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CFD Modeling to Evaluate User Safety by Using Flame Retardants in Asphalt Road Pavements during Large Tunnel Fires
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作者 Ciro Caliendo Isidoro Russo Gianluca Genovese 《Computer Modeling in Engineering & Sciences》 2025年第7期693-715,共23页
Road pavements in tunnels are usually made of asphalt mixtures,which,unfortunately,are flammable materials.Hence,this type of pavement could release heat,and more specifically smoke,in the event of a tunnel fire,there... Road pavements in tunnels are usually made of asphalt mixtures,which,unfortunately,are flammable materials.Hence,this type of pavement could release heat,and more specifically smoke,in the event of a tunnel fire,thereby worsening the environmental conditions for human health.Extensive research has been conducted in recent years to enhance the fire reaction of traditional asphalt mixtures for the road pavements used in tunnels.The addition of the Flame Retardants(FRs)in conventional asphalt mixtures appears to be promising.Nevertheless,the potential effects of the FRs in terms of the reduction in consequences on tunnel users in the event of a large fire do not seem to have been sufficiently investigated by using fluid dynamics analysis as a computational tool.Given this gap of knowledge,this article aims to quantitatively evaluate whether the use of flame-retarded asphalt mixtures,as opposed to traditional ones without FRs,might mitigate the adverse effects on the safety of evacuees and fire brigade by performing numerical analyses in the case of a tunnel fire.To achieve this goal,3D Computational Fluid Dynamics(CFD)models,which were executed using the Fire Dynamics Simulator(FDS)tool,were established in the case of a major fire of a Heavy Goods Vehicle(HGV)characterized by a maximum Heat Release Rate(HRRmax)of 100 MW.The people evacuation process was also simulated,and the Evac tool was used.Compared to the traditional asphalt pavements without FRs,the simulation findings indicated that the addition of the FRs causes a reduction in CO and CO_(2)levels in the tunnel during the aforementioned fire,with a minor number of evacuees being exposed to the risk of incapacity to self-evacuate,as well as certain safety benefits for the operability of the firefighters entering the tunnel downstream of the fire when the tunnel is naturally ventilated. 展开更多
关键词 Asphalt pavement combustion flame retardants road tunnel fire cfd modeling user safety operability of fire brigade
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A CFD Model to Evaluate Near-Surface Oil Spill from a Broken Loading Pipe in Shallow Coastal Waters
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作者 Portia Felix Lee Leon +2 位作者 Derek Gay Stefano Salon Hazi Azamathulla 《Fluid Dynamics & Materials Processing》 EI 2024年第1期59-77,共19页
Oil spills continue to generate various issues and concerns regarding their effect and behavior in the marine environment,owing to the related potential for detrimental environmental,economic and social implications.I... Oil spills continue to generate various issues and concerns regarding their effect and behavior in the marine environment,owing to the related potential for detrimental environmental,economic and social implications.It is essential to have a solid understanding of the ways in which oil interacts with the water and the coastal ecosystems that are located nearby.This study proposes a simplified model for predicting the plume-like transport behavior of heavy Bunker C fuel oil discharging downward from an acutely-angled broken pipeline located on the water surface.The results show that the spill overall profile is articulated in three major flow areas.The first,is the source field,i.e.,a region near the origin of the initial jet,followed by the intermediate or transport field,namely,the region where the jet oil flow transitions into an underwater oil plume flow and starts to move horizontally,and finally,the far-field,where the oil re-surface and spreads onto the shore at a significant distance from the spill site.The behavior of the oil in the intermediate field is investigated using a simplified injection-type oil spill model capable of mimicking the undersea trapping and lateral migration of an oil plume originating from a negatively buoyant jet spill.A rectangular domain with proper boundary conditions is used to implement the model.The Projection approach is used to discretize a modified version of the Navier-Stokes equations in two dimensions.A benchmark fluid flow issue is used to verify the model and the results indicate a reasonable relationship between specific gravity and depth as well as agreement with the aerial data and a vertical temperature profile plot. 展开更多
关键词 cfd model Navier-Stokes equations projection method water surface oil spill shallow coastal waters
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Simulating Urban Flow and Dispersion in Beijing by Coupling a CFD Model with the WRF Model 被引量:13
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作者 缪育聪 刘树华 +3 位作者 陈笔澄 张碧辉 王姝 李书严 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2013年第6期1663-1678,共16页
The airflow and dispersion of a pollutant in a complex urban area of Beijing, China, were numerically examined by coupling a Computational Fluid Dynamics (CFD) model with a mesoscale weather model. The models used w... The airflow and dispersion of a pollutant in a complex urban area of Beijing, China, were numerically examined by coupling a Computational Fluid Dynamics (CFD) model with a mesoscale weather model. The models used were Open Source Field Operation and Manipulation (OpenFOAM) software package and Weather Research and Forecasting (WRF) model. OpenFOAM was firstly validated against wind-tunnel experiment data. Then, the WRF model was integrated for 42 h starting from 0800 LST 08 September 2009, and the coupled model was used to compute the flow fields at 1000 LST and 1400 LST 09 September 2009. During the WRF-simulated period, a high pressure system was dominant over the Beijing area. The WRF-simulated local circulations were characterized by mountain valley winds, which matched well with observations. Results from the coupled model simulation demonstrated that the airflows around actual buildings were quite different from the ambient wind on the boundary provided by the WRF model, and the pollutant dispersion pattern was complicated under the influence of buildings. A higher concentration level of the pollutant near the surface was found in both the step-down and step-up notches, but the reason for this higher level in each configurations was different: in the former, it was caused by weaker vertical flow, while in the latter it was caused by a downward-shifted vortex. Overall, the results of this study suggest that the coupled WRF-OpenFOAM model is an important tool that can be used for studying and predicting urban flow and dispersions in densely built-up areas. 展开更多
关键词 WRF model cfd model OPENFOAM dispersion.
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CFD Model of Dense Gas-solid Systems in Jetting Fluidized Beds 被引量:2
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作者 Kai Zhang Jiyu Zhang +1 位作者 Biiang Zhang John Yates 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2002年第2期117-120,共4页
A CFD code has been developed based on the conservation principles describing gas and solid flow in fluidized beds. This code is employed to simulate not only the spatiotemporal gas and solid phase velocities and v... A CFD code has been developed based on the conservation principles describing gas and solid flow in fluidized beds. This code is employed to simulate not only the spatiotemporal gas and solid phase velocities and voidage profiles in a two dimensional bed but also fluid dynamics in the jet region. The computational results show that gas flow direction is upward in the entire bed accompanied with random local circulations, whilst solid flow direction is upward at the center and downward near the wall. The radical reason of strong back mixing of solid particles and good transfer behavior between two phases is that the jet entrains solid particles. Numerical calculation indicates that gas velocity, solid velocity and pressure profile have a significant change when the voidage is 0 8. The simulated time averaged voidage profiles agree with the experimental results and simulated data reported by Gidaspow and Ettehadieh(1983). Therefore, CFD model can be regarded as a useful tool to study the jet characteristics in dense gas solid fluidized beds. 展开更多
关键词 Jetting fluidized bed cfd model Gas solid dynamics Modified SIMPLE
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Improved CFD modeling of full dissolution of alumina particles in aluminum electrolysis cells considering agglomerate formation 被引量:2
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作者 Shui-qing ZHAN Ming-mei JIANG +1 位作者 Jun-feng WANG Jian-hong YANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第11期3579-3590,共12页
The full alumina dissolution process in aluminum electrolysis cells was investigated using an improved computational fluid dynamics(CFD)model based on the previous researches by consideration of agglomerate formation.... The full alumina dissolution process in aluminum electrolysis cells was investigated using an improved computational fluid dynamics(CFD)model based on the previous researches by consideration of agglomerate formation.The results show that the total mass of alumina agglomerate and its maximum size are mainly dependent on the feeding amount and increase with increasing it.Higher superheat can effectively inhibit the agglomerate formation and thus promote the full alumina dissolution behavior.The full alumina dissolution process mainly includes a fast stage and a slow stage,with an average dissolution rate of 17.24 kg/min and 1.53 kg/min,respectively.About 50%(mass percentage)of the total alumina particles,almost all of which are the well-dispersed alumina fine grains,dissolve within the fast dissolution stage of about 10 s.The maximum values of the average dissolution rate and final percentage of the cumulative dissolved alumina mass are obtained with a feeding amount of 1.8 kg for a superheat of 12℃.The formation of the alumina agglomerates and slow dissolution characteristics play a dominant role in the full dissolution of alumina particles. 展开更多
关键词 aluminum electrolysis alumina dissolution agglomerate formation theoretical modeling cfd modeling
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CFD modelling of Iongwall goaf gas flow to improve gas capture and prevent goaf self-heating 被引量:1
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作者 REN Ting-xiang 《Journal of Coal Science & Engineering(China)》 2009年第3期225-228,共4页
CFD models have been developed to investigate the Iongwall goaf gas flow patternsunder different mining and geological control conditions.The Iongwall goaf wastreated as porous regions and gas flow was modelled as a m... CFD models have been developed to investigate the Iongwall goaf gas flow patternsunder different mining and geological control conditions.The Iongwall goaf wastreated as porous regions and gas flow was modelled as a momentum sink added to themomentum equation.Gas desorption from the caved goaf and destressed coal seamswithin the mining disturbed area was modelled as additional mass sources in the continuityequation.These CFD models were developed according to specific Iongwall layoutsand calibrated against field monitoring data.Two case studies were presented demonstratingthe application of CFD modelling of goaf gas flow characteristics for improved goafgas capture and the reduction of oxygen ingress into the goaf areas for self-heating prevention.Results from the case studies indicate that the optimum goaf drainage strategywould be a combination of shallow (near the face) and deep holes to improve the overalldrainage efficiency and gas purity.For gassy Iongwall faces retreating against the seam dip,it is recommended to conduct cross-measure roof hole drainage targeting the fracturedzones overlying the return corner,rather than high capacity surface goaf drainage deep inthe goaf. 展开更多
关键词 cfd modelling Iongwall goaf gas goaf drainage self-heating prevention
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CFD modeling of reaction and mass transfer through a single pellet: Catalytic oxidative coupling of methane 被引量:1
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作者 Siavash Seyednejadian Nakisa Yaghobi +1 位作者 Ramin Maghrebi Leila Vafajoo 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2011年第4期356-363,共8页
In this study a mathematical model of a small scale single pellet for the oxidative coupling of methane(OCM)over titanite pervoskite is developed.The method is based on a computational fluid dynamics(CFD)code whic... In this study a mathematical model of a small scale single pellet for the oxidative coupling of methane(OCM)over titanite pervoskite is developed.The method is based on a computational fluid dynamics(CFD)code which known as Fluent may be adopted to model the reactions that take place inside the porous catalyst pellet.The steady state single pellet model is coupled with a kinetic model and the intra-pellet concentration profiles of species are provided.Subsequent to achieving this goal,a nonlinear reaction network consisting of nine catalytic reactions and one gas phase reaction as an external program is successfully implemented to CFD-code as a reaction term in solving the equations.This study is based on the experimental design which is conducted in a differential reactor with a Sn/BaTiO3 catalyst(7-8 mesh) at atmospheric pressure,GHSV of 12000 h-1,ratio of methane to oxygen of 2,and three different temperatures of 1023,1048 and 1073 K.The modeling results such as selectivity and conversion at the pellet exit are in good agreement with the experimental data.Therefore,it is suggested that to achieve high yield in OCM process the modeling of the single pellet should be considered as the heart of catalytic fixed bed reactor. 展开更多
关键词 catalyst pellet oxidative coupling of methane modeling cfd catalytic reactions ETHANE
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A CFD Model for Fluid Dynamics in a Gas-fluidised Bed 被引量:1
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作者 ZHANGKai StefanoBrandani 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2004年第4期483-488,共6页
A modified particle bed model derived from the two-fluid momentum balance equations was employed to predict the gas-fluidised bed behaviour. Additional terms are included in both the fluid and the particle momentum ba... A modified particle bed model derived from the two-fluid momentum balance equations was employed to predict the gas-fluidised bed behaviour. Additional terms are included in both the fluid and the particle momentum balance equations to take into account the effect of the dispersed solid phase. This model has been extended to two-dimensional formulations and has been implemented in the commercial code CFX 4.3. The model correctly simulates the homogeneous fluidisation of Geldart Group A and the bubbling fluidisation of Geldart Group B in gas-solid fluidised beds. 展开更多
关键词 Gas-solid fluidised beds Modified particle bed model HYDRODYNAMICS cfd simulation
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Design Wind Speed Evaluation Technique in Wind Turbine Installation Point by Using the Meteorological and CFD Models
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作者 Takanori Uchida 《Journal of Flow Control, Measurement & Visualization》 2018年第3期168-184,共17页
It is highly important in Japan to choose a good site for wind turbines, because the spatial distribution of wind speed is quite complicated over steep complex terrain. We have been developing the unsteady numerical m... It is highly important in Japan to choose a good site for wind turbines, because the spatial distribution of wind speed is quite complicated over steep complex terrain. We have been developing the unsteady numerical model called the RIAM-COMPACT (Research Institute for Applied Mechanics, Kyushu University, Computational Prediction of Airflow over Complex Terrain). The RIAM-COMPACT is based on the LES (Large-Eddy Simulation). The object domain of the RIAM-COMPACT is from several m to several km, and can predict the airflow and gas diffusion over complex terrain with high precision. In the present paper, the design wind speed evaluation technique in wind turbine installation point by using the mesoscale meteorological model and RIAM-COMPACT CFD model was proposed. The design wind speed to be used for designing WTGs can be calculated by multiplying the ratio of the mean wind speed at the hub-height to the mean upper-air wind speed at the inflow boundary, i.e., the fractional increase of the mean hub-height wind speed, by the reduction ratio, R. The fractional increase of the mean hub-height wind speed was evaluated using the CFD simulation results. This method was proposed as Approach 1 in the present paper. A value of 61.9 m/s was obtained for the final design wind speed, Uh, in Approach 1. In the evaluation procedure of the design wind speed in Approach 2, neither the above-mentioned reduction rate, R, nor an upper-air wind speed of 1.7 Vo, where Vo is the reference wind speed, was used. Instead, the value of the maximum wind speed which was obtained from the typhoon simulation for each of the investigated wind directions was adopted. When the design wind speed was evaluated using the 50-year recurrence value, the design wind speed was 48.3 m/s. When a somewhat conservative safety factor was applied, that is, when the 100 year recurrence value was used instead, the design wind speed was 52.9 m/s. 展开更多
关键词 Design WIND SPEED Complex TERRAIN METEOROLOGICAL model cfd model
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Fundamentals of Direct Inverse CFD Modeling to Detect Air Pollution Sources in Urban Areas 被引量:1
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作者 Mahmoud Bady 《Computational Water, Energy, and Environmental Engineering》 2013年第2期31-42,共12页
This paper presents the fundamentals of direct inverse modeling using CFD simulations to detect air pollution sources in urban areas. Generally, there are four techniques used for detecting pollution sources: the anal... This paper presents the fundamentals of direct inverse modeling using CFD simulations to detect air pollution sources in urban areas. Generally, there are four techniques used for detecting pollution sources: the analytical technique, the optimization technique, the probabilistic technique, and the direct technique. The study discusses the potentialities and limits of each technique, where the direct inverse technique is focused. Two examples of applying the direct inverse technique in detecting pollution source are introduced. The difficulties of applying the direct inverse technique are investigated. The study reveals that the direct technique is a promising tool for detecting air pollution source in urban environments. However, more efforts are still needed to overcome the difficulties explained in the study. 展开更多
关键词 INVERSE modeling OUTDOOR Environments REVERSE Simulation cfd
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一种基于CFD的新型水动力节能技术开发及应用研究
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作者 于海 马翔 +2 位作者 相洪川 张越峰 王金宝 《水动力学研究与进展(A辑)》 北大核心 2025年第3期474-479,共6页
提高能效是船舶节能减排的关键。水动力节能技术以其成熟可靠、无需额外提供能量等优点备受青睐。为了研制节能效果更好的装置,中国船舶及海洋工程设计研究院基于CFD技术开发了一种更加高效的水动力节能装置-螺旋线型导管鳍,并应用于瑞... 提高能效是船舶节能减排的关键。水动力节能技术以其成熟可靠、无需额外提供能量等优点备受青睐。为了研制节能效果更好的装置,中国船舶及海洋工程设计研究院基于CFD技术开发了一种更加高效的水动力节能装置-螺旋线型导管鳍,并应用于瑞宁航运有限公司运营的“瑞宁21”轮。该文详细介绍了一种基于CFD能够精准适应流场变化的螺旋线型导管鳍设计方法及设计过程,并通过模型试验和实船运营效果跟踪分析,验证了该装置的节能效果。 展开更多
关键词 螺旋线型导管鳍 设计方法 cfd方法 模型试验 实船运营效果
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基于CFD的LNG水上泄漏后果计算模型的有效性评价
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作者 谢澄 孙兰心 +3 位作者 郝国柱 汪瑞 朱明昌 黄立文 《中国航海》 北大核心 2025年第2期118-126,共9页
随着国家“双碳”目标下内河液化天然气(LNG)燃料在能源结构中的占比不断提高,LNG水上泄漏后果成为其推广营运过程中首要考虑的风险因素。已有研究对LNG地面泄漏模型的有效性进行验证,然而与地面相比,水面与LNG之间存在剧烈的热交换过程... 随着国家“双碳”目标下内河液化天然气(LNG)燃料在能源结构中的占比不断提高,LNG水上泄漏后果成为其推广营运过程中首要考虑的风险因素。已有研究对LNG地面泄漏模型的有效性进行验证,然而与地面相比,水面与LNG之间存在剧烈的热交换过程,其对LNG泄漏后果的影响不可忽略。在已有研究成果的基础上,提出LNG水上泄漏水面传热模拟方法,耦合多相流模型、湍流扩散模型和燃烧模型等,利用大型LNG水上泄漏试验Falcon-1号试验和Phoenix-1号试验数据,引入相对偏差(FB)、几何平均偏差(MG)、几何平均方差(VG)、相对均方误差(MRSE)、归一化的均方误差(NMSE)和FAC2等统计学参数作为定量评价指标,对LNG水上泄漏后果计算模型进行有效性验证。结果表明:基于LNG水上泄漏水面传热模拟方法对LNG水上泄漏扩散和燃烧后果进行模拟时,各定量评价统计指标的取值均能满足模型有效性评价标准的要求,该模型未来可有效应用于LNG水上泄漏后果仿真模拟中,对LNG燃料内河营运相关政策的制定和其安全保障也具有重要的意义。 展开更多
关键词 液化天然气水上泄漏 液化天然气试验 计算流体动力学模型 统计偏差分析 有效性评价
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基于WRF模式的CFD与LSTM技术对低空风切变数值模拟研究 被引量:2
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作者 董泽新 吴硕岩 +5 位作者 叶芳 陈丽晶 李毅 孙辰博 徐峰 刘磊 《高原气象》 北大核心 2025年第2期546-562,共17页
为提升低空风切变预报精度,本文综合运用欧洲中期天气预报中心第五代再分析资料[European Centre for Medium-Range Weather Forecasts(ECMWF)fifth-generation reanalysis data,ERA5]和美国国家环境预报中心(National Centers for Envi... 为提升低空风切变预报精度,本文综合运用欧洲中期天气预报中心第五代再分析资料[European Centre for Medium-Range Weather Forecasts(ECMWF)fifth-generation reanalysis data,ERA5]和美国国家环境预报中心(National Centers for Environmental Prediction,NCEP)的FNL全球再分析资料(Final Operational Global Analysis)、先进星载热发射和反射辐射仪全球数字高程模型以及兰州中川机场的实况观测资料,采用中尺度数值天气预报模式(Weather Research and Forecasting Model,WRF)、WRF结合计算流体动力学(Computational Fluid Dynamics,CFD)方法、长短期神经网络(Long Short-Term Memory,LSTM)方法,对2021年4月15-16日兰州中川机场的两次风切变过程进行模拟分析。结果表明:(1)在小于1 km的网格中使用大涡模拟,WRF模式在单个站点风速模拟任务中表现更好,但在近地面水平风场风速模拟效果上,不如WRF模式结合计算流体力学模型方案;(2)对于飞机降落过程中遭遇的两次低空风切变的模拟,WRF-LES和WRF-CFD两种模式都可以模拟出第一次低空风切变,而第二次受传入模式的WRF风速数据值较小的影响,两种模式风速差都没有达到阈值,需要在后续工作中进一步验证;(3)低风速条件(6 m·s^(-1))下,基于LSTM的单变量风速预测模型平均绝对误差基本维持在0.59 m·s^(-1),能较好地把握不同地形与环流背景条件下风速变化的非线性关系,虽然受到WRF误差和观测要素不全的限制,多变量风速预测能在保证平均绝对百分比误差小于6.60%的情况下,以更高的计算效率和泛化能力实现风速预测。本文不仅验证了WRF-CFD和WRF-LES耦合方案在风场和低空风切变预报中的差异,还探讨了基于LSTM的风速预测的可行性和准确性,期望为提高风场模拟精度,缩短精细风场模拟时间提供新的视角和方法。 展开更多
关键词 低空风切变 计算流体力学模型(cfd) WRF模式 大涡模拟 长短期记忆网络
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基于CFD−DPM的空气幕协同排风罩增效除尘研究
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作者 丁厚成 许婉萍 +2 位作者 邓权龙 陈圳杨 朱强 《安徽工业大学学报(自然科学版)》 2025年第1期62-71,共10页
以某机械厂打磨车间为研究对象,利用Solidworks软件建立带有空气幕协同排风罩除尘的打磨车间模型,基于气固两相流理论,采用计算流体力学离散颗粒模型(CFD−DPM)模拟分析空气幕送风速度、射流角度和射流宽度对除尘效率的影响,选取空气幕... 以某机械厂打磨车间为研究对象,利用Solidworks软件建立带有空气幕协同排风罩除尘的打磨车间模型,基于气固两相流理论,采用计算流体力学离散颗粒模型(CFD−DPM)模拟分析空气幕送风速度、射流角度和射流宽度对除尘效率的影响,选取空气幕的最优参数;在此基础上,对比分析未开启排风罩、开启排风罩、同时开启排风罩与空气幕3种工况的风速分布、粉尘运移轨迹及粉尘质量浓度分布,探讨空气幕协同排风罩除尘的效果。结果表明:粉尘最大浓度、呼吸带粉尘浓度随空气幕送风速度、射流宽度的增大而减小,但不随空气幕射流角度的变化而变化;粉尘浓度随地面高度的增大先增后减,不同高度处粉尘浓度变化趋势基本一致;当空气幕射流宽度30 mm、射流角度30°、送风速度3 m/s时,通风除尘效果最佳,除尘效率高达94.2%。相比于仅开启排风罩,排风罩与空气幕协同作用下的除尘效率提高了38.8%,空气幕协同排风罩对车间除尘具有较好的增效作用。 展开更多
关键词 打磨车间 金属粉尘 排风罩 空气幕 计算流体力学(cfd) 离散颗粒模型(DPM) 除尘 职业健康
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基于CFD玻璃温室采暖仿真试验及优化设计 被引量:1
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作者 朱赞彬 王中营 +2 位作者 闵筱筱 严露露 李蒙 《农机化研究》 北大核心 2025年第5期173-179,共7页
温室采暖系统是温室作物冬季正常生长的关键因素,科学设计采暖系统是温室冬季正常运行的前提条件。温室室内流场情况非常复杂,而计算流体动力学(Computational Fluid Dynamics, CFD)是目前仿真模拟计算温室内部等各种复杂空间的常用方... 温室采暖系统是温室作物冬季正常生长的关键因素,科学设计采暖系统是温室冬季正常运行的前提条件。温室室内流场情况非常复杂,而计算流体动力学(Computational Fluid Dynamics, CFD)是目前仿真模拟计算温室内部等各种复杂空间的常用方式。为此,结合信阳地区气候特点,根据温室内部热平衡理论,科学计算了温室所需的采暖负荷。利用SpaceClaim19.0软件建立了温室的CFD模型,采用标准湍流模型与SIMPLE算法,结合Fluent19.0进行了仿真模拟,可以直观展示温室内部温度场分布。使用红外热成像仪和热电偶测温计实地测量温室采暖数据与仿真结果对比,结果表明:模型可以真实地反映温室内部温度场。同时,针对现有温室采暖系统的不足进行了优化设计,并对设计结果进行了仿真分析,可为温室采暖系统的改造升级提供参考。 展开更多
关键词 玻璃温室 采暖 cfd模型 仿真分析
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丙烯腈水相悬浮聚合过程的CFD模拟
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作者 袁东 曹晓磊 陈晔 《现代纺织技术》 北大核心 2025年第7期23-31,共9页
聚丙烯腈纤维(PAN)的工业生产通常采用水相悬浮聚合方法。为了提高丙烯腈聚合反应器内混合效果,基于实测的反应动力学数据,以PAN溶液聚合过程为研究对象,建立了一个耦合流动混合过程、传质传热过程和聚合反应过程的CFD模型,使用数值计... 聚丙烯腈纤维(PAN)的工业生产通常采用水相悬浮聚合方法。为了提高丙烯腈聚合反应器内混合效果,基于实测的反应动力学数据,以PAN溶液聚合过程为研究对象,建立了一个耦合流动混合过程、传质传热过程和聚合反应过程的CFD模型,使用数值计算方法探究了聚合过程中反应器内速度场、浓度场、温度场以及聚合产物的分布规律。对比CFD模拟计算结果与实际工业生产数据,其进出口温升、单体转化率和分子量分布指数误差在15%之内。该模型实现了对分子量分布指数和分子量等聚合物质量指标的求解,可为工业聚合过程强化和反应器设计提供参考。 展开更多
关键词 丙烯腈 反应器 反应动力学 cfd模型 聚合过程 质量指标
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基于CFD-DPM模型的不同生态抛枕防护效果分析
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作者 孙洪广 洪良贞 +1 位作者 王茂枚 王连 《长江科学院院报》 北大核心 2025年第4期19-26,44,共9页
天然河道中弯曲边坡是受侵蚀的严重区域,弯曲边坡防护是河道治理的重大难题。基于生态护坡理念,对比研究了砂石填装的不同形状抛枕在弯道侵蚀中的防护效果。根据实际河道结构,构建了弯道河床几何模型,进而利用计算流体力学-离散相模型(C... 天然河道中弯曲边坡是受侵蚀的严重区域,弯曲边坡防护是河道治理的重大难题。基于生态护坡理念,对比研究了砂石填装的不同形状抛枕在弯道侵蚀中的防护效果。根据实际河道结构,构建了弯道河床几何模型,进而利用计算流体力学-离散相模型(CFD-DPM)方法分析在弯曲河道凹岸侧投放长方体、半球体和半圆柱体抛枕的护岸效果。分析结果表明:在水流速度v=0.5 m/s的条件下,放置有抛枕的3种模型中,长方体抛枕附近的凹岸受到的压力最小,半圆柱体抛枕中颗粒雷诺数最小;半圆柱体抛枕阻挡的颗粒量最多、颗粒的平均速度最小,比无抛枕模型中的颗粒平均速度小9%;放置长方体抛枕的护岸模式下,对抛枕附近的凹岸有较好的防护效果,放置半圆柱体抛枕的护岸模式下,阻沙效果最佳。 展开更多
关键词 弯曲边坡防护 生态护坡 砂石抛枕 弯道河床几何模型 cfd-DPM方法 防护效果
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重载滑动轴承油膜动力学CFD建模与分析
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作者 刘新香 顾煜炯 +2 位作者 赵春晖 彭茂峰 赵子泰 《大电机技术》 2025年第5期75-84,共10页
本文基于轴承油膜力学理论和动态油膜压力方程,建立了滑动轴承油膜的CFD模型,采用有限元数值分析方法和非稳态计算方法对油膜动态响应和流动特性进行研究,利用动态网格技术,计算了轴承模型的动态特性系数,研究了滑动轴承的偏心率、宽径... 本文基于轴承油膜力学理论和动态油膜压力方程,建立了滑动轴承油膜的CFD模型,采用有限元数值分析方法和非稳态计算方法对油膜动态响应和流动特性进行研究,利用动态网格技术,计算了轴承模型的动态特性系数,研究了滑动轴承的偏心率、宽径比、轴颈转速等参数,以及油膜的厚度、宽度、压力分布、速度梯度等关键指标,分析了这些因素对轴承承载能力、摩擦损耗以及油膜形态、稳定性的影响,提出了求解油膜力非线性特性的方法。最后,通过对实验数据的验证和数值结果的对比分析,验证了方法的可靠性,为滑动轴承的工程设计、应用优化和故障诊断等提供了基础和方向。 展开更多
关键词 滑动轴承 动力学 非线性油膜 建模与分析 cfd模型
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柴油/正戊醇燃料发动机CFD模型的研究
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作者 叶卓 林贤坤 《广西科技大学学报》 2025年第3期9-16,共8页
作为清洁且可再生的替代能源,醇类燃料对于优化发动机的排放性能具有显著的效果。通过数值模拟计算发动机运行过程,能够避免试验研究存在的设备开发投入高、试验周期长等问题。本文使用CONVERGE软件,根据使用柴油/正戊醇燃料的YC4Y22型... 作为清洁且可再生的替代能源,醇类燃料对于优化发动机的排放性能具有显著的效果。通过数值模拟计算发动机运行过程,能够避免试验研究存在的设备开发投入高、试验周期长等问题。本文使用CONVERGE软件,根据使用柴油/正戊醇燃料的YC4Y22型玉柴柴油发动机试验结果,分析三维计算流体力学(computational fluid dynamics, CFD),合理设置各个计算模块,建立了发动机简化三维几何模型。在该模型的基础上,分析部分参数对模型预测发动机缸内平均压力及排放的影响。结果表明:热力学温度边界的设置对模型预测缸内平均压力影响不大,初始热力学温度的设置能有效修正缸内平均压力曲线;模型HC和CO的排放随着活塞边界热力学温度和缸盖边界热力学温度的升高而下降,随着壁面边界热力学温度的升高先下降后升高;同时HC和CO的排放随着喷油器深度尺寸的增大而下降,随着直径尺寸的增大而升高。综合以上结果修正参数,对比柴油/正戊醇燃料发动机的燃烧和排放两种特性,建立了合理的发动机计算流体力学模型,用于分析和优化不同因素对柴油/正戊醇混合燃料发动机燃烧和排放特性的影响。 展开更多
关键词 正戊醇 柴油机 计算流体力学(cfd)模型 CONVERGE 模型修正
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层流单分支管路流量分配的理论分析与CFD模拟
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作者 高雪菲 杨鹏 +1 位作者 王磊 林春阳 《钻探工程》 2025年第6期52-59,共8页
为揭示层流状态下单分支管路的流量分配规律,本文采用理论分析与数值模拟相结合的方法,基于并联管路压降平衡假设,结合Darcy-Weisbach公式与层流本构关系,推导得出流量配比理论公式,揭示了流量分配与管径四次方成正比、与管长成反比的... 为揭示层流状态下单分支管路的流量分配规律,本文采用理论分析与数值模拟相结合的方法,基于并联管路压降平衡假设,结合Darcy-Weisbach公式与层流本构关系,推导得出流量配比理论公式,揭示了流量分配与管径四次方成正比、与管长成反比的定量关系。通过CFD数值模拟对不同几何参数及不同注入流量工况进行验证,结果表明:仿真值与理论值的最大误差小于5%,证实了理论模型具备良好的工程适用性;流量分配比例仅由几何参数决定,与注入流量无关。本研究可为分支井结构优化提供理论依据,所提出的方法亦可扩展至多分支管路系统分析。后续研究将延伸至湍流模型及动态流动过程,以进一步提升模型的适用广度。 展开更多
关键词 分支井 单分支管路 流量分配 层流 cfd模拟 理论模型
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