flow Conical-sonic Characteristic decomposition Classical solution
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3-D seismic interpretation of stratigraphic and structural features in the Upper Jurassic to Lower Cretaceous sequence of the Gullfaks Field,Norwegian North Sea:A case study of reservoir development 被引量:3
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作者 Muhammad Usman Numair Ahmed Siddiqui +3 位作者 Eduardo Garzanti Muhammad Jamil Qazi Sohail Imran Luqman Ahmed 《Energy Geoscience》 2021年第4期287-297,共11页
The 3-D seismic dataset is a key tool to analyze and understand the mechanism of structural and stratigraphic hydrocarbon(HC)trapping in the subsurface.Conventionally used subsurface seismic characterization methods f... The 3-D seismic dataset is a key tool to analyze and understand the mechanism of structural and stratigraphic hydrocarbon(HC)trapping in the subsurface.Conventionally used subsurface seismic characterization methods for fractures are based on the theory of effective anisotropy medium.The aim of this work is to improve the structural images with dense sampling of 3-D survey to evaluate structural and stratigraphic models for reservoir development to predict reservoir quality.The present study of the Gullfaks Field,located in the Norwegian North Sea Gullfaks sector,identifies the shallowest structural elements.The steepness of westward structural dip decreases eastward during the Upper Jurassic to Lower Cretaceous deposition.Reservoir sands consist of the Middle Jurassic deltaic deposits and Lower Jurassic fluvial channel and delta plain deposits.Sediment supply steadily prevails on sea-level rise and the succession displays a regressive trend indicated by a good continuous stacking pattern.The key factor for the development of reservoirs in the Gullfaks Field is fault transmissibility with spatially distributed pressure.The majority of mapped faults with sand-to-sand contacts are non-sealing,which provide restriction for the HC flow between the fault blocks.The traps for HC accumulation occur between the post-rift and syn-rift strata,i.e.antiform set by extensional system,unconformity trap at the top of syndeposition,and structural trap due to normal faults.Overall reservoir quality in the studied area is generally excellent with average 35%porosity and permeability in the Darcy range.Our findings are useful to better understand the development of siliciclastic reservoirs in similar geological settings worldwide. 展开更多
关键词 3-d seismic model Mesozoic stratigraphic boundary Structural trap Reservoir quality Gullfaks field
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Simulation of subcritical flow pattern in 180° uniform and convergent open-channel bends using SSIIM 3-D model 被引量:1
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作者 Rasool GHOBADIAN Kamran MOHAMMADI 《Water Science and Engineering》 EI CAS 2011年第3期270-283,共14页
In meandering rivers, the flow pattern is highly complex, with specific characteristics at bends that are not observed along straight paths. A numerical model can be effectively used to predict such flow fields. Since... In meandering rivers, the flow pattern is highly complex, with specific characteristics at bends that are not observed along straight paths. A numerical model can be effectively used to predict such flow fields. Since river bends are not uniform-some are divergent and others convergent-in this study, after the SSIIM 3-D model was calibrated using the result of measurements along a uniform 180° bend with a width of 0.6 m, a similar but convergent 180v bend, 0.6 m to 0.45 m wide, was simulated using the SSI1M 3-D numerical model. Flow characteristics of the convergent 180° bend, including lengthwise and vertical velocity profiles, primary and secondary flows, lengthwise and widtbwise slopes of the water surface, and the helical flow strength, were compared with those of the uniform 180° bend. The verification results of the model show that the numerical model can effectively simulate the flow field in the uniform bend. In addition, this research indicates that, in a convergent channel, the maximum velocity path at a plane near the water surface crosses the channel's centerline at about a 30° to 40° cross-section, while in the uniform bend, this occurs at about the 50° cross-section. The varying range of the water surface elevation is wider in the convergent channel than in the uniform one, and the strength of the helical flow is generally greater in the uniform channel than in the convergent one. Also, unlike the uniform bend, the convergent bend exhibits no rotational cell against the main direction of secondary flow rotation at the 135° cross-section. 展开更多
关键词 flow pattern numerical simulation convergent 180° bend SSIIM 3-d model
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EFFECT OF SUBMERGED ENTRY NOZZLE (SEN) PARAMETERS AND SHAPE ON 3-D FLUID FLOW IN MOULD FOR BEAM BLANK CONTINUOUS CASTING
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作者 Y.P.Du J.W.Yang +1 位作者 R.Shi X.C.Cui 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2004年第5期705-712,共8页
According to turbulent theory and characteristics of beam blank continuous casting, 3-D model to represent the flow of beam blank mould is established. The predicted results indicate that the exit obliquity of up 15&#... According to turbulent theory and characteristics of beam blank continuous casting, 3-D model to represent the flow of beam blank mould is established. The predicted results indicate that the exit obliquity of up 15°(+15°) should be adopted, which will benefit the floatation of non-metallic inclusion and purification of the molten steel. When the nozzle angle is 120°, the flow pattern is reasonable. Proper nozzle depth can be 200mm. Turbulent kinetic of meniscus can be reduced by adopting the square nozzle and suitable area of side outlet when casting speed increases. The results are consistent with those of water model experiment, so the model is exact and reasonable. The model can provide important information for design of SEN and defining of immersion depth. 展开更多
关键词 SEN parameter SEN shape beam blank continuous casting 3-d flow distribution turbulent kinetic energy
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Reconstruction of Temperature Field in 3-D, Absorbing, Emitting, and Anisotropically Scattering Medium
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作者 赵敬德 刘妮 钟珂 《Journal of Donghua University(English Edition)》 EI CAS 2006年第2期17-21,共5页
The soft measurement technology of flame temperature field is an efficient method to learn the combustion status in furnace. Generally, it reconstructs the temperature field in furnace through the image of flame, whic... The soft measurement technology of flame temperature field is an efficient method to learn the combustion status in furnace. Generally, it reconstructs the temperature field in furnace through the image of flame, which is a process to solve radiative inverse problem. In this paper, the flame of pulverized coal is considered as 3-D, absorbing, emitting, and anisotropically scattering non-gray medium. Through the study on inverse problem of radiative heat transfer, the temperature field in this kind of medium has been reconstructed. The mechanism of 3-D radiative heat transfer in a rectangular media, which is 2 m×3 m× 5 m and full of CO2, N2 and carbon particles, is studied with Monte Carlo method. The 3-D temperature field in this rectangular space is reconstructed and the influence of particles density profile is discussed. 展开更多
关键词 reconstruction of 3-d temperature field anisotropically scattering non-gray medium Monte Carlo method density profile inverse problem of radiative heat transfer.
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Mathematical Wave Functions and 3D Finite Element Modelling of the Electron and Positron
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作者 Declan Traill 《Journal of Applied Mathematics and Physics》 2024年第4期1134-1162,共29页
The wave/particle duality of particles in Physics is well known. Particles have properties that uniquely characterize them from one another, such as mass, charge and spin. Charged particles have associated Electric an... The wave/particle duality of particles in Physics is well known. Particles have properties that uniquely characterize them from one another, such as mass, charge and spin. Charged particles have associated Electric and Magnetic fields. Also, every moving particle has a De Broglie wavelength determined by its mass and velocity. This paper shows that all of these properties of a particle can be derived from a single wave function equation for that particle. Wave functions for the Electron and the Positron are presented and principles are provided that can be used to calculate the wave functions of all the fundamental particles in Physics. Fundamental particles such as electrons and positrons are considered to be point particles in the Standard Model of Physics and are not considered to have a structure. This paper demonstrates that they do indeed have structure and that this structure extends into the space around the particle’s center (in fact, they have infinite extent), but with rapidly diminishing energy density with the distance from that center. The particles are formed from Electromagnetic standing waves, which are stable solutions to the Schrödinger and Classical wave equations. This stable structure therefore accounts for both the wave and particle nature of these particles. In fact, all of their properties such as mass, spin and electric charge, can be accounted for from this structure. These particle properties appear to originate from a single point at the center of the wave function structure, in the same sort of way that the Shell theorem of gravity causes the gravity of a body to appear to all originate from a central point. This paper represents the first two fully characterized fundamental particles, with a complete description of their structure and properties, built up from the underlying Electromagnetic waves that comprise these and all fundamental particles. 展开更多
关键词 ELECTRON POSITRON Wave Function Solution Electromagnetic Spin Mass Charge Proof Fundamental Particle Properties Quantum Mechanics Classical Physics Computer 3D Model Schrödinger Equation RMS KLEIN GORDON Electric Magnetic Lorentz Invariant Hertzian Vector Point Potential field Density Phase flow Attraction REPULSION Shell Theorem Ehrenfest VIRIAL Normalization Harmonic Oscillator
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盒式气调包装机气体置换结构内部3-D流场的模拟 被引量:9
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作者 卢立新 王杰 《农业机械学报》 EI CAS CSCD 北大核心 2009年第7期119-123,共5页
气体置换装置是气调包装机的核心部件。以盒式气调包装机中2种典型气体置换装置结构为研究对象,建立了2种气体置换结构的物理模型和包装盒内气体流场分析数学模型,应用Fluent软件对包装盒内的气体流场进行三维数值模拟。建立了保证气体... 气体置换装置是气调包装机的核心部件。以盒式气调包装机中2种典型气体置换装置结构为研究对象,建立了2种气体置换结构的物理模型和包装盒内气体流场分析数学模型,应用Fluent软件对包装盒内的气体流场进行三维数值模拟。建立了保证气体置换质量的包装盒内三维流场评价指标,分析了气体置换装置充、排气孔的结构布置与排列方式对气体置换性能的影响。结果表明,与传统结构相比,新设计结构在气体置换率、流场静压分布、气体平均流速以及耗气量等方面均具有更佳的性能。 展开更多
关键词 气调包装 气体置换 三维流场 数值模拟
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3通道蛇形流场板氢氧质子交换膜燃料电池性能仿真研究 被引量:1
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作者 李英辉 王晓寰 《化学工程》 CAS CSCD 北大核心 2023年第10期18-23,共6页
3通道蛇形PEMFC(质子交换膜燃料电池)因能量转换效率高、体积小、低噪声、清洁无污染等优势而被广泛应用。3通道蛇形燃料电池流场内燃料压力、燃料流量直接决定着电池的电压-电流性能,采用数值仿真法分析3通道蛇形流场质子交换膜燃料电... 3通道蛇形PEMFC(质子交换膜燃料电池)因能量转换效率高、体积小、低噪声、清洁无污染等优势而被广泛应用。3通道蛇形燃料电池流场内燃料压力、燃料流量直接决定着电池的电压-电流性能,采用数值仿真法分析3通道蛇形流场质子交换膜燃料电池的燃料压力、流量对电池性能及启动性能的影响,可以直观获得膜燃料电池通过实验手段无法测量局部微弱变化。仿真结果表明:电池电压、电流分别受氢气压力和流量影响较大;当氢气与空气的流量比控制在1.3—3.0时,电池的输出电流最佳,电池的电流密度分布比较均匀;电池启动后电池和电流都有一定波动,电池运行13 min以后,电池电压和电流趋于稳定。3通道蛇形质子交换膜燃料电池仿真模型的建立为燃料电池流场仿真模型的构建与优化提供了参考。 展开更多
关键词 氢氧燃料电池 3通道 蛇形流场 仿真分析 电池性能
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超临界状态下RP-3航空燃料射流的数值模拟研究 被引量:1
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作者 董红丽 刘宁 +1 位作者 王瑀琦 邹洪磊 《航天器环境工程》 CSCD 北大核心 2023年第5期461-466,共6页
为了研究高超声速飞行器主动冷却系统中的航空燃料喷射及其影响,对超临界状态下RP-3航空燃料的平孔喷嘴射流进行数值模拟,首先利用Fluent软件进行计算流体动力学(CFD)分析,然后使用多相混合物模型模拟空化两相流,最后采用全空化模型来... 为了研究高超声速飞行器主动冷却系统中的航空燃料喷射及其影响,对超临界状态下RP-3航空燃料的平孔喷嘴射流进行数值模拟,首先利用Fluent软件进行计算流体动力学(CFD)分析,然后使用多相混合物模型模拟空化两相流,最后采用全空化模型来预测高温条件下燃料的饱和蒸气压对空化产生的机理和影响——当入口压力(P_(in))高达4 MPa时,分析在不同环境压力(P_(∞))下,温度为333~543 K的航空燃料射流。结果发现:随着燃料温度的升高,饱和蒸气压升高,喷嘴喉部空化和出口闪蒸逐渐发生;随着环境压力的降低,压降增大导致喷嘴内的质量流量增大,喷嘴内的流动逐渐从单相流过渡到空化两相流。 展开更多
关键词 近/超临界喷射 RP-3航空燃料 射流结构 流场分布
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Numerical simulations of full-wave fi elds and analysis of channel wave characteristics in 3-D coal mine roadway models 被引量:12
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作者 Yang Si-Tong Wei Jiu-Chuan +2 位作者 Cheng Jiu-Long Shi Long-Qing Wen Zhi-Jie 《Applied Geophysics》 SCIE CSCD 2016年第4期621-630,737,共11页
Currently, numerical simulations of seismic channel waves for the advance detection of geological structures in coal mine roadways focus mainly on modeling two- dimensional wave fields and therefore cannot accurately ... Currently, numerical simulations of seismic channel waves for the advance detection of geological structures in coal mine roadways focus mainly on modeling two- dimensional wave fields and therefore cannot accurately simulate three-dimensional (3-D) full-wave fields or seismic records in a full-space observation system. In this study, we use the first-order velocity-stress staggered-grid finite difference algorithm to simulate 3-D full-wave fields with P-wave sources in front of coal mine roadways. We determine the three components of velocity Vx, Vy, and Vz for the same node in 3-D staggered-grid finite difference models by calculating the average value of Vy, and Vz of the nodes around the same node. We ascertain the wave patterns and their propagation characteristics in both symmetrical and asymmetric coal mine roadway models. Our simulation results indicate that the Rayleigh channel wave is stronger than the Love channel wave in front of the roadway face. The reflected Rayleigh waves from the roadway face are concentrated in the coal seam, release less energy to the roof and floor, and propagate for a longer distance. There are surface waves and refraction head waves around the roadway. In the seismic records, the Rayleigh wave energy is stronger than that of the Love channel wave along coal walls of the roadway, and the interference of the head waves and surface waves with the Rayleigh channel wave is weaker than with the Love channel wave. It is thus difficult to identify the Love channel wave in the seismic records. Increasing the depth of the receivers in the coal walls can effectively weaken the interference of surface waves with the Rayleigh channel wave, but cannot weaken the interference of surface waves with the Love channel wave. Our research results also suggest that the Love channel wave, which is often used to detect geological structures in coal mine stopes, is not suitable for detecting geological structures in front of coal mine roadways. Instead, the Rayleigh channel wave can be used for the advance detection of geological structures in coal mine roadways. 展开更多
关键词 Channel wave 3-d wave field Numerical simulation Coal mine roadway Advance detection
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Simulation of Polymer Melt Flow Fields in Intermeshing Co-Rotating Three-Screw Extruders 被引量:5
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作者 胡冬冬 陈晋南 《Journal of Beijing Institute of Technology》 EI CAS 2006年第3期360-365,共6页
Three-dimension isothermal flows of polymer melt in the kneading blocks of triangularly-arranged and parallelly-arranged intermeshing co-rotating three-screw extruders are simulated using the finite element package PO... Three-dimension isothermal flows of polymer melt in the kneading blocks of triangularly-arranged and parallelly-arranged intermeshing co-rotating three-screw extruders are simulated using the finite element package POLYFLOW. Based on the velocity fields calculated, the particle trajectories in both machines are visualized using particle tracking technique. The numerical results indicate that the flow patterns in three-screw extruders are similar to those in twin-screw extruders. The triangularly-arranged three-screw extruder has the largest pumping capacity and also the highest extrusion stability in terms of flowrate fluctuation with screw rotation. The instantaneous mixing and cumulative residence time distribution (RTD) characteristics are also analyzed and compared with traditional intermeshing co-rotating twin-screw extruders. It is shown that the start section of the cumulative RTD curve for the triangularly-arranged machine has a small shoulder, which is attributed to the faster flow in the central region of this type of extruder. 展开更多
关键词 numerical simulation 3-d isothermal flow three-screw extruders
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A Higher-Efficient Non-Hydrostatic Finite Volume Model for Strong Three-Dimensional Free Surface Flows and Sediment Transport 被引量:1
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作者 LIU Xin MA Dian-guang ZHANG Qing-he 《China Ocean Engineering》 SCIE EI CSCD 2017年第6期736-746,共11页
In order to accurately simulate strong three-dimensional (3-D) free surface flows and sediment transport, the fully 3- D non-hydrostatic pressure models are developed based on the incompressible Navier-Stokes equati... In order to accurately simulate strong three-dimensional (3-D) free surface flows and sediment transport, the fully 3- D non-hydrostatic pressure models are developed based on the incompressible Navier-Stokes equations and convection-diffusion equation of sediment concentration with the mixing triangle and quadrilateral grids. The governing equations are discretized with the unstructured finite volume method in order to provide conservation properties of mass and momentum, and flexibility with practical application. It is shown that it is first-order accurate on nonuniform plane two-dimensional (2-D) grids and second-order accurate on uniform plane grids. A third-order approximation of the vertical velocity at the top-layer is applied. In such a way, free surface zero stress boundary condition is satisfied maturely, and very few vertical layers are needed to give an accurate solution even for complex discontinuous flow and short wave simulation. The model is applied to four examples to simulate strong 3-D free surface flows and sediment transport where non-hydrostatic pressures have a considerable effect on the velocity field. The newly developed model is verified against analytical solutions with an excellent agreement. 展开更多
关键词 higher-efficient NON-HYDROSTATIC strong 3-d free surface flows sediment transport 3-d numerical model
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A, ■-Ω METHOD FOR 3-D EDDY CURRENT ANALYSIS
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作者 施展伟 赵兴华 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 1998年第11期0-0,0-0+0-0+0,共7页
After the field equations and the snonumuoo conditions between the interfaces for 3D eddy current problems Under various gauges were discussed, it was pointed cut in this paper that using the magnetic vector potentia... After the field equations and the snonumuoo conditions between the interfaces for 3D eddy current problems Under various gauges were discussed, it was pointed cut in this paper that using the magnetic vector potential A. the electric scalar potential and Coulomb gauge △ .A = 0 in eddy current regions and using the magntetic scalar potential Ω in the non-conducting regions are more suitable. All field equations, the boundary conditions, the interface continuity conditions and the corresponding variational principle of this method are also given 展开更多
关键词 3-d eddy current field A method interface continuous conditions
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Analysis of Combined Radiation and Forced Convection Heat Transfer in 3D Laminar Flow over an Inclined Forward Facing Step
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作者 A. Dehghani Rayeni S. A. Gandjalikhan Nassab 《Journal of Electronics Cooling and Thermal Control》 2016年第1期1-18,共18页
In the current study, a numerical investigation of three-dimensional combined convection-radiation heat transfer over an inclined forward facing step (FFS) in a horizontal rectangular duct is presented. The fluid is t... In the current study, a numerical investigation of three-dimensional combined convection-radiation heat transfer over an inclined forward facing step (FFS) in a horizontal rectangular duct is presented. The fluid is treated as a gray, absorbing, emitting and scattering medium. To simulate the incline surface of FFS, the blocked-off method is employed in this study. The set of governing equations for gas flow are solved numerically using the CFD technique to obtain the temperature and velocity fields. Since the gas is considered as a radiating medium, all of the convection, conduction and radiation heat transfer mechanisms are presented in the energy equation. For computation of radiative term in energy equation, the radiative transfer equation (RTE) is solved numerically by the discrete ordinates method (DOM) to find the divergence of radiative heat flux distribution inside the radiating medium. The effects of optical thickness, radiation-conduction parameter and albedo coefficient on heat transfer behavior of the system are carried out. 展开更多
关键词 3-d Laminar Convection flow Forward Facing Step RADIATION DOM
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3MW双馈风力发电机传热特性数值研究 被引量:50
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作者 丁树业 孙兆琼 +1 位作者 徐殿国 苗立杰 《中国电机工程学报》 EI CSCD 北大核心 2012年第3期137-143,4,共7页
随着风力发电机容量的增加,电磁负荷不断提高,电机的发热问题成为影响机组性能和经济指标的主要因素之一。为了解决该难题,以一台3MW双馈风力发电机为例,根据流体力学以及传热学理论,结合发电机通风性能以及结构特点,建立了发电机三维... 随着风力发电机容量的增加,电磁负荷不断提高,电机的发热问题成为影响机组性能和经济指标的主要因素之一。为了解决该难题,以一台3MW双馈风力发电机为例,根据流体力学以及传热学理论,结合发电机通风性能以及结构特点,建立了发电机三维流动与传热耦合求解的数学模型与物理模型;并给出基本假设与相应的边界条件,采用有限体积法对三维流体场和温度场控制方程进行耦合计算。最后,对发电机内部的流体流动性能、传热特性以及发电机定转子铁心、定转子绕组以及绝缘的温升分布进行了分析,得到端部气体流动不规律以及二次冷却热能力较强等,为更大容量风力发电机综合物理场的准确计算提供了理论依据。 展开更多
关键词 双馈风力发电机 三维温度场 三维流体场 耦合 有限体积法 数值研究
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300MW燃料组件定位格架导向翼三维流场分析 被引量:5
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作者 周勤 丁捷 《核技术》 CAS CSCD 北大核心 2010年第2期120-123,共4页
从三维流场分析角度验证了300MW燃料组件定位格架导向翼初步设计改进方案的合理性,采用流体计算软件对燃料组件定位格架或棒束定位格架进行计算,比较导向翼修改前后的定位格架水力特性和导向翼周围流场的变化,为实际工程应用提供了依据。
关键词 三维流场分析 燃料组件 定位格架 棒束定位格架 水力特性
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