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Structural parameter optimization for novel internal-loop iron–carbon micro-electrolysis reactors using computational fluid dynamics 被引量:5
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作者 Lei Zhang Mengyu Wu +2 位作者 Yanhe Han Meili Liu Junfeng Niu 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2019年第4期737-744,共8页
It is generally recognized that internal-loop reactors are well-developed mass and heat-transfer multiphase flow reactors. However, the internal flow field in the internal-loop reactor is influenced by the structure p... It is generally recognized that internal-loop reactors are well-developed mass and heat-transfer multiphase flow reactors. However, the internal flow field in the internal-loop reactor is influenced by the structure parameter of the reactor, which has a great effect on the reaction efficiency. In this study, the computational fluid dynamics simulation method was used to determine the influence of reactor structure on flow field, and a volume-offluid model was employed to simulate the gas–liquid, two-phase flow of the internal-loop micro-electrolysis reactor. Hydrodynamic factors were optimized when the height-to-diameter ratio was 4:1, diameter ratio was9:1, draft-tube axial height was 90 mm. Three-dimensional simulations for the water distributor were carried out, and the results suggested that the optimal conditions are as follows: the number of water distribution pipes was four, and an inhomogeneous water distribution was used. According to the results of the simulation,the suitable structure can be used to achieve good fluid mechanical properties, such as the good liquid circulation velocity and gas holdup, which provides a good theoretical foundation for the application of the reactor. 展开更多
关键词 Iron–carbon MICRO-ELECTROLYSIS INTERNAL CYCLING computational fluid dynamics Structure design
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Computational Fluid Dynamics Approach for Predicting Pipeline Response to Various Blast Scenarios: A Numerical Modeling Study
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作者 Farman Saifi Mohd Javaid +1 位作者 Abid Haleem S.M.Anas 《Computer Modeling in Engineering & Sciences》 SCIE EI 2024年第9期2747-2777,共31页
Recent industrial explosions globally have intensified the focus in mechanical engineering on designing infras-tructure systems and networks capable of withstanding blast loading.Initially centered on high-profile fac... Recent industrial explosions globally have intensified the focus in mechanical engineering on designing infras-tructure systems and networks capable of withstanding blast loading.Initially centered on high-profile facilities such as embassies and petrochemical plants,this concern now extends to a wider array of infrastructures and facilities.Engineers and scholars increasingly prioritize structural safety against explosions,particularly to prevent disproportionate collapse and damage to nearby structures.Urbanization has further amplified the reliance on oil and gas pipelines,making them vital for urban life and prime targets for terrorist activities.Consequently,there is a growing imperative for computational engineering solutions to tackle blast loading on pipelines and mitigate associated risks to avert disasters.In this study,an empty pipe model was successfully validated under contact blast conditions using Abaqus software,a powerful tool in mechanical engineering for simulating blast effects on buried pipelines.Employing a Eulerian-Lagrangian computational fluid dynamics approach,the investigation extended to above-surface and below-surface blasts at standoff distances of 25 and 50 mm.Material descriptions in the numerical model relied on Abaqus’default mechanical models.Comparative analysis revealed varying pipe performance,with deformation decreasing as explosion-to-pipe distance increased.The explosion’s location relative to the pipe surface notably influenced deformation levels,a key finding highlighted in the study.Moreover,quantitative findings indicated varying ratios of plastic dissipation energy(PDE)for different blast scenarios compared to the contact blast(P0).Specifically,P1(25 mm subsurface blast)and P2(50 mm subsurface blast)showed approximately 24.07%and 14.77%of P0’s PDE,respectively,while P3(25 mm above-surface blast)and P4(50 mm above-surface blast)exhibited lower PDE values,accounting for about 18.08%and 9.67%of P0’s PDE,respectively.Utilising energy-absorbing materials such as thin coatings of ultra-high-strength concrete,metallic foams,carbon fiber-reinforced polymer wraps,and others on the pipeline to effectively mitigate blast damage is recommended.This research contributes to the advancement of mechanical engineering by providing insights and solutions crucial for enhancing the resilience and safety of underground pipelines in the face of blast events. 展开更多
关键词 Blast loading computational fluid dynamics computer modeling pipe networks response prediction structural safety
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Computational dynamics of soft machines 被引量:9
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作者 Haiyan Hu Qiang Tian Cheng Liu 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2017年第3期516-528,共13页
Soft machine refers to a kind of mechanical system made of soft materials to complete sophisticated missions, such as handling a fragile object and crawling along a narrow tunnel corner, under low cost control and act... Soft machine refers to a kind of mechanical system made of soft materials to complete sophisticated missions, such as handling a fragile object and crawling along a narrow tunnel corner, under low cost control and actuation. Hence, soft machines have raised great challenges to computational dynamics. In this review article, recent studies of the authors on the dynamic modeling, numerical simulation, and experimental validation of soft machines are summarized in the framework of multibody system dynamics. The dynamic modeling approaches are presented first for the geometric nonlinearities of coupled overall motions and large deformations of a soft component, the physical nonlinearities of a soft component made of hyperelastic or elastoplastic materials, and the frictional contacts/impacts of soft components, respectively. Then the computation approach is outlined for the dynamic simulation of soft machines governed by a set of differential-algebraic equations of very high dimensions, with an emphasis on the efficient computations of the nonlinear elastic force vector of finite elements. The validations of the proposed approaches are given via three case studies, including the locomotion of a soft quadrupedal robot, the spinning deployment of a solar sail of a spacecraft, and the deployment of a mesh reflector of a satellite antenna, as well as the corresponding experimental studies. Finally, some remarks are made for future studies. 展开更多
关键词 computational dynamics Multibody system dynamics Absolute nodal coordinate formulation Contact and impact Soft machine Soft robot Deployable space structure
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Three-dimensional Computational Fluid Dynamics Modeling of Two-phase Flow in a Structured Packing Column 被引量:4
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作者 张小斌 姚蕾 +1 位作者 邱利民 张学军 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2013年第9期959-966,共8页
Characterizing the complex two-phase hydrodynamics in structured packed columns requires a power- ful modeling tool. The traditional two-dimensional model exhibits limitations when one attempts to model the de- tailed... Characterizing the complex two-phase hydrodynamics in structured packed columns requires a power- ful modeling tool. The traditional two-dimensional model exhibits limitations when one attempts to model the de- tailed two-phase flow inside the columns. The present paper presents a three-dimensional computational fluid dy- namics (CFD) model to simulate the two-phase flow in a representative unit of the column. The unit consists of an CFD calculations on column packed with Flexipak 1Y were implemented within the volume of fluid (VOF) mathe- matical framework. The CFD model was validated by comparing the calculated thickness of liquid film with the available experimental data. Special attention was given to quantitative analysis of the effects of gravity on the hy- drodynamics. Fluctuations in the liquid mass flow rate and the calculated pressure drop loss were found to be quali- tatively in agreement with the experimental observations. 展开更多
关键词 structured packing column two-phase flow computational fluid dynamics THREE-DIMENSION
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Application of Computational Fluid Dynamics and Fluid Structure Interaction Techniques for Calculating the 3D Transient Flow of Journal Bearings Coupled with Rotor Systems 被引量:20
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作者 LI Qiang YU Guichang +1 位作者 LIU Shulian ZHENG Shuiying 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第5期926-932,共7页
Journal bearings are important parts to keep the high dynamic performance of rotor machinery. Some methods have already been proposed to analysis the flow field of journal bearings, and in most of these methods simpli... Journal bearings are important parts to keep the high dynamic performance of rotor machinery. Some methods have already been proposed to analysis the flow field of journal bearings, and in most of these methods simplified physical model and classic Reynolds equation are always applied. While the application of the general computational fluid dynamics (CFD)-fluid structure interaction (FSI) techniques is more beneficial for analysis of the fluid field in a journal bearing when more detailed solutions are needed. This paper deals with the quasi-coupling calculation of transient fluid dynamics of oil film in journal bearings and rotor dynamics with CFD-FSI techniques. The fluid dynamics of oil film is calculated by applying the so-called "dynamic mesh" technique. A new mesh movement approacb is presented while the dynamic mesh models provided by FLUENT are not suitable for the transient oil flow in journal bearings. The proposed mesh movement approach is based on the structured mesh. When the joumal moves, the movement distance of every grid in the flow field of bearing can be calculated, and then the update of the volume mesh can be handled automatically by user defined function (UDF). The journal displacement at each time step is obtained by solving the moving equations of the rotor-bearing system under the known oil film force condition. A case study is carried out to calculate the locus of the journal center and pressure distribution of the journal in order to prove the feasibility of this method. The calculating results indicate that the proposed method can predict the transient flow field of a journal bearing in a rotor-bearing system where more realistic models are involved. The presented calculation method provides a basis for studying the nonlinear dynamic behavior of a general rotor-bearing system. 展开更多
关键词 mesh movement transient flow computational fluid dynamics (CFD) fluid-structure interaction (FSI) journal bearing
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Structural Parameter Analyses on Rotor Airloads with New Type Blade-Tip Based on CFD/CSD Coupling Method
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作者 Wang Junyi Zhao Qijun Ma Li 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2016年第6期-,共9页
For accurate aeroelastic analysis,the unsteady rotor flowfield is solved by computational fluid dynamics(CFD)module based on RANS/Euler equations and moving-embedded grid system,while computational structural dynamics... For accurate aeroelastic analysis,the unsteady rotor flowfield is solved by computational fluid dynamics(CFD)module based on RANS/Euler equations and moving-embedded grid system,while computational structural dynamics(CSD)module is introduced to handle blade flexibility.In CFD module,dual time-stepping algorithm is employed in temporal discretization,Jameson two-order central difference(JST)scheme is adopted in spatial discretization and B-L turbulent model is used to illustrate the viscous effect.The CSD module is developed based on Hamilton′s variational principles and moderate deflection beam theory.Grid deformation is implemented using algebraic method through coordinate transformations to achieve deflections with high quality and efficiency.A CFD/CSD loose coupling strategy is developed to transfer information between rotor flowfield and blade structure.The CFD and the CSD modules are verified seperately.Then the CFD/CSD loose coupling is adopted in airloads prediction of UH-60A rotor under high speed forward flight condition.The calculated results agree well with test data.Finally,effects of torsional stiffness properties on airloads of rotors with different tip swept angles(from 10° forward to 30° backward)are investigated.The results are evaluated through pressure distribution and airloads variation,and some meaningful conclusions are drawn the moderated shock wave strength and pressure gradient caused by varied tip swept angle and structural properties. 展开更多
关键词 ROTOR airloads structural parameter computational fluid dynamics(CFD) computational structural dynamics(csd) loose coupling method
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调谐液柱阻尼器-结构系统风致振动响应的CFD/CSD耦合分析方法
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作者 黄鹏 吴玖荣 +2 位作者 傅继阳 孙连杨 王加雷 《振动与冲击》 EI CSCD 北大核心 2024年第11期236-245,254,共11页
针对调谐液柱阻尼器(tuned liquid column damper, TLCD)难以建立其精确的非线性理论分析模型,且其力学性能试验成本高和耗时长等问题,首先采用计算流体动力学(CFD)数值模拟方法,对TLCD系统的力学性能和动力特征进行仿真模拟,在此基础... 针对调谐液柱阻尼器(tuned liquid column damper, TLCD)难以建立其精确的非线性理论分析模型,且其力学性能试验成本高和耗时长等问题,首先采用计算流体动力学(CFD)数值模拟方法,对TLCD系统的力学性能和动力特征进行仿真模拟,在此基础上进一步提出了基于计算流体动力学/计算结构动力学(CFD/CSD)耦合分析方法,求解带TLCD系统的高层建筑结构的风致动力响应。通过开展某一TLCD系统在特定底部激励下的力学性能和动力特性试验,得到其内液体晃荡的自由液面波高和晃动力时程,验证了CFD数值模拟方法可以准确地分析TLCD水箱内液体的非线性晃动特征。随后对风工程领域广泛采用的76层建筑结构振动控制Benchmark模型,假设其顶部设置TLCD系统时主体结构在三种风速重现期(10、50和100年)风速对应的横风向动力风荷载激励下的风致控制效率,采用提出的CFD/CSD耦合分析方法,进行了数值仿真模拟分析。耦合分析结果表明,TLCD系统对Benchmark模型的风致加速度、速度和位移响应均有一定的控制效果,对加速度响应的控制效果要优于对位移响应的控制效果。该研究方法可为复杂TLCD系统对高层建筑的风振控制分析提供有效的参考。 展开更多
关键词 调谐液柱阻尼器(TLCD) 高层结构 风振控制 计算流体动力学(CFD) 计算结构动力学(csd) CFD/csd耦合分析方法
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ODE-Solver-Oriented Computational Method for the Structural Dynamic Analysis of Super Tall Buildings
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作者 Xiancheng Wang Yaoqing Gong 《Journal of Mathematics and System Science》 2014年第10期667-674,共8页
The paper is to introduce a computational methodology that is based on ordinary differential equations (ODE) solver for the structural systems adopted by a super tall building in its preliminary design stage so as t... The paper is to introduce a computational methodology that is based on ordinary differential equations (ODE) solver for the structural systems adopted by a super tall building in its preliminary design stage so as to facilitate the designers to adjust the dynamic properties of the adopted structural system. The construction of the study is composed by following aspects. The first aspect is the modelling of a structural system. As a typical example, a mega frame-core-tube structural system adopted by some famous super tall buildings such as Taipei 101 building, Shanghai World financial center, is employed to demonstrate the modelling of a computational model. The second aspect is the establishment of motion equations constituted by a group of ordinary differential equations for the analyses of free vibration and resonant response. The solutions of the motion equations (that constitutes the third aspect) resorted to ODE-solver technique. Finally, some valuable conclusions are summarized. 展开更多
关键词 ODE-solver-oriented computational methodology tall building structures structural dynamic analysis computational model of a mega frame-core-tube system ODE solver
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Flow Field Characteristics of Multi-Trophic Artificial Reef Based on Computation Fluid Dynamics
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作者 HUANG Junlin LI Jiao +3 位作者 LI Yan GONG Pihai GUAN Changtao XIA Xu 《Journal of Ocean University of China》 CAS CSCD 2024年第2期317-327,共11页
On the basis of computational fluid dynamics,the flow field characteristics of multi-trophic artificial reefs,including the flow field distribution features of a single reef under three different velocities and the ef... On the basis of computational fluid dynamics,the flow field characteristics of multi-trophic artificial reefs,including the flow field distribution features of a single reef under three different velocities and the effect of spacing between reefs on flow scale and the flow state,were analyzed.Results indicate upwelling,slow flow,and eddy around a single reef.Maximum velocity,height,and volume of upwelling in front of a single reef were positively correlated with inflow velocity.The length and volume of slow flow increased with the increase in inflow velocity.Eddies were present both inside and backward,and vorticity was positively correlated with inflow velocity.Space between reefs had a minor influence on the maximum velocity and height of upwelling.With the increase in space from 0.5 L to 1.5 L(L is the reef lehgth),the length of slow flow in the front and back of the combined reefs increased slightly.When the space was 2.0 L,the length of the slow flow decreased.In four different spaces,eddies were present inside and at the back of each reef.The maximum vorticity was negatively correlated with space from 0.5 L to 1.5 L,but under 2.0 L space,the maximum vorticity was close to the vorticity of a single reef under the same inflow velocity. 展开更多
关键词 artificial reef flow field characteristics computation fluid dynamics multi-trophic structure
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基于CFD/CSD耦合算法的机翼颤振分析 被引量:15
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作者 曾宪昂 徐敏 +1 位作者 安效民 陈士橹 《西北工业大学学报》 EI CAS CSCD 北大核心 2008年第1期79-82,共4页
用计算流体力学/计算结构力学(CFD/CSD)耦合算法对标准气动弹性模型AGARD445.6机翼作了颤振分析,主要研究机翼的跨音速颤振求解问题。采用常体积转换法(CVT)进行流体与结构之间的数据交换并运用松耦合方法对气动弹性方程进行时... 用计算流体力学/计算结构力学(CFD/CSD)耦合算法对标准气动弹性模型AGARD445.6机翼作了颤振分析,主要研究机翼的跨音速颤振求解问题。采用常体积转换法(CVT)进行流体与结构之间的数据交换并运用松耦合方法对气动弹性方程进行时域推进仿真。计算机翼在Ma=0.499~1.072的颤振边界,并将计算结果同偶极子格网法(DLM)的计算结果与试验结果比较,结果显示CFD/CSD耦合计算结果较DLM计算结果更接近于试验值,尤其是在非线性强的跨音速区域。可见,CFD/CSD耦合计算比DLM具有很大的优越性。 展开更多
关键词 计算流体力学/计算结构力学(CFD/csd)耦合算法 AGARD 445.6机翼 颤振分析 常体积转换(CVT) 偶极子格网法(DLM)
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IMPROVED ALGORITHM FOR CFD/CSD COUPLED SYSTEM DESIGN AND CALCULATION 被引量:4
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作者 安效民 徐敏 陈士橹 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2010年第2期162-169,共8页
The data information transfer and time marching strategies between computational fluid dynamics (CFD) and computational structural dynamics (CSD) play crucial roles on the aeroelastic analysis in a time domain. An... The data information transfer and time marching strategies between computational fluid dynamics (CFD) and computational structural dynamics (CSD) play crucial roles on the aeroelastic analysis in a time domain. An improved CFD/CSD coupled system is designed, including an interpolation method and an improved loosely coupled algorithm. The interpolation method based on boundary element method (BEM) is developed to transfer aerodynamic loads and structural displacements between CFD and CSD grid systems, it can be universally used in fluid structural interaction solution by keeping energy conservation. The improved loosely coupled algo-rithm is designed, thus it improves the computational accuracy and efficiency. The new interface is performed on the two-dimensional (2-D) extrapolation and the aeroelastie response of AGARD445.6 wing. Results show that the improved interface has a superior accuracy. 展开更多
关键词 computational fluid dynamics boundary element method data transfer fluid and structure interaction aeroelasticity
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一种新型规整填料的传质及压降特性
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作者 秦涛 朱慧铭 《化学工业与工程》 北大核心 2025年第1期148-156,共9页
采用非介入的表面反应气相传质实验来测定规整填料表面的传质系数分布,在此基础上建立了波纹规整填料的流动及传质CFD模型。采用该CFD模型与正交试验开发了一种新型填料,其通道的形状区别于传统波纹规整填料的三角形,采用具有更大水力... 采用非介入的表面反应气相传质实验来测定规整填料表面的传质系数分布,在此基础上建立了波纹规整填料的流动及传质CFD模型。采用该CFD模型与正交试验开发了一种新型填料,其通道的形状区别于传统波纹规整填料的三角形,采用具有更大水力半径的四边形。CFD模拟结果表明经过几何结构优化后的新型填料在保持良好传质性能的同时,压降减小22.22%~23.03%。 展开更多
关键词 规整填料 计算流体力学 传质 压降
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一种基于流固耦合并考虑主动脉残余应力与超弹性的血压预测方法
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作者 张跃凡 郭宝磊 +2 位作者 孙翠茹 戴向晨 刘浩飞 《医用生物力学》 北大核心 2025年第1期49-57,共9页
目的 考虑主动脉壁超弹性和残余应力,提出一种基于血管顺应性预测主动脉血压的数值模拟方法。方法 基于闭合张开角的三维残余应力求解方法和超弹性本构理论,实现理想化双层厚壁主动脉模型压力-半径关系的解析求解。计算血管顺应性,并将... 目的 考虑主动脉壁超弹性和残余应力,提出一种基于血管顺应性预测主动脉血压的数值模拟方法。方法 基于闭合张开角的三维残余应力求解方法和超弹性本构理论,实现理想化双层厚壁主动脉模型压力-半径关系的解析求解。计算血管顺应性,并将压力-半径关系施加于流体域的移动壁面边界进行数值模拟计算,获得血管顺应性与脉压的关系。对比有无残余应力、是否考虑血管超弹性以及不同年龄对血管顺应性和主动脉血压的影响。考虑覆膜支架的作用:将支架区域视为刚性壁,模拟不同支架数量、支架释放位置对主动脉血压的影响。结果 考虑残余应力的血管顺应性高于无残余应力;相应的,考虑残余应力时主动脉脉压略低于无残余应力的情况。与超弹性模型相比,线弹性模型的主动脉脉压预测值偏大。不同年龄人群的血管顺应性表现为40~49岁>60~69岁>70岁以上;相应的,主动脉脉压表现为40~49岁<60~69岁<70岁以上。当植入长度为60 mm的覆膜支架时,随着支架数量增加,主动脉脉压持续增高,即支架植入范围越广,脉压越高。支架植入位置越靠近近心端,脉压越高。结论 提出的数值方法可正确预测主动脉血压,能够为主动脉支架设计和手术方案优化提供理论和技术支撑。 展开更多
关键词 计算流体动力学 流固耦合 移动边界 残余应力 顺应性
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基于神经网络和CFD的规整填料塔流体力学计算
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作者 李邢 曾爱武 《化学工业与工程》 北大核心 2025年第1期130-137,共8页
提出一种结合计算流体力学(CFD)和BP(Back Propagation)人工神经网络的多尺度计算方法,计算规整填料塔上的流体力学行为。根据最小特征单元实际尺寸建立小尺度三维CFD模型,研究了填料塔单气相和气液两相流体流动分布方式,弥补了在研究... 提出一种结合计算流体力学(CFD)和BP(Back Propagation)人工神经网络的多尺度计算方法,计算规整填料塔上的流体力学行为。根据最小特征单元实际尺寸建立小尺度三维CFD模型,研究了填料塔单气相和气液两相流体流动分布方式,弥补了在研究塔壁单元和层间转换单元产生压降方面的缺陷。建立了结点网络模型,计算全塔的流体分布等宏观信息。以CFD计算收集到的数据集训练了2组神经网络模型,分别以结点流量为输入计算干塔压降和持液量。计算结果与相关实验数据比较,干塔压降计算模型的平均相对偏差为8.63%,最大相对偏差为14.02%。持液量计算模型的平均相对偏差约为9.63%,最大相对偏差为13.97%。这表明该训练好的人工神经网络模型具备较好的预测能力,结果较为可信。 展开更多
关键词 规整填料 计算流体力学 BP神经网络 干塔压降 持液量
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水下拖曳系统弱流固耦合方法
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作者 王志博 黄帅瑜 +2 位作者 顾津菁 赵淼 姚惠之 《哈尔滨工程大学学报》 北大核心 2025年第3期410-417,共8页
为了解决拖曳缆系统采用常系数估算流体载荷造成缆索动力学响应模拟不准确的问题,本文将有限差分法与雷诺平均方程相结合,依托初始缆形采用网格生成器脚本功能生成计算域,设计拓扑源面,并填充结构化网格,以高质量黏性网格为基础,采用计... 为了解决拖曳缆系统采用常系数估算流体载荷造成缆索动力学响应模拟不准确的问题,本文将有限差分法与雷诺平均方程相结合,依托初始缆形采用网格生成器脚本功能生成计算域,设计拓扑源面,并填充结构化网格,以高质量黏性网格为基础,采用计算流体力学求解器结合湍流模型计算得到沿缆分布的水动力,采用插值方法将水动力载荷插值到离散缆段几何中心处,利用有限差分方法更新拖曳系统动力学计算结果获得新的缆形,循环迭代地建立了单向耦合的弱流固耦合方法。计算结果表明:该耦合方法具有良好的收敛性和稳定性,计算结果与实测缆形更加吻合。该方法也获得了拖曳缆的绕流场流动分离特点和流体载荷沿着缆的分布的一般规律,证实了沿缆的阻力系数取固定的经验系数会产生较大误差。 展开更多
关键词 拖曳系统 流固耦合 计算流体力学 有限差分方法 雷诺平均方程 插值 粘性网格 阻力
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基于CFD-CSM双向耦合的柔性水平板防波堤水动力特性研究
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作者 刘佳安 王心玉 +2 位作者 贾奥 姜胜超 林旻 《水道港口》 2025年第1期40-50,共11页
基于计算流体动力学(CFD)与计算固体力学(CSM)的分区双向耦合模拟方法,发展了波浪与柔性水平板防波堤相互作用的耦合分析模型,采用文献中的试验数据验证流固耦合模型的合理性,利用数值算例分析柔性水平板防波堤的水动力特性。研究表明:... 基于计算流体动力学(CFD)与计算固体力学(CSM)的分区双向耦合模拟方法,发展了波浪与柔性水平板防波堤相互作用的耦合分析模型,采用文献中的试验数据验证流固耦合模型的合理性,利用数值算例分析柔性水平板防波堤的水动力特性。研究表明:柔性水平板防波堤和刚性水平板防波堤的反射系数均随着相对板宽(B/L=0.26~0.62)的增加先增大后减小,透射系数则反之;柔性水平板防波堤的掩护性能随着弹性模量(E=20~100 MPa)的降低先增强后减弱,通过选取合理的设计参数,柔性水平板防波堤相较于刚性水平板防波堤具有更好的掩护性能;在文中计算条件下,当E=80 MPa时柔性水平板防波堤达到最佳的掩护性能。 展开更多
关键词 流固耦合 数值模拟 柔性水平板防波堤 水动力特性 计算流体力学 VOF
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一种新型涡轮导叶高温热管数值模拟
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作者 卢笑天 刘克函 史波 《海军航空大学学报》 2025年第2期252-258,277,共8页
为了提高热管型涡轮导叶的热防护效能,根据实际叶片及涵道尺寸对涡轮导叶热管建立了1∶1数值仿真模型,并通过扭转叶片角度、改变截面形状等手段对冷凝段结构进行优化。采用源项添加法分别对优化前后的两种涡轮导叶进行数值模拟,得到热... 为了提高热管型涡轮导叶的热防护效能,根据实际叶片及涵道尺寸对涡轮导叶热管建立了1∶1数值仿真模型,并通过扭转叶片角度、改变截面形状等手段对冷凝段结构进行优化。采用源项添加法分别对优化前后的两种涡轮导叶进行数值模拟,得到热管内部以及涵道气体的物理场并加以比较。研究结果表明,优化后的结构在降低外涵道压降的同时,提高了冷凝段换热面积。外涵道进出口压降仅为优化前的48%,优化后冷凝段换热面积扩大了10倍,叶片热端平均温度比优化前降低了239K,热防护效果有所提升,所提出的优化结构相比于传统结构对发动机性能的影响更小。 展开更多
关键词 高温热管 涡轮导叶 计算流体力学 减阻结构设计
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灯桩在风浪环境中水动力特性及其优化方案
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作者 岳志伟 范海燕 +2 位作者 袁靖周 林一鹏 王晨旭 《科学技术与工程》 北大核心 2025年第6期2585-2594,共10页
为分析灯桩在风浪环境下的水动力特性,并根据其应力集中点给出优化方案。通过VOF(volume of fluid)方法求解了灯桩表面在风浪中的压力分布,以及压力造成形变。结果表明:灯桩应力集中位置在灯桩中间支柱的根部,最大位移位置在灯桩顶端;... 为分析灯桩在风浪环境下的水动力特性,并根据其应力集中点给出优化方案。通过VOF(volume of fluid)方法求解了灯桩表面在风浪中的压力分布,以及压力造成形变。结果表明:灯桩应力集中位置在灯桩中间支柱的根部,最大位移位置在灯桩顶端;据此研究了两种优化方案,斜柱支撑方案应力集中在支柱的顶部,比优化前减小32.2%,最大变形量在中部底座处,比优化前减小40.1%;端部加强方案应力集中在底部,比优化前减小0.08%,最大变形发生在灯桩顶部,与优化前相比减小了23.1%。可见支柱斜撑的灯桩结构可以有效地减小结构受到的应力强度,分散了灯桩其他部分受到的风浪的冲击,是更好的结构优化方案。 展开更多
关键词 灯桩 群柱结构 计算流体力学 水动力
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纵荡运动下逆旋双转子风力发电机气动性能研究
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作者 万远琛 王凯 +2 位作者 刘丹 肖忠铭 吴晓笛 《哈尔滨工程大学学报》 北大核心 2025年第1期38-45,共8页
本文以NREL 5 MW风机组成5 MW-5 MW逆旋双转子风机,采用自定义谐波函数赋予风机纵荡运动,基于SST k-ω湍流模型对纵荡运动下5 MW-5 MW逆旋双转子风机进行数值模拟,对不同幅值和周期纵荡下双转子风机的尾迹流动特征,推力和转矩的时变、... 本文以NREL 5 MW风机组成5 MW-5 MW逆旋双转子风机,采用自定义谐波函数赋予风机纵荡运动,基于SST k-ω湍流模型对纵荡运动下5 MW-5 MW逆旋双转子风机进行数值模拟,对不同幅值和周期纵荡下双转子风机的尾迹流动特征,推力和转矩的时变、统计结果进行研究。结果表明:双转子风机尾涡间隙距离随纵荡运动而变化,双转子风机2个转子叶尖涡在尾涡间隙减小时发生融合并脱落;双转子风机的转矩与推力产生与纵荡周期相一致的波动,其中双转子风机顺风转子转矩、推力对纵荡运动更为敏感。本文通过开展纵荡运动下逆旋双转子风机气动性能变化研究工作,探究平台运动对逆旋双转子风机气动特性的影响规律,为漂浮式双转子风机设计制造提供技术指导。 展开更多
关键词 逆旋双转子风机 纵荡运动 尾迹特征 气动特性 5MW风机 计算流体力学 k-ω湍流模型 三维涡结构
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叶片表面仿生微结构对离心泵减阻性能的影响
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作者 李沁阳 胡亚辉 +2 位作者 陈坚 姜浩 宁图增 《机电工程》 北大核心 2025年第4期789-797,共9页
在离心泵叶片表面布置仿生微结构,会对离心泵涡结构及其减阻性能产生影响。针对这一问题,以XBD8.0—15G型离心泵作为研究对象,对鲨鱼皮肤表面的复杂结构进行了分析,设计了一种具有减阻效应的微结构,并将其布置在离心泵叶片表面,通过数... 在离心泵叶片表面布置仿生微结构,会对离心泵涡结构及其减阻性能产生影响。针对这一问题,以XBD8.0—15G型离心泵作为研究对象,对鲨鱼皮肤表面的复杂结构进行了分析,设计了一种具有减阻效应的微结构,并将其布置在离心泵叶片表面,通过数值模拟的方法,对离心泵的内流特性进行了分析,探究了叶片表面仿生微结构对涡结构的改变以及减阻性能的影响。首先,利用计算流体动力学(CFD)仿真软件对模型进行了数值模拟;然后,构建了以Q准则为基础的涡结构识别方法,观察了微结构处涡结构的演变;最后,对模型进行了后处理,计算得到了壁面剪切应力、减阻率以及效率变化率,并研究了微结构对离心泵内部流动的影响情况。研究结果表明:在标准工况下,Q值均大于0,采用微结构将导致原本低强度、大尺度的涡结构被破坏,形成尺度较小、数量较多的高强度涡结构,且仿生微结构导致壁面剪切应力降低了30 Pa~170 Pa;在0.8Q_d条件下,较光滑叶片相比,仿生微结构叶片离心泵的减阻率为3.71%,效率变化率提升了1.45%,并在1.2Q_d时,二者均达到最大值,分别为4.54%和1.69%。叶片表面仿生微结构可以大幅提升离心泵的减阻性能,提高其能效。 展开更多
关键词 叶片式泵 计算流体动力学 离心泵涡结构 Q准则 叶片壁面剪切应力 减阻效果 内流场特性
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