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Simulation of pore scale fluid flow of granular ore media in heap leaching based on realistic model 被引量:3
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作者 杨保华 吴爱祥 尹升华 《Journal of Central South University》 SCIE EI CAS 2011年第3期848-853,共6页
Two-dimensional images of the granular ore media with different grain sizes were obtained from the X-ray computed tomography.Combined with the digital image processing and finite element techniques,the original graysc... Two-dimensional images of the granular ore media with different grain sizes were obtained from the X-ray computed tomography.Combined with the digital image processing and finite element techniques,the original grayscale images were transformed into the finite element models directly.By using these models,the simulations of pore scale fluid flow among particles were conducted with the COMSOL Multiphysics,and the distribution characteristics of fluid flow velocity and pressure were analyzed.The simulation results show that there exist obvious preferential flow and leaching blind zone in each granular medium.The flow velocity at pore throat is larger than that of pore body and the largest velocity reaches 0.22 m/s.The velocity decreases gradually from the center of pore throat and body to the surface of particles.The flow paths of granular media with larger grain size distribute equally,while the fluid flow velocities in most of areas of granular media with smaller grain size are lower,and some of them approach to zero,so the permeability is very low.There exist some pore clusters with different pressures,which is the basic reason for the uneven flow velocity distribution. 展开更多
关键词 heap leaching granular ore fluid flow image processing computer simulation
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Fluid flow characteristics of single inclined circular jet impingement for ultra-fast cooling 被引量:2
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作者 王丙兴 谢谦 +1 位作者 王昭东 王国栋 《Journal of Central South University》 SCIE EI CAS 2013年第11期2960-2966,共7页
The fluid flow characteristics of the single bunch inclined jet impingement were investigated with different jet flow velocities,nozzle diameters,jet angles and jet-to-target distances for ultra-fast cooling technolog... The fluid flow characteristics of the single bunch inclined jet impingement were investigated with different jet flow velocities,nozzle diameters,jet angles and jet-to-target distances for ultra-fast cooling technology.The results show that the peak pressure varying significantly from nearly 0.5 to above 13.4 kPa locates at the stagnation point with different jet diameters,and the radius of impact pressure affected zone is small promoted from 46 to 81 mm in transverse direction,and 50 to 91 mm in longitude direction when the jet flow velocity changes from 5 to 20 m/s.However,the fluid flow velocity is relatively smaller near the stagnation point,and increases gradually along the radius outwards,then declines.There is an obvious anisotropic characteristic that the flow velocity component along the jet direction is about twice of the contrary one where the jet anlge is 60°,jet diameter is 5 mm,jet length is 8 mm and jet height is 50 mm. 展开更多
关键词 hot plate ultra-fast cooling inclined circular jet impact pressure fluid flow velocity
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Theoretical investigation of micropolar fluid flow between two porous disks 被引量:6
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作者 P.Valipour S.E.Ghasemi M.Vatani 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2825-2832,共8页
The steady, laminar, incompressible and two dimensional micropolar flow between two porous disks was investigated using optimal homotopy asymptotic method(OHAM) and fourth order Runge–Kutta numerical method. Comparis... The steady, laminar, incompressible and two dimensional micropolar flow between two porous disks was investigated using optimal homotopy asymptotic method(OHAM) and fourth order Runge–Kutta numerical method. Comparison between OHAM and numerical method shows that OHAM is an exact and high efficient method for solving these kinds of problems. The results are presented to study the velocity and rotation profiles for different physical parameters such as Reynolds number, vortex viscosity parameter, spin gradient viscosity and microinertia density parameter. As an important outcome, the magnitude of the microrotation increases with an increase in the values of injection velocity while it decreases by increasing the values of suction velocity. 展开更多
关键词 theoretical investigation porous disks micropolar fluid flow optimal homotopy asymptotic method(OHAM) microrotation
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Fluid flow on centimeter-scale in deep paleosubduction zones in western Tianshan,China:Evidence from high-pressure veins
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作者 张进富 黄德志 +3 位作者 黄始琪 李国明 高俊 石永红 《Journal of Central South University of Technology》 EI 2008年第4期488-492,共5页
High-pressure(HP)veins were extensively developed in western Tianshan high-pressure(HP)metamorphic belt.The HP vein and host-rocks were analyzed by electronic microprobe to trace the origin of vein-forming fluids.Anal... High-pressure(HP)veins were extensively developed in western Tianshan high-pressure(HP)metamorphic belt.The HP vein and host-rocks were analyzed by electronic microprobe to trace the origin of vein-forming fluids.Analytical data show that the immediately adjacent host-rocks of the studied HP vein are eclogites and gradually turned into blueschist as the distance from the veins increases,which indicates that the vein-forming fluid was derived from adjacent host-rocks;the boundaries between the vein and the host-rocks are sharp,which indicates that the fracture of the host-rocks is brittle during the vein-forming process.It is suggested that this type of HP veins is precipitated from the liquid formed by the dehydration of the host-rocks during the prograde metamorphism from blueschist to eclogite facies,which results in hydrofracturing of the rocks and provides the space for the vein to precipitate.The width of the eclogite-facies host-rocks is usually 1-2 cm,which provides the direct evidence that the fluid flow is on centimeter-scale. 展开更多
关键词 subduction zone high-pressure vein scale of fluid flow western Tianshan
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Refinery Fluid Flow Effects on Magnetic Surveying
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作者 Masoud Aali 《地学前缘》 EI CAS CSCD 北大核心 2009年第S1期29-29,共1页
Magnetic surveying is one of the methods of studying shallow subsurface structures by measuring variation in an area which can be compared to the surroundings.This method can disclose the magnetic minerals or metallic... Magnetic surveying is one of the methods of studying shallow subsurface structures by measuring variation in an area which can be compared to the surroundings.This method can disclose the magnetic minerals or metallic objects underground.In addition, fluid flow can affect these magnetic anomalies too. This paper is the result of a case study done in a 2500 m^2 region which investigates and reveals the effect 展开更多
关键词 SURVEYING MAGNETOMETRY fluid flow
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MHD three-dimensional flow of Jeffrey fluid with Newtonian heating 被引量:6
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作者 S.A.Shehzad T.Hayat +1 位作者 M.S.Alhuthali S.Asghar 《Journal of Central South University》 SCIE EI CAS 2014年第4期1428-1433,共6页
The magnetohydrodynamic(MHD) three-dimensional flow of Jeffrey fluid in the presence of Newtonian heating is investigated. Flow is caused by a bidirectional stretching surface. Series solutions are constructed for the... The magnetohydrodynamic(MHD) three-dimensional flow of Jeffrey fluid in the presence of Newtonian heating is investigated. Flow is caused by a bidirectional stretching surface. Series solutions are constructed for the velocity and temperature fields. Convergence of series solutions is ensured graphically and numerically. The variations of key parameters on the physical quantities are shown and discussed in detail. Constructed series solutions are compared with the existing solutions in the limiting case and an excellent agreement is noticed. Nusselt numbers are computed with and without magnetic fields. It is observed that the Nusselt number decreases in the presence of magnetic field. 展开更多
关键词 three-dimensional flow Jeffrey fluid Newtonian heating
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基于计算流体力学与4D Flow MRI的血流分析方法在心脑血管疾病诊治中的应用进展 被引量:1
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作者 任蕾 刘继华 +2 位作者 丁静 郭瑜 夏爽 《磁共振成像》 北大核心 2025年第2期172-178,共7页
近年来,心脑血管疾病的血流分析在临床发挥着越来越重要的作用。计算流体力学(computational fluid dynamics,CFD)和四维血流磁共振成像(4D flow magnetic resonance imaging,4D Flow MRI)都可以实现心脑血管疾病的血流可视化和量化。CF... 近年来,心脑血管疾病的血流分析在临床发挥着越来越重要的作用。计算流体力学(computational fluid dynamics,CFD)和四维血流磁共振成像(4D flow magnetic resonance imaging,4D Flow MRI)都可以实现心脑血管疾病的血流可视化和量化。CFD是基于医学影像通过求解流体动力学控制方程来计算血流,具有高空间和时间分辨率,但依赖模型设定及管壁边界条件假设。4D Flow MRI能够直接测量体内的真实血流,但采集时间较长,分辨率和精度有限。本文旨在综述CFD和4D Flow MRI各自优势与局限性,两种方法联合应用以及在心脑血管疾病中的应用进展,以期为临床医生提供血管疾病诊断和治疗的有力工具。 展开更多
关键词 心脑血管疾病 计算流体力学 四维血流磁共振成像 血流动力学 磁共振成像
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Computational fluid dynamics of left ventricular assist device under unsteady flow
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作者 BUMRUNGPETCH J. TAN A.C. 《排灌机械工程学报》 EI CSCD 北大核心 2016年第2期93-98,共6页
Left ventricular assist device( LVAD) in this study is a mechanical tool that is used to support blood flow in the patient with heart disease. It supports left ventricle by building up the pressure to the pump outlet ... Left ventricular assist device( LVAD) in this study is a mechanical tool that is used to support blood flow in the patient with heart disease. It supports left ventricle by building up the pressure to the pump outlet connected to the aorta. This pump was designed based on the magnetic driven centrifugal pump with a unique small washout hole constructed inside the impeller to generate the washout flow passage to prevent the stagnation at the region underneath and around the rotor. Computational fluid dynamics( CFD) was adopted in this study to assess the performance and optimize the design to avoid recirculation and high shear stress which is the main cause of stagnation and blood damage. Transient simulation was used for this study due to the asymmetric design of the washout hole and the complication of the bottom support of the impeller that has a risk of thrombosis,also,it was used to predict the variation of hydraulic performance caused by the rotation of the impeller and pulsed flow at the pump inlet. The simulation results show no excessive stress and no recirculation observed within the computational domain; in addition,the research result also provides information for further optimization and development to the pump. 展开更多
关键词 heart pump left ventricular assist device computational fluid dynamics unsteady flow
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Vibrational shear flow of anisotropic viscoelastic fluid with small amplitudes
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作者 韩式方 《Journal of Central South University》 SCIE EI CAS 2008年第S1期29-32,共4页
Using the constitutive equation of co-rotational derivative type for anisotropic viscoelastic fluid-liquid crystalline(LC),polymer liquids was developed.Two relaxation times are introduced in the equation:λn represen... Using the constitutive equation of co-rotational derivative type for anisotropic viscoelastic fluid-liquid crystalline(LC),polymer liquids was developed.Two relaxation times are introduced in the equation:λn represents relaxation of the normal-symmetric stress components;λs represents relaxation of the shear-unsymmetric stress components.A vibrational rotating flow in gap between cylinders with small amplitudes is studied for the anisotropic viscoelastic fluid-liquid crystalline polymer.The time-dependent constitutive equation are linearized with respect to parameter of small amplitude.For the normal-symmetric part of stress tensor analytical expression of the shear stress is obtained by the constitutive equation.The complex viscosity,complex shear modulus,dynamic and imaginary viscosities,storage modulus and loss modulus are obtained for the normal-symmetric stress case which are defined by the common shear rate.For the shear-unsymmetric stress part,two shear stresses are obtained thus two complex viscosities and two complex shear modulus(i.e.first and second one) are given by the constitutive equation which are defined by rotating shear rate introduced by author.The dynamic and imaginary viscosities,storage modulus and loss modulus are given for each complex viscosities and complex shear modulus.Using the constituive equation the rotating flow with small amplitudes in gap between two coaxial cylinders is studied. 展开更多
关键词 un-symmetric CONSTITUTIVE equation ANISOTROPIC VISCOELASTIC fluid liquid CRYSTALLINE polymer VIBRATIONAL shear flow with small AMPLITUDES
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Vibration analysis of fluid-conveying multi-scale hybrid nanocomposite shells with respect to agglomeration of nanofillers 被引量:2
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作者 Farzad Ebrahimi Ali Dabbagh 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2021年第1期212-225,共14页
The vibration problem of a fluid conveying cylindrical shell consisted of newly developed multi-scale hybrid nanocomposites is solved in the present manuscript within the framework of an analytical solution.The consis... The vibration problem of a fluid conveying cylindrical shell consisted of newly developed multi-scale hybrid nanocomposites is solved in the present manuscript within the framework of an analytical solution.The consistent material is considered to be made from an initial matrix strengthened via both macro-and nano-scale reinforcements.The influence of nanofillers’agglomeration,generated due to the high surface to volume ratio in nanostructures,is included by implementing Eshelby-Mori-Tanaka homogenization scheme.Afterwards,the equivalent material properties of the carbon nanotube reinforced(CNTR)nanocomposite are coupled with those of CFs within the framework of a modified rule of mixture.On the other hand,the influences of viscous flow are covered by extending the Navier-Stokes equation for cylinders.A cylindrical coordinate system is chosen and mixed with the infinitesimal strains of first-order shear deformation theory of shells to obtain the motion equations on the basis of the dynamic form of principle of virtual work.Next,the achieved governing equations will be solved by Galerkin’s method to reach the natural frequency of the structure for both simply supported and clamped boundary conditions.Presenting a set of illustrations,effects of each parameter on the dimensionless frequency of nanocomposite shells will be shown graphically. 展开更多
关键词 Vibration Agglomeration effect Multi-scale hybrid nanocomposites Galerkin’s solution Viscous fluid flow
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颅内动脉瘤4D Flow MRI与CFD血流动力学参数测量的对比研究 被引量:11
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作者 陈宇 张宇 +3 位作者 周赜辰 刘爱华 刘鹏 李睿 《磁共振成像》 CAS CSCD 2016年第8期613-617,共5页
目的对比研究4D Flow MRI和计算流体动力学(computational fluid dynamics,CFD)对颅内动脉瘤的血液流速测量结果,比较分析两种技术方法之间的差异。材料与方法本研究取4例颅内动脉瘤患者,分别做4D Flow MRI扫描和CFD仿真,将两种方法得... 目的对比研究4D Flow MRI和计算流体动力学(computational fluid dynamics,CFD)对颅内动脉瘤的血液流速测量结果,比较分析两种技术方法之间的差异。材料与方法本研究取4例颅内动脉瘤患者,分别做4D Flow MRI扫描和CFD仿真,将两种方法得到的速度结果进行对比研究。根据流速计算并显示4个病例的三维血液流动迹线(Pathline);提取动脉瘤颈部平均血流速度并计算两者之间的归一化均方根误差(normalized root mean square error,NRMSE)和线性相关系数(R^2);最后比较动脉瘤最大截面处的速度分布图。结果 4D Flow MRI和CFD对比结果显示,血液在载瘤动脉和瘤体内部的流动状态相似。瘤颈部平均流速符合良好。4例动脉瘤颈部平均流速的NRMSE均值为0.08992(0.10208、0.10270、0.04242、0.11248),R2均值为0.95958(0.9735、0.9316、0.9920、0.9412)。同时,在动脉瘤最大横截面内,4D Flow MRI和CFD速度分布的整体差异较大,但仍显示出一致的高流速区域分布。结论 4D Flow MRI的测量结果和CFD的计算结果之间具有较好的一致性,在局部存在一定的差异,需要设计体外实验进一步验证。 展开更多
关键词 颅内动脉瘤 血流动力学 磁共振成像 相位对比磁共振 计算流体动力学
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模拟水压致裂的另一种二维FDEM-flow方法 被引量:16
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作者 严成增 《岩土力学》 EI CAS CSCD 北大核心 2017年第6期1789-1796,共8页
可考虑岩石本身渗透性的FDEM-flow方法充分利用原FEMDEM中节理单元和三角形单元独特的拓扑连接关系,将节理单元作为流体流动的天然通道,基于立方定律来表征流体在岩石本身及裂隙中的流动,而岩石本身渗透性则通过标定合适节理单元张开度... 可考虑岩石本身渗透性的FDEM-flow方法充分利用原FEMDEM中节理单元和三角形单元独特的拓扑连接关系,将节理单元作为流体流动的天然通道,基于立方定律来表征流体在岩石本身及裂隙中的流动,而岩石本身渗透性则通过标定合适节理单元张开度来表征。用一个含解析解自由面稳态渗流算例初步验证了本文渗流算法及标定岩石本身渗透率方法的正确性。最后计算了一个水力压裂算例,验证了该FDEM-flow方法可同时考虑岩石本身的渗透性和裂隙的渗透性,用简单的纯裂隙渗流完成了对复杂问题的处理。研究结果表明:修改后的FDEM-flow方法能够很好地再现压裂过程中流体压力的分布及裂隙的扩展,可简洁地求解水力压裂这一复杂力学的问题,适用范围更广。为模拟页岩气开采、干热岩地热获取中的水力压裂问题提供新的求解工具。 展开更多
关键词 FEMDEM FDEM-flow 流固耦合 水力压裂 流体黏性 裂隙渗流
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基于Polyflow的缓凝砂浆在螺旋槽中的流场模拟 被引量:1
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作者 杜王芳 张建辉 《机电工程》 CAS 2010年第5期28-30,共3页
针对缓凝预应力筋包覆装置连续作业的可靠性问题,在包覆试验研究基础上,采用流体力学和流变学理论与计算方法,运用Polyflow等软件,建立了螺旋输送的物理模型、几何模型以及有限元网格模型,结合假设和边界条件,对宾汉姆流体的缓凝砂浆在... 针对缓凝预应力筋包覆装置连续作业的可靠性问题,在包覆试验研究基础上,采用流体力学和流变学理论与计算方法,运用Polyflow等软件,建立了螺旋输送的物理模型、几何模型以及有限元网格模型,结合假设和边界条件,对宾汉姆流体的缓凝砂浆在螺旋槽内的流动和变形进行了计算流体力学(CFD)模拟,并得到了可视化流场。分析结果表明,在不同螺杆转速下,缓凝砂浆在螺槽中出现完全流动状态或"塞流"的固体输送状态,验证了包覆试验现象,同时为机件的优化与设计提供了依据。 展开更多
关键词 缓凝砂浆 Bingham流体 螺旋输送 计算流体力学 可视化流场
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Differential amplification method for flow structures analysis of centrifugal pump between design and off-design points 被引量:2
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作者 ZHANG He-hui DENG Sheng-xiang QU Ying-jie 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第6期1443-1449,共7页
The three-dimensional internal flow field of centrifugal pump is complex and variable with design parameters and operation conditions. The post-processing technique named differential amplification method was proposed... The three-dimensional internal flow field of centrifugal pump is complex and variable with design parameters and operation conditions. The post-processing technique named differential amplification method was proposed for the comparison study of different flow structures. The full steady flow fields of an industrial centrifugal pump working on-design and off-design points were numerically investigated by solving Reynolds average Navier-Stokes equations together with a shear-stress transport(SST) k-? turbulence model. And the numerically predicted performance curves of the studied pump agree well with test measurement results. Compared with the flow flied on design point under the help of differential amplification method, the disturbance caused by interaction between blade and volute tongue is very obvious and it extends to the diffuser pipe on the working point with 0.8 times rated flux. While on the point with 1.2 times rated flux, the flow distribution in impeller region is roughly even and it flows more to the bottom section of the diffuser pipe. The above method was proved to be good at displaying the subtle secondary flow structure changes with a higher resolution effect relative to single isolated case observation, which helps the optimization decision-making from multiple design cases. 展开更多
关键词 DIFFERENTIAL AMPLIFICATION COMPUTATIONAL fluid dynamics (CFD) flow structure CENTRIFUGAL PUMP
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Numerical simulation on rotordynamic characteristics of annular seal under uniform and non-uniform flows 被引量:5
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作者 吴大转 姜新阔 +2 位作者 初宁 武鹏 王乐勤 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第8期1889-1897,共9页
Currently, the flow field of annular seals disturbed by the circular whirl motion of rotors is usually solved using computational fluid dynamics(CFD) to evaluate the five rotordynamic coefficients. The simulations are... Currently, the flow field of annular seals disturbed by the circular whirl motion of rotors is usually solved using computational fluid dynamics(CFD) to evaluate the five rotordynamic coefficients. The simulations are based on the traditional quasi-steady method. In this work, an improved quasi-steady method along with the transient method was presented to compute the rotordynamic coefficients of a long seal. By comparisons with experimental data, the shortcomings of quasi-steady methods have been identified. Then, the effects of non-uniform incoming flow on seal dynamic coefficients were studied by transient simulations. Results indicate that the long seal has large cross stiffness k and direct mass M which are not good for rotor stability, while the transient method is more suitable for the long seal for its excellent performance in predicting M. When the incoming flow is non-uniform, the stiffness coefficients vary with the eccentric directions. Based on the rotordynamic coefficients under uniform incoming flow, the linearized fluid force formulas, which can consider the effects of non-uniform incoming flow, have been presented and can well explain the varying-stiffness phenomenon. 展开更多
关键词 long pump seal rotordynamic coefficients transient computational fluid dynamics(CFD) dynamic mesh non-uniform incoming flow
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The Application of Compulational Fluid Dynamics to Design of Vehicle Cooling Wind Tunnel
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作者 毕小平 黄小辉 《Defence Technology(防务技术)》 SCIE EI CAS 2009年第2期126-130,共5页
A computational fluid dynamics(CFD)calculation model for the airflow and heat transfer in an armored vehicle cooling wind tunnel is established.A practical method to determine computation region outside power train co... A computational fluid dynamics(CFD)calculation model for the airflow and heat transfer in an armored vehicle cooling wind tunnel is established.A practical method to determine computation region outside power train compartment,produce grid and ensure grid quality is put forward.A commercial software FLUENT can be used to obtain solutions numerically in 3-D space.Precision of CFD calculation results is verified.The CFD model is used in designing a vehicle cooling wind tunnel,and air flow resistance of fan blast baffle is calculated.The calculated results show feasibility of the CFD model and the method. 展开更多
关键词 计算流体力学 装甲车辆 冷却设计 动力学设计 风洞 应用 流体力学模型 计算结果
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Computational study of fluid-borne noise in vertical inline pump
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作者 CHRISTOPHER Stephen YUAN Shouqi +1 位作者 PEI Ji CHENG Xing 《排灌机械工程学报》 EI CSCD 北大核心 2019年第2期93-99,共7页
The objective of present work is to find out the sources of fluid-borne noise in vertical inline pump for various flow rates. The three-dimensional unsteady Reynolds Average Navier Stokes equation was solved using com... The objective of present work is to find out the sources of fluid-borne noise in vertical inline pump for various flow rates. The three-dimensional unsteady Reynolds Average Navier Stokes equation was solved using computational fluid dynamics code to predict the acoustic distribution. The pump chosen for study was of low specific speed and the experimental performance characteristic was very well matched with computational head developed. PROUDMAN sound power contour analysis showed the critical zone of noise in inlet pipe,impeller,and volute. Based on this,the variations of acoustic power were depicted over the cross section of inlet pipe,along the mean streamline of inlet pipe,as well along the volute circumference. The result concludes that the predominant flow noise is at tongue region and followed by noise generated due to turbulence in inlet pipe which occurs by the sudden variation in flow passage as well it depends on the operating condition of pump. The frequency analysis gives a glimpse of understanding about the broadband noise distribution due to flow phenomenon over a frequency range. 展开更多
关键词 VERTICAL inline PUMP fluid-borne noise return flow INLET pipe PROUDMAN
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Numerical simulation of base flow with hot base bleed for two jet models
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作者 Wen-jie YU Yong-gang YU Bin NI 《Defence Technology(防务技术)》 SCIE EI CAS 2014年第3期279-284,共6页
In order to improve the benefits of base bleed in base flow field,the base flow with hot base bleed for two jet models is studied.Twodimensional axisymmetric Navier-Stokes equations are computed by using a finite volu... In order to improve the benefits of base bleed in base flow field,the base flow with hot base bleed for two jet models is studied.Twodimensional axisymmetric Navier-Stokes equations are computed by using a finite volume scheme.The base flow of a cylinder afterbody with base bleed is simulated.The simulation results are validated with the experimental data,and the experimental results are well reproduced.On this basis,the base flow fields with base bleed for a circular jet model and an annulus jet model are investigated by selecting the injection temperature from 830 K to 2200 K.The results show that the base pressure of the annular jet model is higher than that of the circular jet model with the changes of the injection parameter and the injection temperature.For the circular jet model,the hot gases are concentrated in the vicinity of the base.For the annular jet model,the bleed gases flow into the shear layer directly so that the hot gases are concentrated in the shear layer.The latter temperature distribution is better for the increase of base pressure. 展开更多
关键词 fluid MECHANICS BASE bleed BASE flow Numerical simulation ANNULUS JET
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深层裂缝性气藏流固耦合下钻井液漏失规律数值研究 被引量:1
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作者 王志远 刘徽 +2 位作者 孙宝江 刘洪涛 娄文强 《石油钻探技术》 北大核心 2025年第2期52-61,共10页
钻进裂缝性地层的过程中井漏问题严峻,易导致产能降低和钻井安全事故。为此,综合考虑钻井液与天然气的物性差异、基质与裂缝间的耦合流动及裂缝开度的动态演化规律,建立了基于气液两相流动的裂缝性气藏漏失预测模型,并与试验数据进行对... 钻进裂缝性地层的过程中井漏问题严峻,易导致产能降低和钻井安全事故。为此,综合考虑钻井液与天然气的物性差异、基质与裂缝间的耦合流动及裂缝开度的动态演化规律,建立了基于气液两相流动的裂缝性气藏漏失预测模型,并与试验数据进行对比,验证了模型的准确性;基于该模型,系统分析了裂缝性气藏地质构造、基质参数、裂缝参数和井底压差等因素对漏失的影响规律,修正了传统统计学漏失模型,提出了适用于裂缝性气藏的漏失速率计算方法。研究结果表明,裂缝性气藏的漏失速率随着裂缝增宽呈对数函数增长,增长趋势先急后缓,随着井底压差和裂缝长度增大呈线性增长;发育有断层裂缝性气藏的漏失速率随着裂缝宽度和井底压差增大呈指数增长,随着井眼与断层的距离增大呈对数式减小。研究结果为完善裂缝性气藏井漏规律和优选防漏堵漏技术提供了理论依据。 展开更多
关键词 裂缝性气藏 井漏 气液两相流动 流固耦合 断层
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纳米改性材料在水基钻井液中的减阻性能 被引量:1
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作者 郭磊 李模刚 +2 位作者 邓楚娈 贺垠博 耿铁 《钻井液与完井液》 北大核心 2025年第3期308-317,共10页
水基钻井液在小井眼环空流动时波动性大,与井壁、钻具界面阻力大,导致流动能量损耗和钻井液当量循环密度(ECD)大,易引发井漏、卡钻等事故。以纳米二氧化硅为原料,接枝改性合成水基钻井液减阻剂DRA-1,并开展减阻性能研究,发现DRA-1具有... 水基钻井液在小井眼环空流动时波动性大,与井壁、钻具界面阻力大,导致流动能量损耗和钻井液当量循环密度(ECD)大,易引发井漏、卡钻等事故。以纳米二氧化硅为原料,接枝改性合成水基钻井液减阻剂DRA-1,并开展减阻性能研究,发现DRA-1具有降低钻井液流动阻力与改善钻井液流动流型的作用。结果表明,在基浆中加入3%DRA-1后,流性指数为0.5064,增幅达366.7%,稠度系数为0.4847 Pa·s^(n),降幅达90.6%,极压润滑系数降低率达81.82%,经120℃热滚16 h后减阻效果进一步提高,证明DRA-1具有抗高温能力;以相同条件在自制钢片和聚四氟乙烯板上流动时,DRA-1对基浆流动性的改善效果显著优于现场同类材料,具有更好的流动性;基于A井生产资料,在水基钻井液中加入1%DRA-1后,压耗降低1.937 MPa,降低率达21.61%,在整个井深范围也表现出更低的ECD,宏观上反映出DRA-1对钻井效率和安全性的提升,这对钻井现场提高经济效益和避免作业事故具有重要意义。 展开更多
关键词 水基钻井液 纳米材料 流动减阻 润滑性能 ECD
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