期刊文献+
共找到356篇文章
< 1 2 18 >
每页显示 20 50 100
Study on Temperature Field Distribution of Hydraulic Motor Pump and Heat Dissipation Simulation of Flow-Solid-Heat Coupled with Spoiler Cooling Device
1
作者 Geqiang Li Kai Wang +3 位作者 Juntao Liu Zhengyang Han Shuai Wang Donglin Li 《Frontiers in Heat and Mass Transfer》 2026年第1期120-139,共20页
To explore the distribution law of the temperature field in the motor pump and the influence of the fanshaped DC channel with spoiler in the pump housing on its heat dissipation performance.This study takes the arc-ge... To explore the distribution law of the temperature field in the motor pump and the influence of the fanshaped DC channel with spoiler in the pump housing on its heat dissipation performance.This study takes the arc-gear type hydraulicmotor pump as the research object.In COMSOL,a coupled heat transfer simulationmodel of themotor pump’s fluid-solid coupling is established,and the internal temperature field characteristics are analyzed.To improve the heat dissipation effect of the motor pump,it is proposed to arrange spoiler in the fan-shaped DC channel of the pump housing to enhance heat dissipation.Three types of spoilers,namely,wing-shaped,inclined rectangle-shaped,and wave-shaped,are designed.The simulation results show that when the motor pump operates under rated conditions,due to the poor heat dissipation environment inside the motor pump,the high-temperature areas of the motor pump are concentrated in the rotor and permanent magnet parts.After arranging the spoiler,the turbulent kinetic energy and vorticity in the fan-shaped DC channel of the pump housing are significantly enhanced.All three spoiler structures can reduce the maximum temperature of each component of the motor.According to the comprehensive performance evaluation criterion(PEC),the inclined rectangle-shaped structure has the best comprehensive heat transfer performance(PEC=1.114),while the wave-shaped structure has higher heat transfer efficiency but greater pressure loss.The wing-shaped structure has relatively limited enhancement effect on heat dissipation.This study systematically quantifies the influence of different spoiler structures on heat dissipation performance and flowresistance characteristics,providing a solution for enhancing the heat dissipation of the motor pump. 展开更多
关键词 Motor pump fluid-solid coupling heat dissipation performance spoiler enhancing the heat dissipation
在线阅读 下载PDF
Numerical Analysis of the Aerodynamic Performance of an Ahmed Body Fitted with Spoilers of Different Opening Areas
2
作者 Haichao Zhou Wei Zhang +1 位作者 Tinghui Huang Haoran Li 《Fluid Dynamics & Materials Processing》 2025年第5期1113-1131,共19页
The configuration of a spoiler plays a crucial role in the aerodynamics of a vehicle.In particular,investigating the impact of spoiler design on aerodynamic performance is essential for effectively reducing drag and o... The configuration of a spoiler plays a crucial role in the aerodynamics of a vehicle.In particular,investigating the impact of spoiler design on aerodynamic performance is essential for effectively reducing drag and optimizing efficiency.This study focuses on the 35°Ahmed body as the test model and examines six different spoiler types mounted on its slant surface.Using the Lattice Boltzmann Method(LBM)in XFlow and the Large Eddy Simulation(LES)technique,the aerodynamic effects of these spoilers were analyzed.The numerical approach was validated against published experimental data.Results indicate that aerodynamic drag is strongly influenced by the spoiler’s opening area,with certain configurations achieving a drag reduction as high as 6.5%.This configuration effectively suppresses airflow separation in the wake of the Ahmed body,reducing the formation of separation bubbles on the slant surface and enhancing pressure recovery on both the slant and base regions.The observed pressure recovery is attributed to the reduction in vortex loop breadth and length. 展开更多
关键词 Ahmed model aerodynamics behavior spoiler configuration flow characteristic lattice Boltzmann method
在线阅读 下载PDF
Performance Optimization of a U-Shaped Liquid Cooling Plate:A Synergistic Study of FlowGuide Plate and Spoiler Columns
3
作者 Jing Hu Xiaoyu Zhang 《Frontiers in Heat and Mass Transfer》 2025年第3期957-974,共18页
As a core power device in strategic industries such as new energy power generation and electric vehicles,the thermal reliability of IGBT modules directly determines the performance and lifetime of the whole system.A s... As a core power device in strategic industries such as new energy power generation and electric vehicles,the thermal reliability of IGBT modules directly determines the performance and lifetime of the whole system.A synergistic optimization structure of“inlet plate-channel spoiler columns”is proposed for the local hot spot problem during the operation of Insulated Gate Bipolar Transistor(IGBT),combined with the inherent defect of uneven flow distribution of the traditional U-type liquid cooling plate in this paper.The influences of the shape,height(H),and spacing from the spoiler column(b)of the plate on the comprehensive heat dissipation performance of the liquid cooling plate are analyzed at different Reynolds numbers,A dual heat source strategy is introduced and the effect of the optimized structure is evaluated by the temperature inhomogeneity coefficient(Φ).The results show that the optimum effect is achieved when the shape of the plate is square,H=4.5 mm,b=2 mm,and u=0.05 m/s,at which the HTPE=1.09 and Φ are reduced by 40%.In contrast,the maximum temperatures of the IGBT and the FWD(Free Wheeling Diode)chips are reduced by 8.7 and 8.4 K,respectively,and ΔP rises by only 1.58 Pa while keeping ΔT not significantly increased.This optimized configuration achieves a significant reduction in the critical chip temperature and optimization of the flow field uniformity with almost no change in the system flow resistance.It breaks through the limitation of single structure optimization of the traditional liquid cooling plate and effectively solves the problem of uneven flow in the U-shaped cooling plate,which provides a new solution with important engineering value for the thermal management of IGBT modules. 展开更多
关键词 U-shaped liquid cooling plate flow guide plate spoiler columns optimization
在线阅读 下载PDF
强潮海湾Spoiler海底管道冲刷机理分析 被引量:4
4
作者 刘光生 杨元平 +1 位作者 吴修广 李君 《海洋学研究》 CSCD 北大核心 2016年第2期53-59,共7页
本文基于历年检测资料统计分析了杭州湾海底输油管道裸露埋深状态变化规律,结合水文地形测量资料、辅以数学模型手段,从Spoiler自埋设计、杭州湾水流特性、管道路由海床演变特性以及人类活动等多因素探索了杭州湾海底管道裸露埋深状态... 本文基于历年检测资料统计分析了杭州湾海底输油管道裸露埋深状态变化规律,结合水文地形测量资料、辅以数学模型手段,从Spoiler自埋设计、杭州湾水流特性、管道路由海床演变特性以及人类活动等多因素探索了杭州湾海底管道裸露埋深状态变化的原因。研究结果表明:杭州湾管道80%以上处于埋深状态,局部管段长期裸露,裸露管段主要位于北岸深槽和庵东边滩滩坡区域;管道冲刷与管道路由海床演变特性、水流与管道夹角以及Spoiler自埋设计的发挥密不可分;杭州湾南岸围垦工程的实施与该区域管道裸露、掩埋状态密切相关。 展开更多
关键词 杭州湾 海底管线 spoiler 海床演变 人类活动
在线阅读 下载PDF
Spoiler自埋技术特点及其在杭州湾海底管道运行情况分析 被引量:12
5
作者 杨元平 吴修广 +2 位作者 刘光生 谢东风 张芝永 《海洋学研究》 CSCD 北大核心 2016年第3期57-61,共5页
海底管道阻流板(Spoiler)自沉埋技术是一种新型管道自埋技术,为深入了解其作用机制及其效果,本文通过分析安装有阻流板的杭州湾海底管道历年检测资料,结合管道附近海域海床、潮流动力特性,深入探讨了阻流板装置在实际工程中的运行效果,... 海底管道阻流板(Spoiler)自沉埋技术是一种新型管道自埋技术,为深入了解其作用机制及其效果,本文通过分析安装有阻流板的杭州湾海底管道历年检测资料,结合管道附近海域海床、潮流动力特性,深入探讨了阻流板装置在实际工程中的运行效果,分析了其作用机制及其适用条件。研究发现安装阻流板装置的杭州湾海底管道在往复潮流作用下逐渐埋入海床,其埋入段长度由2005年的50%增加到2013年的80%以上,而且平均埋入深度超过2.6m,自埋效果较好;而在管道路由与海流平行段或管道敷设于抗冲刷强海床上时,阻流板作用不能有效发挥,管道仍然呈现裸露状态。 展开更多
关键词 海底管道 阻流板 自埋 杭州湾
在线阅读 下载PDF
Experimental Study of Hydrodynamic and Self-Buried Behavior of Submarine Pipeline with Perpendicular Spoilers 被引量:5
6
作者 FAN Hong-xia WANG Jian-zhong +2 位作者 ZHU Li-jun WANG Nai-ru CHEN Huai 《China Ocean Engineering》 SCIE EI CSCD 2021年第2期250-261,共12页
The spoiler is a kind of device to disturb current and promote burying.At present,all submarine pipeline spoilers at home and abroad are parallel spoilers,that is,the plane of the spoiler is parallel to the vertical p... The spoiler is a kind of device to disturb current and promote burying.At present,all submarine pipeline spoilers at home and abroad are parallel spoilers,that is,the plane of the spoiler is parallel to the vertical plane of the pipeline axis.According to the results of indoor experiments,when the pipeline with the forward spoiler is installed perpendicular to the direction of water flow,the spoiler will accelerate the seabed erosion and cause the pipeline to endure downward pressure,which will eventually cause the pipeline self-buried to form a protection.However,when the pipeline direction is consistent with the flow direction,the self-buried behavior and protective effect is vanished.By aiming at the defect that the forward spoiler cannot be self-buried when the direction of the pipeline and the flow are basically parallel,the spoiler burying aid device perpendicular to the pipeline axis has been innovatively developed,and the hydrodynamic changes and sediment erosion characteristics near the pipeline after the installation of the device were studied based on the experiment.Results reveal that although the perpendicular spoiler cannot generate downforce,it can greatly increase the turbulent kinetic energy of the flow and the rate of sediment erosion.The larger the angle between the pipeline axis and the spoiler plane is,the larger the increase in turbulent energy will be.The increase in turbulent energy near the bed surface can reach up about 70%when the angle is 90°,while serious sediment erosion mainly occurs along both sides of the pipeline with a distance of about 2−4 times the pipe diameter.In the future,we can further explore the influence of the perpendicular spoiler size and installation position on the pipeline downforce and the effect of burying promotion.At the same time,field tests on the perpendicular spoiler burying aid device currently developed will conduct to observe the actual effect of perpendicular spoiler promoting pipeline scouring and burying,and improve submarine pipeline safety protection technology. 展开更多
关键词 submarine pipeline spoiler self-burial turbulent kinetic energy sediment erosion
在线阅读 下载PDF
Numerical study of the influence of spoiler deflection on high-lift configuration
7
作者 Wenhu Wang Peiqing Liu 《Theoretical & Applied Mechanics Letters》 CAS CSCD 2017年第3期159-163,共5页
This paper numerically studies the influence of the downward spoiler deflection on the boundary layer flow of a high-lift two-element airfoil consisting of a droop nose, a main wing, a downward deflecting spoiler and ... This paper numerically studies the influence of the downward spoiler deflection on the boundary layer flow of a high-lift two-element airfoil consisting of a droop nose, a main wing, a downward deflecting spoiler and a single slotted flap. Both of the boundary layer of the upper surface of the spoiler and the confluent boundary layer of the upper surface of the flap become thicker, as the downward spoiler deflection increases. Compared to the attached flow at the angle of attack of 10°, the flow of the upper surface of the spoiler becomes separated at the angle of attack of 16° when the spoiler deflection is large enough, which corresponds to the boundary layer flow reversal in velocity profiles. 展开更多
关键词 HIGH-LIFT spoiler Boundary layer Numerical simulation
在线阅读 下载PDF
STUDY ON FORCED SHEAR FLOW BY A OSCILLATING SPOILER
8
作者 Yin Xieyuan Ouyang Liangbiao (Univ.of Sci.& Tech.of China) 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 1989年第3期205-215,共11页
In the present paper,numerical solution of the two-dimensional unsteady Navier-Stokes equations is used to study the forced shear flow induced by a spoiler's periodical up and down oscillation on a flat plate.The ... In the present paper,numerical solution of the two-dimensional unsteady Navier-Stokes equations is used to study the forced shear flow induced by a spoiler's periodical up and down oscillation on a flat plate.The paper studies the evolution of growing,shedding,merging and decaying of vortices due to the spoiler's oscillation,particularly the dependence of the forced shear flow on the re- duced frequency.Results show that the reduced frequency is a key factor in controlling the growing and the shedding of vortices in the shear layer.The instantaneous streamlines and the equi-vorticity con- tours,as well as the surface pressure distributions,have also been investigated.Numerical results agree well with corresponding experimental ones.The study is helpful for understanding the physical mecha- nism of shear flow control. 展开更多
关键词 shear flow unsteady separated flow spoiler
在线阅读 下载PDF
Experimental Investigation of Spoiler Deployment on Wing Stall
9
作者 Scott Douglas Lindsay Paul Walsh 《Open Journal of Fluid Dynamics》 2018年第3期308-320,共13页
Upper surface wing flaps, known as spoiler, are typically used to reduce lift and increase drag at touchdown;however spoilers have been shown to increase lift and reduce drag at near-stall conditions. The purpose of t... Upper surface wing flaps, known as spoiler, are typically used to reduce lift and increase drag at touchdown;however spoilers have been shown to increase lift and reduce drag at near-stall conditions. The purpose of this experiment was to determine the spoilers’ impact on lift, drag, moment, and aerodynamic efficiency of a NACA 2412 airfoil at angles of attack (α) from &#8722;8 ° to 32 °. The experiment was conducted in the Ryerson Low-Speed Wind Tunnel (closed-circuit, 1 m × 1 m test section) at Re=783761, Ma=0.136. The lift coefficient (Cl), drag coefficient (Cd), moment coefficient about the quarter-chord () were captured with a changing spoiler deflection angle (δ) and spoiler length (b in percent chord). It was found that deflecting the spoiler resulted in an increase maximum lift of up to 2.497%. It was found that deflecting the spoiler by 8° was optimal for the b=10 cases. Any larger deflection reduced the lift gain, and a deflection of 25° caused the maximum lift to be 2.786% less than the clean configuration. In the b=15 case, δ=15° was optimal (1.760% maximum lift coefficient increase). The b=10 cases increased maximum lift coefficient between 0.35% and 2.10% higher than the b=15 cases. The source of the lift gain at high angles of attack is apparent in an analysis of the airfoil pressure distribution. The spoiler increased the suction peak on the airfoil surface upstream of the spoiler, and increased the pressure downstream. However the suction increase upstream is larger than the pressure increase downstream, resulting in a net increase in lift. The spoiler increased the stall angle 37.658% to 87.658% higher than the clean configuration. Stall angle increased with both δ and with an increased spoiler length. The spoiler airfoil produced less drag than the clean configuration at high angles of attack. The combination of the increased lift, and reduced drag resulted in an increase in aerodynamic efficiency at high angle of attack. 展开更多
关键词 Aircraft STALL WIND-TUNNEL spoilers Low-Speed AERODYNAMICS
暂未订购
NUMERICAL SOLUTION OF NAVIER-STOKES EQUATION OF UNSTEADY SEPARATED FLOWS DUE TO A SPOILER'S OSCILLATION
10
作者 Ouyang Liangbiao and Yin XieyuanUniversity of Science and Technology of China 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 1990年第3期151-158,共8页
The finite difference method (FDM) is applied in the present paper to solve the unsteady NHS equations for incompressible fluids. ADI and SLOR methods are served for the vorticity equation and the Poisson equation for... The finite difference method (FDM) is applied in the present paper to solve the unsteady NHS equations for incompressible fluids. ADI and SLOR methods are served for the vorticity equation and the Poisson equation for ψ respectively. The upwind scheme is used for the convective terms. The moving boundary conditions are specially treated, and the effects of outlet conditions on the flow field are abo examined. Numerical results obtained show that the spoiler's oscillation induces forming, growing and shedding of the vortices. The shedding frequency of vortices is equal to that of the spoiler's oscillation. The forced unsteady separated flows under the present investigation depend mainly on the reduced frequency. At low reduced frequency, the vortices shed from the spoiler interact weakly with each other, and move downstream at an almost uniform speed of 038 V∞. At high reduced frequency, the interaction between the adjacent vortices strengthens. They close up to and rotate around each other, and eventually, merge into one vortex. 展开更多
关键词 FLOW NUMERICAL SOLUTION OF NAVIER-STOKES EQUATION OF UNSTEADY SEPARATED FLOWS DUE TO A spoiler’S OSCILLATION
在线阅读 下载PDF
Spoiler Shield:屏蔽剧透
11
作者 Matt Villano 《创业邦》 2014年第7期90-90,共1页
你的朋友喜欢被剧透吗?Josh Solt和Matthew Loew是HBO电视剧《权力的游戏》的忠实观众。他们希望解决剧透问题。2013年6月,当"红色婚礼"一集播出时,两人正好需要坐飞机跨越全美,错过了这一集。但是当他们飞抵洛杉矶时,发现Facebook和... 你的朋友喜欢被剧透吗?Josh Solt和Matthew Loew是HBO电视剧《权力的游戏》的忠实观众。他们希望解决剧透问题。2013年6月,当"红色婚礼"一集播出时,两人正好需要坐飞机跨越全美,错过了这一集。但是当他们飞抵洛杉矶时,发现Facebook和Twitter上全是关于这一集故事的内容讨论。 展开更多
关键词 社交媒体 MATTHEW 电视节目 spoiler SHIELD 天使投资人 谷歌 视频消息 全美 手机连接 感情破裂
在线阅读 下载PDF
海底刚性管道周围海床局部冲刷研究进展
12
作者 王芳宇 杨彦 +3 位作者 罗梦岩 季一鸣 刘思源 张继生 《水道港口》 2026年第1期131-141,共11页
海底管道作为连接陆地和海洋的重要运输通道,凭借其耐受高压低温、抗腐蚀性强等特性,在能源运输和经济发展等方面发挥着重要作用。然而,在海洋水动力长期作用下,管道周围海床易产生局部冲刷,导致结构失效。一旦管道结构受损会造成巨大... 海底管道作为连接陆地和海洋的重要运输通道,凭借其耐受高压低温、抗腐蚀性强等特性,在能源运输和经济发展等方面发挥着重要作用。然而,在海洋水动力长期作用下,管道周围海床易产生局部冲刷,导致结构失效。一旦管道结构受损会造成巨大经济损失及危害社会稳定性。因此,理清海底刚性管道周围海床局部冲刷机制并有效保护其在长期水动力作用下不受损坏是目前亟待解决的问题。文章综述了波浪、水流及波流耦合作用下管道-海床相互作用研究,基于物理模型、数值模拟、理论分析及野外观测等多种手段,探讨了管道周围海床局部冲刷起动机理,纵向及横向的冲刷发展及时间尺度,及其冲刷防护等多个方面。通过对这类关键主题的深入探讨,为海底管道的安全设计与维护提供重要理论支撑,有效保障能源运输的连续性和海洋经济的稳定发展。 展开更多
关键词 刚性管道 冲刷机理 横向拓展 纵向拓展 湍流模型 冲刷防护 扰流板
在线阅读 下载PDF
采用带扰流板蛇形通道制备Al-20%Si合金的组织和力学性能
13
作者 郭嘉仪 王珺 +6 位作者 董旭 姚春宇 马欣也 郭芯汝 张伟涛 李强 王东 《热加工工艺》 北大核心 2026年第3期150-155,共6页
采用带扰流板蛇形通道的半固态浇注法制备Al-20%Si合金,研究浇注温度对Al-20%Si合金微观组织和力学性能的影响,借助有限元软件研究合金浆料在浇注通道内的流动状态。结果表明,Al-20%Si合金的微观组织由初生Si和Al-Si共晶体两相组成,通... 采用带扰流板蛇形通道的半固态浇注法制备Al-20%Si合金,研究浇注温度对Al-20%Si合金微观组织和力学性能的影响,借助有限元软件研究合金浆料在浇注通道内的流动状态。结果表明,Al-20%Si合金的微观组织由初生Si和Al-Si共晶体两相组成,通过带扰流板蛇形通道制备的Al-20%Si合金中初生Si晶粒的平均尺寸小于无扰流板中初生Si的平均尺寸。随着浇注温度从730℃降到700℃,Al-20%Si合金中初生Si晶粒的平均尺寸逐渐减小,合金的抗拉强度和断后伸长率逐渐增大。当浇注温度为700℃时,Al-20%Si合金中初生Si晶粒的平均等效直径为22.4μm,抗拉强度为314.2 MPa。在浇注过程中蛇形通道和扰流板对合金浆料产生双重搅拌效应,增加了合金中初生Si的形核数量,最终细化了Al-20%Si合金中的初生Si晶粒。 展开更多
关键词 AL-20%SI合金 扰流板蛇形通道 半固态浇注 初生SI 力学性能
原文传递
基于拓扑优化的类翼型扰流元件空气引射器性能分析
14
作者 刘华东 张雅 +1 位作者 郝琪 孙浩 《郑州大学学报(工学版)》 北大核心 2025年第2期104-110,共7页
针对传统空气引射器引射率较低的问题,采用拓扑优化方法对传统空气引射器进行了结构优化,并基于拓扑优化结果和减阻机理分析,提出了新型类翼型扰流元件空气引射器。利用数值模拟方法研究了新型空气引射器内部流场,分析了类翼型扰流元件... 针对传统空气引射器引射率较低的问题,采用拓扑优化方法对传统空气引射器进行了结构优化,并基于拓扑优化结果和减阻机理分析,提出了新型类翼型扰流元件空气引射器。利用数值模拟方法研究了新型空气引射器内部流场,分析了类翼型扰流元件高度和扰流元件与喷嘴喉部距离对引射器性能的影响。结果表明:扰流元件与引射器壁面形成二次喷嘴效应,工作流体流出喷嘴后会继续加速,压力进一步降低,与引射流体驱动压差增大,使引射率显著提升;引射率随类翼型扰流元件高度增大而增大,随着扰流元件与喷嘴喉部的距离增加,引射率先增大后减小;相比于传统引射器,新型空气引射器引射率可提高146%~224%;当类翼型扰流元件的高度为3.3 mm、扰流元件与喷嘴喉部最佳距离为0.8 mm时,引射率达到最大值2.07。 展开更多
关键词 类翼型扰流元件 拓扑优化 空气引射器 引射率 数值模拟
在线阅读 下载PDF
典型流线型箱梁扭转涡激气动力的简化涡模式与气动措施抑振机理 被引量:3
15
作者 胡传新 官绪龙 +1 位作者 赵林 葛耀君 《振动工程学报》 北大核心 2025年第2期302-309,共8页
以典型流线型闭口箱梁为研究对象,利用节段模型风洞试验,获取原始断面与优化断面(栏杆扶手抑流板断面和检修轨道导流板断面)涡振响应,并分析其典型风速下断面周围分布气动力矩贡献,结合简化涡和数值模拟方法,推演断面周围流场演变特征,... 以典型流线型闭口箱梁为研究对象,利用节段模型风洞试验,获取原始断面与优化断面(栏杆扶手抑流板断面和检修轨道导流板断面)涡振响应,并分析其典型风速下断面周围分布气动力矩贡献,结合简化涡和数值模拟方法,推演断面周围流场演变特征,揭示了流线型箱梁扭转涡振及气动措施抑振机理,为主梁扭转涡振及抑振机理分析提供了一种思路。研究表明:原始断面存在明显扭转涡振现象,其振幅达0.112°,增设检修轨道导流板后振幅降低35.7%,增设抑流板后涡振现象消失。原始断面和导流板断面涡振时,上表面分布气动力矩对涡激力矩贡献值远大于下表面,二者均由上表面大尺度前缘分离涡主导,分离涡漂移时长约为2.5个断面振动周期,对应2阶扭转简化涡模态。增设导流板后,断面上表面分布气动力矩对涡激力矩的贡献显著减小,旋涡漂移模式与断面振动之间的相位关系发生改变,断面周围旋涡作用强度减小,故涡振振幅降低。增设栏杆扶手抑流板后,上表面分布气动力矩对涡激力矩贡献值显著减小且其波浪式分布消失,上表面前缘大尺度分离涡的形成得到抑制,故断面涡振现象消失。 展开更多
关键词 桥梁工程 扭转涡振 简化涡方法 流线型闭口箱梁 抑流板 检修轨道导流板
在线阅读 下载PDF
考虑扰流装置的大跨柔性光伏阵列最大风推荷载及降载机理研究 被引量:2
16
作者 赵宏博 柯世堂 +3 位作者 李灏 张春伟 王文才 秦岩 《振动与冲击》 北大核心 2025年第15期50-59,共10页
大跨柔性光伏阵列在0°来流风向角下遭受的推力最大,此时极易发生结构强度破坏,现行规范仅规定了柔性光伏支架风荷载的取值准则,缺乏针对风荷载降载措施的系统研究。为进一步提高大跨柔性光伏阵列的抗风性能,创新性地设计并制作了&... 大跨柔性光伏阵列在0°来流风向角下遭受的推力最大,此时极易发生结构强度破坏,现行规范仅规定了柔性光伏支架风荷载的取值准则,缺乏针对风荷载降载措施的系统研究。为进一步提高大跨柔性光伏阵列的抗风性能,创新性地设计并制作了>型、<型、Γ型和L型四种来流扰流装置,开展了考虑/不考虑扰流装置的五种大跨柔性光伏阵列上、下表面同步测压风洞试验,对比分析了不同扰流装置对光伏阵列平均、脉动和极值风荷载及扭矩力的影响,使用主成分分析法评价了四种扰流装置的降载性能,结合CFD(computational fluid dynamics)数值方法探究了扰流装置的降载机理。结果表明:四种扰流装置均显著降低了0°最大推力下光伏阵列的平均风压系数、极值正压系数和扭矩系数,但对光伏阵列的脉动风压系数和极值负压系数影响微弱;四种扰流装置降载性能由强到弱依次为>型、<型、Γ型和L型,相应降载性能评价指标为4.133、4.022、2.388和1.746;来流在扰流装置处分离产生的连续低压区域和涡脱再附产生的局部低压区域分别是首排和后排光伏板大幅降载的主导因素。 展开更多
关键词 大跨柔性光伏阵列 扰流装置 0°来流 风荷载分布 降载机理
在线阅读 下载PDF
带扰流板结构的海上风电单桩基础受来流攻角的影响研究 被引量:1
17
作者 李会 邱旭 +2 位作者 闫姝 赵昊 马文冠 《太阳能学报》 北大核心 2025年第3期635-642,共8页
针对扰流板型海上风电单桩基础冲刷防护结构,在已开展的扰流板尺寸及数量对冲刷防护效果影响的研究基础上,进一步探究来流攻角对冲刷防护效果的影响。在实际工程中,海流的流动方向是不确定的。为此,基于数值模拟的研究手段,通过改变扰... 针对扰流板型海上风电单桩基础冲刷防护结构,在已开展的扰流板尺寸及数量对冲刷防护效果影响的研究基础上,进一步探究来流攻角对冲刷防护效果的影响。在实际工程中,海流的流动方向是不确定的。为此,基于数值模拟的研究手段,通过改变扰流板的安装角来模拟不同来流攻角,以0°和22.5°攻角下扰流肋数量为8的扰流板和0°和30°攻角下扰流肋数量为6的扰流板结构为研究对象,对其冲刷防护特性进行研究。分析扰流板结构在不同来流下马蹄涡强度和位置的变化特征,以及床面剪切应力的分布和相对保护面积的变化规律。研究发现,冲刷防护效果基本随着来流攻角的增加而减弱,且随扰流板长度或高度的增加,其角度变化带来的保护面积的差异也逐渐增加。总的来说,来流攻角为0°具有较好的冲刷防护效果。 展开更多
关键词 海上风电 攻角 圆柱绕流 扰流板 马蹄涡 剪切应力
原文传递
粒子图像测速技术优化设计盲端扰流器
18
作者 高金良 李坤仪 +6 位作者 王全 齐世华 田园 于景洋 刘仁涛 陈健勋 丁言琛 《哈尔滨工业大学学报》 北大核心 2025年第6期35-42,共8页
针对中国城镇供水管网中存在的盲端支管污染问题,提出安装扰流器的创新解决方案。通过粒子图像测速技术,系统研究扰流器对低雷诺数湍流中盲端支管内污染物扩散的影响及控制效果,并对其设计参数进行优化。结果表明:扰流器能够在盲端支管... 针对中国城镇供水管网中存在的盲端支管污染问题,提出安装扰流器的创新解决方案。通过粒子图像测速技术,系统研究扰流器对低雷诺数湍流中盲端支管内污染物扩散的影响及控制效果,并对其设计参数进行优化。结果表明:扰流器能够在盲端支管与干管交界处形成空腔结构,显著改变干管来流路径与流动模式,降低盲端支管内旋转强度,减弱掺混效果;扰流器的设计参数包括倾斜角度、高度和宽度,安装位置对控制效果具有显著影响;倾斜角度为30°、高度较大、宽度更大的扰流器以及安装在干管前缘的位置更能有效抑制污染物向干管扩散。本研究为供水管网水质保障与运营管理提供了新的思路和方法,对维护居民用水安全具有重要意义。 展开更多
关键词 供水管网 盲端 扰流器 粒子图像测速技术 水质改善
在线阅读 下载PDF
火焰筒散热板高密集扰流柱表面成形的激光电解复合加工研究
19
作者 肖丕庆 王登勇 +2 位作者 张媛媛 江正阳 张军 《电加工与模具》 北大核心 2025年第6期81-86,共6页
在常规掩膜电解加工过程中,侧壁溶解问题会导致扰流柱深径比难以满足加工要求。采用激光电解复合加工方法解决密集扰流柱加工难题,建立旋转掩膜电解加工扰流柱的成形仿真模型,开展激光电解复合加工扰流柱的成形仿真研究,并进行两种加工... 在常规掩膜电解加工过程中,侧壁溶解问题会导致扰流柱深径比难以满足加工要求。采用激光电解复合加工方法解决密集扰流柱加工难题,建立旋转掩膜电解加工扰流柱的成形仿真模型,开展激光电解复合加工扰流柱的成形仿真研究,并进行两种加工方法的实验验证。仿真结果表明:在旋转掩膜电解加工中,当扰流柱间隙小至1.2 mm、加工深度超过0.4 mm时,无法满足密集扰流柱加工需求;在激光电解复合加工中,当激光刻蚀深度为0.2~0.3 mm,扰流柱成形满足密集扰流柱加工需求。实验结果表明:扰流柱间隙仅为1.2 mm、激光刻蚀深度为0.2 mm时,可获得加工深度0.44 mm、直径0.63 mm的阵列密集扰流柱结构。 展开更多
关键词 激光刻蚀 电解加工 扰流柱结构 密集阵列特征
在线阅读 下载PDF
采用阻流器的近壁面海底管道绕流研究
20
作者 王杰 刘政沅 +2 位作者 张彬滨 宋朝 周波 《大连理工大学学报》 CAS 北大核心 2025年第1期89-96,共8页
为深入了解采用阻流器的海底管道自埋机制,基于Fluent软件,结合标准k-ε湍流模型,建立了高雷诺数下安装阻流器的近壁面海底管道绕流数值模型,研究了阻流器长度和间隙比对管道尾流与壁面边界层之间复杂的相互作用以及时空演化的影响.研... 为深入了解采用阻流器的海底管道自埋机制,基于Fluent软件,结合标准k-ε湍流模型,建立了高雷诺数下安装阻流器的近壁面海底管道绕流数值模型,研究了阻流器长度和间隙比对管道尾流与壁面边界层之间复杂的相互作用以及时空演化的影响.研究结果表明采用阻流器可以显著增大管道与壁面之间流速以及管道附近脉动速度,但当阻流器长度达到临界值时,管道尾部会形成稳态结构.随着间隙比的增大,尾流演化可以分为4个区域:稳态结构、两次诱导壁面涡、单次诱导壁面涡、卡门涡街.适当的间隙比有利于诱导壁面旋涡的产生,从而加快管道周围沉积物冲刷. 展开更多
关键词 阻流器 海底管道 壁面 圆柱绕流 湍流
在线阅读 下载PDF
上一页 1 2 18 下一页 到第
使用帮助 返回顶部