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Numerical investigation on the engraving process of a pyrotechnic actuator with an improved two-phase flow model of interior ballistic
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作者 Yue Li Cong Liu +1 位作者 Cheng Cheng Genghui Jiang 《Defence Technology(防务技术)》 2025年第4期120-132,共13页
By combining with an improved model on engraving process,a two-phase flow interior ballistic model has been proposed to accurately predict the flow and energy conversion behaviors of pyrotechnic actuators.Using comput... By combining with an improved model on engraving process,a two-phase flow interior ballistic model has been proposed to accurately predict the flow and energy conversion behaviors of pyrotechnic actuators.Using computational fluid dynamics(CFD),the two-phase flow and piston engraving characteristics of a pyrotechnic actuator are investigated.Initially,the current model was utilized to examine the intricate,multi-dimensional flow,and energy conversion characteristics of the propellant grains and combustion gas within the pyrotechnic actuator chamber.It was discovered that the combustion gas on the wall's constant transition from potential to kinetic energy,along with the combined effect of the propellant motion,are what create the pressure oscillation within the chamber.Additionally,a numerical analysis was conducted to determine the impact of various parameters on the pressure oscillation and piston motion,including pyrotechnic charge,pyrotechnic particle size,and chamber structural dimension.The findings show that decreasing the pyrotechnic charge will lower the terminal velocity,while increasing and decreasing the pyrotechnic particle size will reduce the pressure oscillation in the chamber.The pyrotechnic particle size has minimal bearing on the terminal velocity.The results of this investigation offer a trustworthy forecasting instrument for comprehending and creating pyrotechnic actuator designs. 展开更多
关键词 Pyrotechnic actuator Engraving process two-phase flow Pressure oscillation
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Identifying the enhancement mechanism of Al/MoO_(3) reactive multilayered films on the ignition ability of semiconductor bridge using a one-dimensional gas-solid two-phase flow model
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作者 Jianbing Xu Yuxuan Zhou +3 位作者 Yun Shen Yueting Wang Yinghua Ye Ruiqi Shen 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第3期168-179,共12页
Energetic Semiconductor bridge(ESCB)based on reactive multilayered films(RMFs)has a promising application in the miniature and intelligence of initiator and pyrotechnics device.Understanding the ignition enhancement m... Energetic Semiconductor bridge(ESCB)based on reactive multilayered films(RMFs)has a promising application in the miniature and intelligence of initiator and pyrotechnics device.Understanding the ignition enhancement mechanism of RMFs on semiconductor bridge(SCB)during the ignition process is crucial for the engineering and practical application of advanced initiator and pyrotechnics devices.In this study,a one-dimensional(1D)gas-solid two-phase flow ignition model was established to study the ignition process of ESCB to charge particles based on the reactivity of Al/MoO_(3) RMFs.In order to fully consider the coupled exothermic between the RMFs and the SCB plasma during the ignition process,the heat release of chemical reaction in RMFs was used as an internal heat source in this model.It is found that the exothermal reaction in RMFs improved the ignition performance of SCB.In the process of plasma rapid condensation with heat release,the product of RMFs enhanced the heat transfer process between the gas phase and the solid charge particle,which accelerated the expansion of hot plasma,and heated the solid charge particle as well as gas phase region with low temperature.In addition,it made up for pressure loss in the gas phase.During the plasma dissipation process,the exothermal chemical reaction in RMFs acted as the main heating source to heat the charge particle,making the surface temperature of the charge particle,gas pressure,and gas temperature rise continuously.This result may yield significant advantages in providing a universal ignition model for miniaturized ignition devices. 展开更多
关键词 Ignition enhancement mechanism 1D gas-solid two-phase flow Al/MoO_(3)reactive multilayered films Semiconductor bridge Miniaturized ignition device
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Numerical simulation of two-phase flow in fractured porous media using streamline simulation and IMPES methods and comparing results with a commercial software 被引量:7
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作者 Mahmoud Ahmadpour Majid Siavashi Mohammad Hossein Doranehgard 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第10期2630-2637,共8页
Streamline simulation is developed to simulate waterflooding in fractured reservoirs. Conventional reservoir simulation methods for fluid flow simulation in large and complex reservoirs are very costly and time consum... Streamline simulation is developed to simulate waterflooding in fractured reservoirs. Conventional reservoir simulation methods for fluid flow simulation in large and complex reservoirs are very costly and time consuming. In streamline method, transport equations are solved on one-dimensional streamlines to reduce the computation time with less memory for simulation. First, pressure equation is solved on an Eulerian grid and streamlines are traced. Defining the "time of flight", saturation equations are mapped and solved on streamlines. Finally, the results are mapped back on Eulerian grid and the process is repeated until the simulation end time. The waterflooding process is considered in a fractured reservoir using the dual porosity model. Afterwards, a computational code is developed to solve the same problem by the IMPES method and the results of streamline simulation are compared to those of the IMPES and a commercial software. Finally, the accuracy and efficiency of streamline simulator for simulation of two-phase flow in fractured reservoirs has been proved. 展开更多
关键词 two-phase flow porous media fractured reservoirs streamline simulation dual porosity implicit pressure-explicit saturation
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Numerical simulation and analysis of solid-liquid two-phase threedimensional unsteady flow in centrifugal slurry pump 被引量:17
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作者 吴波 汪西力 +1 位作者 LIU Hui 徐海良 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第8期3008-3016,共9页
Based on RNG k-ε turbulence model and sliding grid technique, solid-liquid two-phase three-dimensional(3-D) unsteady turbulence of full passage in slurry pump was simulated by means of Fluent software. The effects of... Based on RNG k-ε turbulence model and sliding grid technique, solid-liquid two-phase three-dimensional(3-D) unsteady turbulence of full passage in slurry pump was simulated by means of Fluent software. The effects of unsteady flow characteristics on solid-liquid two-phase flow and pump performance were researched under design condition. The results show that clocking effect has a significant influence on the flow in pump, and the fluctuation of flow velocity and pressure is obvious, particularly near the volute tongue, at the position of small sections of volute and within diffuser. Clocking effect has a more influence on liquid-phase than on solid-phase, and the wake-jet structure of relative velocity of solid-phase is less obvious than liquid-phase near the volute tongue and the impeller passage outlet. The fluctuation of relative velocity of solid-phase flow is 7.6% smaller than liquid-phase flow at the impeller outlet on circular path. Head and radial forces of the impeller are 8.1% and 85.7% of fluctuation, respectively. The results provide a theoretical basis for further research for turbulence, improving efficient, reducing the hydraulic losses and wear. Finally, field tests were carried out to verify the operation and wear of slurry pump. 展开更多
关键词 slurry pump solid-liquid two-phase flow unsteady flow 3-D full passage numerical simulation
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Flow pattern and pressure drop of gas-liquid two-phase swirl flow in a horizontal pipe 被引量:6
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作者 RAO Yong-chao DING Bo-yang +2 位作者 WANG Shu-li WANG Zi-wen ZHOU Shi-dong 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第9期2528-2542,共15页
The gas-liquid two-phase swirl flow can increase the gas-liquid two-phase contact area and enhance the heat and mass transfer efficiency between gas and liquid.The swirl flow has important practical application value ... The gas-liquid two-phase swirl flow can increase the gas-liquid two-phase contact area and enhance the heat and mass transfer efficiency between gas and liquid.The swirl flow has important practical application value for promoting gas hydrate formation and ensuring the flow safe of natural gas hydrate slurry.The experimental section was made of plexiglass pipe and the experimental medium was air and water.The flow pattern of the gas-liquid two-phase swirl flow in the horizontal pipe was divided,according to a high-definition camera and the overall characteristics of the gas-liquid interface.The flow pattern map of the gas-liquid two-phase swirl flow in a horizontal pipe was studied.The influence of the flow velocity and vane parameters on pressure drop was investigated.Two types of gas-liquid two-phase swirl flow pressure drop models was established.The homogeneous-phase and split-phase pressure drop models have good prediction on swirl bubble flow,swirl dispersed flow,swirl annular flow and swirl stratified flow,and the predictive error band is not more than 20%. 展开更多
关键词 swirl flow two-phase flow flow pattern swirl number pressure drop
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Oil–water two-phase flow pattern analysis with ERT based measurement and multivariate maximum Lyapunov exponent 被引量:9
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作者 谭超 王娜娜 董峰 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第1期240-248,共9页
Oil–water two-phase flow patterns in a horizontal pipe are analyzed with a 16-electrode electrical resistance tomography(ERT) system. The measurement data of the ERT are treated as a multivariate time-series, thus th... Oil–water two-phase flow patterns in a horizontal pipe are analyzed with a 16-electrode electrical resistance tomography(ERT) system. The measurement data of the ERT are treated as a multivariate time-series, thus the information extracted from each electrode represents the local phase distribution and fraction change at that location. The multivariate maximum Lyapunov exponent(MMLE) is extracted from the 16-dimension time-series to demonstrate the change of flow pattern versus the superficial velocity ratio of oil to water. The correlation dimension of the multivariate time-series is further introduced to jointly characterize and finally separate the flow patterns with MMLE. The change of flow patterns with superficial oil velocity at different water superficial velocities is studied with MMLE and correlation dimension, respectively, and the flow pattern transition can also be characterized with these two features. The proposed MMLE and correlation dimension map could effectively separate the flow patterns, thus is an effective tool for flow pattern identification and transition analysis. 展开更多
关键词 oil-water two-phase flow flow patterns electrical resistance tomography (ERT) multivariate time-series multivariate maximum Lyapunov exponent correlation dimension
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Reconstructing bubble profiles from gas-liquid two-phase flow data using agglomerative hierarchical clustering method 被引量:2
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作者 WU Dong-ling SONG Yan-po +1 位作者 PENG Xiao-qi GAO Dong-bo 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第8期2056-2067,共12页
The knowledge of bubble profiles in gas-liquid two-phase flows is crucial for analyzing the kinetic processes such as heat and mass transfer, and this knowledge is contained in field data obtained by surface-resolved ... The knowledge of bubble profiles in gas-liquid two-phase flows is crucial for analyzing the kinetic processes such as heat and mass transfer, and this knowledge is contained in field data obtained by surface-resolved computational fluid dynamics (CFD) simulations. To obtain this information, an efficient bubble profile reconstruction method based on an improved agglomerative hierarchical clustering (AHC) algorithm is proposed in this paper. The reconstruction method is featured by the implementations of a binary space division preprocessing, which aims to reduce the computational complexity, an adaptive linkage criterion, which guarantees the applicability of the AHC algorithm when dealing with datasets involving either non-uniform or distorted grids, and a stepwise execution strategy, which enables the separation of attached bubbles. To illustrate and verify this method, it was applied to dealing with 3 datasets, 2 of them with pre-specified spherical bubbles and the other obtained by a surface-resolved CFD simulation. Application results indicate that the proposed method is effective even when the data include some non-uniform and distortion. 展开更多
关键词 bubble profile reconstruction gas-liquid two-phase flow clustering method surface-resolved computational fluid dynamics (CFD) distorted bubble shape
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Equations of two-phase flow in spray chamber
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作者 李新禹 张志红 +1 位作者 金星 徐杰 《Journal of Central South University》 SCIE EI CAS 2009年第S1期140-144,共5页
The downstream water-air heat and moisture transfer system in a moving coordinate was studied. The relationship between the diameter of the misted droplets and the spray pressure was determined. Based on the theory of... The downstream water-air heat and moisture transfer system in a moving coordinate was studied. The relationship between the diameter of the misted droplets and the spray pressure was determined. Based on the theory of the relative velocity,the two-phase flow mode of the spray chamber and the efficiency equation for heat and moisture exchange were established. Corrections were carried out for the efficiency equation with spray pressure of 157 kPa. The results show that the pressure plays an important part in determining the efficiency of heat and moisture exchange. When the spray pressure is less than 157 kPa,better coincidence is noticed between the theoretical analysis and the test results with the error less than 6%. Greater error will be resulted in the case when the spray pressure is beyond 157 kPa. After the correction treatment,the coincidence between the theoretical and the experimental results is greatly improved. 展开更多
关键词 SPRAY CHAMBER two-phase flow heat and MOISTURE EXCHANGE
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Three-dimensional CFD simulation of inlet structure flow in pumping station based on Eulerian solid- liquid two-phase flow model
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作者 Mi Zihao Zhou Daqing Mao Yuanting 《排灌机械工程学报》 EI CSCD 北大核心 2015年第6期494-498,共5页
Sediment deposition in the pumping station has a huge negative impact on unit operation.The three-dimensional CFD method has been used to simulate inlet structure flow in pumping station based on the Eulerian solid- l... Sediment deposition in the pumping station has a huge negative impact on unit operation.The three-dimensional CFD method has been used to simulate inlet structure flow in pumping station based on the Eulerian solid- liquid two-phase flow model. The numerical results of the preliminary scheme show that sediment deposition occurs in the forebay of pumping station because of poor flow pattern therein. In order to improve hydraulic configuration in the forebay,one modified measure reconstructs water diversion weir shape,and another measure sets a water retaining sill in the approach channel. The simulation results of the modified scheme prove that back flow in the forebay has been eliminated and the sediment deposition region has also been reduced. 展开更多
关键词 pumping station FOREBAY sediment deposition Eulerian two-phase flow model
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Numerical study on two-phase flow in horizontal pipe
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作者 WU Yuting XU Kewei KIM Hyoungbum 《排灌机械工程学报》 EI CSCD 北大核心 2021年第4期379-385,425,共8页
Two-phase flow in a horizontal pipe was investigated by using numerical and experimental visualization methods.A horizontal pipe was built for qualitative and quantitative flow visualization.The length of horizontal p... Two-phase flow in a horizontal pipe was investigated by using numerical and experimental visualization methods.A horizontal pipe was built for qualitative and quantitative flow visualization.The length of horizontal pipe flow system was 9.5 m and the inner diameter was 51 mm.High-speed video method was used for the qualitative visualization and PIV method was applied for the quantitative visua-lization.The same geometry model was used for the numerical study.Three flow regimes including stratified flow,elongated bubble and slug flow field were generated and visualized by using numerical and experimental methods.The results show that the numerical simulation results are qualitatively si-milar to that of the experimental results.In addition,more quantitative results can be analyzed by numerical method.Development and decay process of slug flow was investigated,showing that the decay of slug heavily depends on the magnitude of nose velocity and its lasting time.It can also be found that the liquid superficial velocity plays a significant role in affecting the slug frequency.When keeping the gas superficial velocity constant,the frequency will increase with the liquid superficial velocity. 展开更多
关键词 two-phase flow CFD PIV slug flow slug frequency
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Computational fluid dynamics simulation of gas-liquid two phases flow in 320 m^3 air-blowing mechanical flotation cell using different turbulence models 被引量:4
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作者 沈政昌 陈建华 +2 位作者 张谌虎 廖幸锦 李玉琼 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第6期2385-2392,共8页
According to the recently developed single-trough floating machine with the world's largest volume(inflatable mechanical agitation flotation machine with volume of 320 m3) in China, the gas-fluid two-phase flow in... According to the recently developed single-trough floating machine with the world's largest volume(inflatable mechanical agitation flotation machine with volume of 320 m3) in China, the gas-fluid two-phase flow in flotation cell was simulated using computational fluid dynamics method. It is shown that hexahedral mesh scheme is more suitable for the complex structure of the flotation cell than tetrahedral mesh scheme, and a mesh quality ranging from 0.7 to 1.0 is obtained. Comparative studies of the standard k-ε, k-ω and realizable k-ε turbulence models were carried out. It is indicated that the standard k-ε turbulence model could give a result relatively close to the practice and the liquid phase flow field is well characterized. In addition, two obvious recirculation zones are formed in the mixing zones, and the pressure on the rotor and stator is well characterized. Furthermore, the simulation results using improved standard k-ε turbulence model show that surface tension coefficient of 0.072, drag model of Grace and coefficient of 4, and lift coefficient of 0.001 can be achieved. The research results suggest that gas-fluid two-phase flow in large flotation cell can be well simulated using computational fluid dynamics method. 展开更多
关键词 computational fluid dynamics (CFD) simulation flotation cell gas-liquid two-phases flow
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含水致密砂岩气藏气井全生命周期动态规律与差异化管理技术对策 被引量:2
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作者 程敏华 范继武 +5 位作者 杨富 郑腊年 石晓敏 王鑫 江乾锋 刘鹏程 《天然气工业》 北大核心 2025年第1期117-128,共12页
鄂尔多斯盆地苏里格气田是典型的致密砂岩气田,经过20余年的勘探开发,2024年天然气产气量已超300×10^(8) m^(3)。但该气田西区投产气井大多存在不同程度产水现象,且水气比变化范围大,严重制约了该区天然气的长期稳产和高效开发。为... 鄂尔多斯盆地苏里格气田是典型的致密砂岩气田,经过20余年的勘探开发,2024年天然气产气量已超300×10^(8) m^(3)。但该气田西区投产气井大多存在不同程度产水现象,且水气比变化范围大,严重制约了该区天然气的长期稳产和高效开发。为此,从动、静态结合角度出发,开展了该区生产井气水两相渗流特征、变水气比两相产能方程、产水气井特征与生产规律、积液时机判别、生产制度优化等气井全生命周期动态规律和差异化管理技术对策研究。研究结果表明:(1)基于考虑水气比变化、非达西渗流及应力敏感性特征,建立的两相产能新方程能够准确描述致密气藏产水气井全生命周期产能变化规律;(2)气井产出地层水类型分为构造低部位水、层间滞留水、透镜体水等3类,前两者是气井产水主要来源,结合生产动态和水气比变化规律,可将气井产水类型分为高产水型(水气比大于1.0 m^(3)/10^(4)m^(3),主要为构造低部位水)、中产水型(水气比0.5~1.0 m^(3)/10^(4) m^(3),主要为层间滞留水)、低产水型(水气比小于0.5 m^(3)/10^(4) m^(3),主要为层间滞留水);(3)建立了不同类型的产水气井配产图版,提出了含水致密砂岩气藏气井配产优化流程;(4)基于不同类型产水气井临界携液流量评价模型,准确辨识了气井发生积液的时机,优选了排水采气措施,制订产水气井差异化管理技术对策,有效提高了产水气井的产能发挥率。结论认为,形成的含水致密砂岩气藏全生命周期差异化管理技术对策可提高产水气井累计产量,能够解决苏里格气田西区当前开发效果差和采收率低的问题,为气田持续稳产提供了技术支撑,且对同类型气藏开发具有重要参考和借鉴意义。 展开更多
关键词 鄂尔多斯盆地 苏里格气田西区 含水致密砂岩 气水两相渗流 临界携液流量 排水采气
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振动混合器内上浮颗粒悬浮特性数值模拟 被引量:1
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作者 李良超 赵国柱 +2 位作者 马国鹭 张磊 徐斌 《排灌机械工程学报》 北大核心 2025年第2期147-154,162,共9页
对振动混合器内颗粒悬浮特性的深入了解,可为该类混合器的结构设计和优化提供依据.借助计算流体力学技术(computational fluid dynamics,CFD),应用欧拉-欧拉双流体模型对上浮颗粒在振动混合器内的悬浮特性进行了数值模拟研究.振动盘的... 对振动混合器内颗粒悬浮特性的深入了解,可为该类混合器的结构设计和优化提供依据.借助计算流体力学技术(computational fluid dynamics,CFD),应用欧拉-欧拉双流体模型对上浮颗粒在振动混合器内的悬浮特性进行了数值模拟研究.振动盘的往复运动采用动网格技术进行处理.通过模拟得到了混合器内的流场和颗粒的动态悬浮特性,并将模拟结果与文献试验数据对比验证模型准确性.结果表明,振动混合器内流场的典型特征为在振动盘的上方和下方各形成一循环涡流,涡流强弱随振动盘往复运动周期变化,但涡流方向保持不变,颗粒在混合器内悬浮分别经历均匀性快速变好、略微变好和动态稳定悬浮3个阶段.提高频率和增大振幅均可以使颗粒更快达到稳定悬浮,且悬浮的均匀性更好,但增大振幅会使悬浮的均匀波动性有所变大.增大固含量可使颗粒悬浮的均匀性增加,波动性减小. 展开更多
关键词 振动混合器 上浮颗粒 固液悬浮 两相流动 数值模拟
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基于CFD-DEM的斜面平台对下降管内混合颗粒流动的影响 被引量:1
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作者 孙雪峰 张德俐 +5 位作者 刘浩 高豪磊 马瑞 王芳 金德禄 易维明 《农业工程学报》 北大核心 2025年第5期240-249,共10页
为改善生物质热解过程中混合颗粒在下降管热解反应器内部流动时生物质颗粒扰动较小、混合不充分的问题,该研究探讨了管内斜面平台对陶瓷球和生物质颗粒流动的影响。以斜面平台的位置、倾斜角度和高度为试验因素,以生物质颗粒管内离散度... 为改善生物质热解过程中混合颗粒在下降管热解反应器内部流动时生物质颗粒扰动较小、混合不充分的问题,该研究探讨了管内斜面平台对陶瓷球和生物质颗粒流动的影响。以斜面平台的位置、倾斜角度和高度为试验因素,以生物质颗粒管内离散度为评判标准,通过计算流体力学与离散元法(computational fluid dynamics-discrete element method,CFD-DEM)耦合仿真对混合颗粒流动过程进行模拟,并利用粒子图像测速技术进行了验证。结果表明,斜面平台高度对生物质颗粒离散度影响最大,其次为位置和角度,最佳工作参数为斜面平台底部距下降管拐角处245 mm,高度为27 mm,角度为149°,相较于无斜面平台工况,生物质颗粒离散度提高了50.24%,进而提升了混合颗粒的混合程度。斜面平台的引入使得下降管内生物质颗粒和陶瓷球的轴向平均速度分别降低了14.38%和11.43%,平均停留时间分别升高了20.00%和5.75%,改变了无斜面平台时混合颗粒的向心流动特性,表现为抛物线形流动特性,打破了上疏下密的分布状态,使混合颗粒偏析降低,混合更为均匀。该研究结果能够为下降管式生物质热解反应器的设计与优化提供一定支持,有利于生物质快速热解技术的发展。 展开更多
关键词 生物质 下降管 计算机仿真 CFD-DEM 气固两相流
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大客车轮胎磨损颗粒物散射及其对呼吸健康的风险研究 被引量:1
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作者 黄海波 杜龙飞 +3 位作者 任睿 王巍嵩 贺华波 施恒 《安全与环境学报》 北大核心 2025年第2期723-731,共9页
随着新能源汽车的发展以及日益严格的排放法规,轮胎磨损颗粒物(Tire Wear Particles, TWPs)的排放已经超过尾气排放,成为道路交通“非尾气”排放的一个重要来源。研究建立了大客车-花纹轮胎-轮胎磨损颗粒物的气固两相流模型,并探究了不... 随着新能源汽车的发展以及日益严格的排放法规,轮胎磨损颗粒物(Tire Wear Particles, TWPs)的排放已经超过尾气排放,成为道路交通“非尾气”排放的一个重要来源。研究建立了大客车-花纹轮胎-轮胎磨损颗粒物的气固两相流模型,并探究了不同车速下大客车轮胎磨损颗粒物的空间质量浓度分布特性。结果显示:TWPs的散射轨迹受车辆外部流场和车尾涡旋的影响,不同粒径的磨损颗粒物在散射过程中呈现出明显分层现象;在纵向上,磨损颗粒物扩散高度呈先升高后保持稳定的现象,且扩散高度随车速差异逐渐稳定在3.45~3.76 m;在横向上,最大扩散宽度稳定在6.0 m左右;颗粒物质量浓度沿车侧方向遵循近似的正态分布,在车速为20 km/h,距车辆左右对称面宽度为4.3 m、距地面高度为0.4 m处,达到峰值85.1μg/m^(3),在距离对称面宽度为4.0~5.0 m,高度为0~1.0 m范围是呼吸健康的潜在危险区域。研究获取了大客车轮胎磨损颗粒物的空间扩散分布特性和质量浓度分布规律及对生物体呼吸健康的影响,为大客车颗粒物造成的环境问题研究及其捕集策略的制定提供了科学参考。 展开更多
关键词 环境工程学 “非尾气”排放 气固两相流模型 轮胎磨损颗粒物 质量浓度分布 呼吸健康
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基于CFD的生物质热解气溶胶微尺度生成模拟与演变机制研究
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作者 胡安福 夏倩 +5 位作者 蒋健 吴晋禄 金一骁 王骏 周国俊 王凯歌 《化学研究与应用》 北大核心 2025年第4期997-1004,共8页
生物质快速热解过程中挥发性物质的蒸发及气溶胶喷溅的研究,对开发高质量生物油制备技术具有重要意义。本文基于计算流体力学软件FLUENT,构建悬浮气泡和附着气泡物理模型,针对附着气泡沸腾问题修正Lee相变模型,模拟生物质热解过程中气... 生物质快速热解过程中挥发性物质的蒸发及气溶胶喷溅的研究,对开发高质量生物油制备技术具有重要意义。本文基于计算流体力学软件FLUENT,构建悬浮气泡和附着气泡物理模型,针对附着气泡沸腾问题修正Lee相变模型,模拟生物质热解过程中气泡破裂和气溶胶颗粒的喷溅过程,并对物性参数与加热温度进行调控,分析各因素对气溶胶生成的影响规律。结果表明:对于悬浮气泡,随着表面张力系数、气泡直径和液相密度的增大,气溶胶颗粒喷溅速度增大,而随着液相粘性系数的增大,气溶胶颗粒喷溅速度减小;对于附着气泡,在一定范围内壁面温度越高气泡生长越快,但气溶胶颗粒喷溅速度越小。随着气泡半径增大,悬浮气泡和附着气泡破裂产生气溶胶颗粒的喷溅速度呈不同变化趋势,主要原因是附着气泡破裂后,壁面粘性作用抑制了气泡闭合过程,导致闭合速度降低。 展开更多
关键词 生物质 气溶胶颗粒 两相流模拟 相变
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突缩突扩圆管内离散油滴运动行为及变形特性
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作者 邢雷 周晓庆 +3 位作者 蒋明虎 赵立新 李新亚 陈德海 《化工进展》 北大核心 2025年第1期27-37,共11页
离散油滴在变截面管道内的运动及变形特性是揭示两相流动机理的核心问题之一。以突缩突扩圆管内的离散油滴为研究对象,采用数值模拟与高速摄像实验相结合的方法,针对不同入口雷诺数条件下突缩突扩圆管内的油滴运动行为及变形特性开展研... 离散油滴在变截面管道内的运动及变形特性是揭示两相流动机理的核心问题之一。以突缩突扩圆管内的离散油滴为研究对象,采用数值模拟与高速摄像实验相结合的方法,针对不同入口雷诺数条件下突缩突扩圆管内的油滴运动行为及变形特性开展研究。结果表明:在突缩突扩圆管内,当入口雷诺数相同时,随着离散油滴粒径的增大,管内入口端及突缩区压力增大,突扩区压力回升加快,且油滴最大变形量在细管段。当油滴粒径不变时,随着入口雷诺数的增大,管内离散油滴变形量越大,油滴在管道内初始破碎位置越靠近突扩双肩且破碎程度越剧烈。当Re=6.3×10^(3)时,油滴的变形量达到最大值0.84,初始破碎位置在距离突扩双肩33.2mm处。得到了不同入口雷诺数及油滴粒径条件下突缩突扩圆管内离散油滴的运动、变形及破碎规律,为地面原油集输管网中油水两相流混输强化提供了理论参考。 展开更多
关键词 数值模拟 油滴 两相流 流动 运动行为 变形特性
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基于两相流理论的水下法兰连接器透镜垫强度及寿命
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作者 秦建国 孙志 +3 位作者 弓海霞 崔朝霞 巩勇智 郭思佳 《机械设计》 北大核心 2025年第S1期55-60,共6页
在水下油气生产系统中,针对水下采油井口的突然开启和关闭、油气输送的非连续性造成管道内油气输送速度剧烈变化,从而在管道中形成压力波动,对水下法兰连接器透镜垫造成压力冲击的问题,通过分层流模型确定气液参数,借助Fluent中的VOF模... 在水下油气生产系统中,针对水下采油井口的突然开启和关闭、油气输送的非连续性造成管道内油气输送速度剧烈变化,从而在管道中形成压力波动,对水下法兰连接器透镜垫造成压力冲击的问题,通过分层流模型确定气液参数,借助Fluent中的VOF模型对水下法兰连接器部分内的气液两相流介质进行模拟,选用RNG k-ε湍流模型对水下法兰连接器部分油气流动参数进行分析计算及模拟求解,分析了不同输送速度连接器部分内油气对外压力的分布。结果显示,最大压力冲击的增量与油气输送速度平方的增量近似成正比关系,在考虑油气输送速度对水下法兰连接器透镜垫内壁最大压力冲击后,透镜垫最大等效应力增大9.36%,疲劳寿命下降51.33%。 展开更多
关键词 水下法兰连接器 气液两相流 VOF模型 流体压力 疲劳寿命
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固液两相流扬矿泵叶轮时序效应
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作者 谈明高 蒋耀涵 +3 位作者 吴贤芳 刘厚林 马皓晨 吴登昊 《中国有色金属学报》 北大核心 2025年第3期1017-1029,共13页
为研究叶轮时序角度对扬矿泵内固液两相流动的影响,对两级扬矿泵全流场采用CFD-DEM法进行数值计算,并设计了0°、30°和60°三组叶轮时序方案,分析了叶轮时序效应对扬矿泵外特性、颗粒运动特性、颗粒速度分布、颗粒碰撞特... 为研究叶轮时序角度对扬矿泵内固液两相流动的影响,对两级扬矿泵全流场采用CFD-DEM法进行数值计算,并设计了0°、30°和60°三组叶轮时序方案,分析了叶轮时序效应对扬矿泵外特性、颗粒运动特性、颗粒速度分布、颗粒碰撞特性、磨损分布以及内流机理。结果表明:随着时序角度的增加,扬矿泵外特性最大增幅为1.7%,颗粒平均速度最大增幅为1.91%,颗粒速度的提升增强了颗粒的流动性,从而减缓了泵内颗粒的堵塞情况;时序角度的增加能够减少泵内颗粒的碰撞次数,总碰撞次数最大降幅为5.01%;改变时序角度,泵内总磨损最大降幅为6.45%,且叶轮叶片、导叶叶片和导叶前盖板的磨损量最大降幅分别为12.15%、8.08%和8.06%。通过综合分析不同时序角度下扬矿泵的内流性能,发现时序效应能够优化次级叶轮内颗粒体积分数分布,可降低部分流域的高颗粒体积分数区域面积,从而改善泵内流动条件。 展开更多
关键词 扬矿泵 固液两相流 时序效应 叶轮
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气驱水与水驱气流体微观分布特征研究
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作者 汪周华 张鸿宇 +2 位作者 张娟 廖浩奇 黄仕林 《油气地质与采收率》 北大核心 2025年第2期163-169,共7页
气水相渗测试是描述有水气藏储层渗流过程的常用方法,但不同测试方法和不同类型岩心的相渗测试结果均存在较大差异。为了加深对气水渗流过程中的流体微观分布特征及渗流机理的认识,以四川盆地YB气田为研究对象,利用核磁共振技术定量描... 气水相渗测试是描述有水气藏储层渗流过程的常用方法,但不同测试方法和不同类型岩心的相渗测试结果均存在较大差异。为了加深对气水渗流过程中的流体微观分布特征及渗流机理的认识,以四川盆地YB气田为研究对象,利用核磁共振技术定量描述气水两相在相渗测试前后的微观分布,并结合前人利用可视化模型得到的气水两相渗流机理对分布结果进行解释。结果表明:2种测试方法相比,水驱气与气驱水过程中微米级(>1μm)孔隙驱替程度基本一致,但水驱气过程中亚微米级(0.1~1μm)与纳米级(<0.1μm)孔隙驱替程度相对较高,而气驱水过程中亚微米级与纳米级孔隙内水相大部分未被动用。裂缝型与孔隙型岩心相比,裂缝型岩心微米级孔隙驱替程度相对较低,而亚微米级与纳米级孔隙驱替程度则相对较高。2种测试方法下流体微观分布的差异主要是由于孔隙内部毛管力的作用形式不同,而2类岩心存在差异的原因是其主要渗流通道不同。 展开更多
关键词 气水两相渗流 核磁共振 微观分布特征 渗流机理 相渗曲线
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