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Synergistic properties of the binary mixed system of natural green surfactants:Camellia oleifera saponin and sodium cocoyl glycinate
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作者 Yawen Li Weixin Li +3 位作者 Fenglun Zhang Shihong Ma Jianxin Jiang Liwei Zhu 《日用化学工业(中英文)》 北大核心 2025年第7期831-843,共13页
Sodium cocoyl glycinate(SCG),an environmentally friendly anionic amino acid surfactant,is widely used in daily chemical products as an upgraded alternative to traditional surfactants.In this study,crude Camellia oleif... Sodium cocoyl glycinate(SCG),an environmentally friendly anionic amino acid surfactant,is widely used in daily chemical products as an upgraded alternative to traditional surfactants.In this study,crude Camellia oleifera saponin(COS)was purified using AB-8 macroporous adsorption resin,and its composition and structure were analyzed.The effects of different mole fractions of COS(αCOS)on surface tension(γ),oil-water interfacial tension(IFT),emulsification,and foam properties of COS-SCG binary mixed systems were investigated in mixtures of SCG with purified COS.The stability ofγand foamability under diverse environmental conditions were also discussed.The results indicated that the COS-SCG system exhibited remarkable surface-active synergism.The minimum critical micelle concentration(cmc)of the mixed system was lower than that of SCG,and adding a small mole fraction of COS(1%-2%)induced a synergistic reduction ofγ.Specifically,the cmc andγwere 2.50×10-4 mol/L and 23.1 mN/m forαCOS=1%,respectively.The system exhibited exceptional IFT reduction capacity,achieving a minimum value of 1.42 mN/m atαCOS=10%.The mixed system reached a foaming volume(atαCOS=50%)and foam stability(atαCOS=75%)were 51.0 mL and 97.37%,respectively.Microscopic analysis further confirmed these outstanding foam properties.Moreover,the COS-SCG system displayed reducedγwith enhanced foaming volume under elevated temperatures(35-75℃)and salinity(0-20 g/L).However,acidic conditions and hard water compromised bothγstability and foamability. 展开更多
关键词 SAPONIN sodium cocoyl glycinate binary mixed system synergism interfacial tension foam properties
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涌潮冲击桩柱体最大压强及最大载荷的计算方法
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作者 王旭 屈科 +1 位作者 杨元平 王超 《振动与冲击》 北大核心 2025年第6期90-103,共14页
涌潮是一种蕴含着巨大能量的特殊强非线性间断流,因此涌潮区域内桥墩等桩柱体建筑物会受到极大的涌潮冲击力,可能会对桩柱体等涉水结构造成严重毁坏。基于开源程序OpenFOAM和wave2Foam构建高精度涌潮数值水槽,求解雷诺平均的Navier-Sto... 涌潮是一种蕴含着巨大能量的特殊强非线性间断流,因此涌潮区域内桥墩等桩柱体建筑物会受到极大的涌潮冲击力,可能会对桩柱体等涉水结构造成严重毁坏。基于开源程序OpenFOAM和wave2Foam构建高精度涌潮数值水槽,求解雷诺平均的Navier-Stokes方程。首先,进行高精度涌潮数值水槽计算涌潮传播、演变及与桩柱体相互作用的能力;然后,数值计算涌潮与桩柱体相互作用过程中涌潮传播、演变及桩柱体结构动力响应特性的变化规律,并阐明不同形态涌潮与桩柱体发生相互作用时涌潮复杂水动力特性机理;最后,系统分析不同涌潮高度、潮前水深、桩柱体斜置角度和作用方向对涌潮水动力载荷和最大冲击压强的影响。结果表明:涌潮与桩柱体发生相互作用时,涌潮最大水动力载荷和最大冲击压强随着涌潮高度的增加显著增加,呈现出线性增大趋势;波状涌潮和弱旋滚涌潮的最大水动力载荷和最大冲击压强随潮前水深的增大而增大,然而强漩滚涌潮冲击桩柱体时的最大水动力载荷和最大冲击压强随潮前水深的变化没有明显增大的趋势;涌潮冲击桩柱体过程中,相比垂直桩柱体涌潮对正向斜置桩柱体作用的水动力载荷较小,且最大冲击压强的大小也因桩柱体的斜置发生了明显的减小现象。基于对涌潮最大水动力载荷和最大冲击压强数据结果进行系统整理,结合理论特性分析,提出适合不同形态涌潮冲击桩柱体时的最大水动力载荷和涌潮最大冲击压强的理论计算公式。为强潮区域桥梁基础结构的设计提供参考意义。 展开更多
关键词 涌潮 桩柱体 水动力特性 理论分析 wave2Foam
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Experimental investigation on the anti-detonation performance of composite structure containing foam geopolymer backfill material
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作者 Hang Zhou Hujun Li +6 位作者 Zhen Wang Dongming Yan Wenxin Wang Guokai Zhang Zirui Cheng Song Sun Mingyang Wang 《Defence Technology(防务技术)》 2025年第1期304-318,共15页
The compression and energy absorption properties of foam geopolymers increase stress wave attenuation under explosion impacts,reducing the vibration effect on the structure.Explosion tests were conducted using several... The compression and energy absorption properties of foam geopolymers increase stress wave attenuation under explosion impacts,reducing the vibration effect on the structure.Explosion tests were conducted using several composite structure models,including a concrete lining structure(CLS)without foam geopolymer and six foam geopolymer composite structures(FGCS)with different backfill parameters,to study the dynamic response and wave dissipation mechanisms of FGCS under explosive loading.Pressure,strain,and vibration responses at different locations were synchronously tested.The damage modes and dynamic responses of different models were compared,and how wave elimination and energy absorption efficiencies were affected by foam geopolymer backfill parameters was analyzed.The results showed that the foam geopolymer absorbed and dissipated the impact energy through continuous compressive deformation under high strain rates and dynamic loading,reducing the strain in the liner structure by 52%and increasing the pressure attenuation rate by 28%.Additionally,the foam geopolymer backfill reduced structural vibration and liner deformation,with the FGCS structure showing 35%less displacement and 70%less acceleration compared to the CLS.The FGCS model with thicker,less dense foam geopolymer backfill,having more pores and higher porosity,demonstrated better compression and energy absorption under dynamic impact,increasing stress wave attenuation efficiency.By analyzing the stress wave propagation and the compression characteristics of the porous medium,it was concluded that the stress transfer ratio of FGCS-ρ-579 was 77%lower than that of CLS,and the transmitted wave energy was 90%lower.The results of this study provide a scientific basis for optimizing underground composite structure interlayer parameters. 展开更多
关键词 Explosion load Composite structure Geopolymer foam Energy absorption
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Nitric acid oxidation treatment promoting microwave absorption performance of carbonized melamine foam
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作者 MAO Ming-zhen XIA Peng-kun +3 位作者 MA Lei HUANG Sheng-xiang GAO Xiao-hui DENG Lian-wen 《Journal of Central South University》 2025年第5期1630-1640,共11页
Carbonized melamine foam has been recognized as a promising material for microwave absorption due to its exceptional thermal stability,lightweight,and remarkable dielectric properties.In this study,we investigated the... Carbonized melamine foam has been recognized as a promising material for microwave absorption due to its exceptional thermal stability,lightweight,and remarkable dielectric properties.In this study,we investigated the impact of nitric acid oxidation on the surface of carbonized melamine foam and its microwave absorption properties.The treated foam exhibits optimal reflection loss of−21.51 dB at 13.20 GHz,with an effective absorption bandwidth of 7.04 GHz.The enhanced absorption properties are primarily attributed to the strengthened dielectric loss,improved impedance matching,and increased polarization losses resulting from the oxidized surfaces.This research demonstrates a promising new approach for research into surface treatments to improve the performances of microwave absorbers. 展开更多
关键词 carbonized melamine foam nitric acid hydrothermal treatment interface modification microwave absorption performance
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Dynamic response of polymethacrylimide foam sandwich structures with different core layers under water impact loading
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作者 Peilin Zhu Jili Rong +2 位作者 Shenglong Wang Zichao Chen Zifan Jiang 《Defence Technology(防务技术)》 2025年第7期203-222,共20页
Polymethacrylimide(PMI)foam has the highest specific stiffness and strength among polymer foams,with excellent radar-absorbing capabilities,which provide it with broad prospects in underwater ap-plications.To evaluate... Polymethacrylimide(PMI)foam has the highest specific stiffness and strength among polymer foams,with excellent radar-absorbing capabilities,which provide it with broad prospects in underwater ap-plications.To evaluate the impact resistance of PMI foam sandwich structures,the dynamic response and energy absorption characteristics of PMI foam sandwich structures with different core layers under various water impact loads were investigated using combined experimental and numerical methods.A fluid-structure interaction device with a diffusion angle was used for water impact testing of the PMI foam sandwich structures.The 3D-DIC technique was employed to process the deformation images of the sandwich-structure back panel captured by the high-speed cameras.Numerical simulations were performed to analyze the dynamic deformation process of the PMI foam core.The results indicated that the maximum deformation of the back panel exhibited a nonlinear relationship with the impulse.Below the critical impulse,the maximum deformation of the back panel plateaued,which was determined by the core density.Beyond the critical impulse,the rate of deformation increased with the impulse was governed by the core thickness.Compared with different sandwich panels,PMI foam sandwich struc-tures demonstrate significant advantages in terms of impact resistance under high-impulse conditions. 展开更多
关键词 PMI foam sandwich structure Underwater impact loading Impact resistance Energy absorption characteristics
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Investigation on the foaming behaviors of NC-based gun propellants 被引量:3
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作者 Yu-xiang LI Wei-tao YANG San-jiu YING 《Defence Technology(防务技术)》 SCIE EI CAS 2014年第3期261-268,共8页
To prepare the porous NC-based(nitrocellulose-based) gun propellants,the batch foaming process of using supercritical CO_2 as the physical blowing agent is used.The solubilities of CO_2 in the single-base propellants ... To prepare the porous NC-based(nitrocellulose-based) gun propellants,the batch foaming process of using supercritical CO_2 as the physical blowing agent is used.The solubilities of CO_2 in the single-base propellants and TEGDN(trimethyleneglycol dinitrate) propellants are measured by the gravimetric method,and SEM(scanning electron microscope) is used to observe the morphology of foamed propellants.The result shows that a large amount of CO_2 could be dissolved in NC-based propellants.The experimental results also reveal that the energetic plasticizer TEGDN exerts an important influence on the pore structure.The triaxial tensile failure mechanism for solid-state nucleation is used to explain the nucleation of NC-based propellants in the sol id state.Since some specific foaming behaviors of NC-based propellants can not be explained by the failure mechanism,a solid-state nucleation mechanism which revises the triaxial tensile failure mechanism is proposed and discussed. 展开更多
关键词 SOLID-STATE foaming PLASTICIZATION Foamed PROPELLANT NUCLEATION PORE growth Tensile failure mechanism
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Experimental investigation on weak shock wave mitigation characteristics of flexible polyurethane foam and polyurea 被引量:2
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作者 Shiyu Jia Cheng Wang +2 位作者 Wenlong Xu Dong Ma Fangfang Qi 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第1期179-191,共13页
In recent years,explosion shock wave has been considered as a signature injury of the current military conflicts.Although strong shock wave is lethal to the human body,weak shock wave can cause many more lasting conse... In recent years,explosion shock wave has been considered as a signature injury of the current military conflicts.Although strong shock wave is lethal to the human body,weak shock wave can cause many more lasting consequences.To investigate the protection ability and characteristics of flexible materials and structures under weak shock wave loading,the blast wave produced by TNT explosive is loaded on the polyurethane foam with the density of 200.0 kg/m3(F-200)and 400.0 kg/m3(F-400),polyurea with the density of 1100.0 kg/m^(3)(P-1100)and structures composed of the two materials,which are intended for individual protection.Experimental results indicate that the shock wave is attenuated to weak pressure disturbance after interacting with the flexible materials which are not damaged.The shock wave protective capability of single-layer materials is dependent on their thickness,density and microscopic characteristics.The overpressure,maximum pressure rise rate and impulse of transmitted wave decrease exponentially with increase in sample thickness.For the same thickness,F-400 provides better protective capability than F-200 while P-1100 shows the best protective capability among the three materials.In this study,as the materials are not destroyed,F-200 with a thickness more than10.0 mm,F-400 with a thickness more than 4.0 mm,and P-1100 with a thickness more than 1.0 mm can attenuate the overpressure amplitude more than 90.0%.Further,multi-layer flexible composites are designed.Different layer layouts of designed structures and layer thickness of the single-layer materials can affect the protective performance.Within the research range,the structure in which polyurea is placed on the impact side shows the optimal shock wave protective performance,and the thicknesses of polyurea and polyurethane foam are 1.0 mm and 4.0 mm respectively.The overpressure attenuation rate reached maximum value of 93.3%and impulse attenuation capacity of this structure are better than those of single-layer polyurea and polyurethane foam with higher areal density. 展开更多
关键词 Free-field explosion Weak shock wave mitigation POLYUREA Polyurethane foam Multi-layered composites
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Propagation Properties of Shock Waves in Polyurethane Foam based on Atomistic Simulations 被引量:1
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作者 Zhiqiang Hu Jianli Shao +2 位作者 Shiyu Jia Weidong Song Cheng Wang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第1期117-129,共13页
Porous materials are widely used in the field of protection because of their excellent energy absorption characteristics.In this work,a series of polyurethane microscopic models are established and the effect of poros... Porous materials are widely used in the field of protection because of their excellent energy absorption characteristics.In this work,a series of polyurethane microscopic models are established and the effect of porosity on the shock waves is studied with classical molecular dynamics simulations.Firstly,shock Hugoniot relations for different porosities are obtained,which compare well with the experimental data.The pores collapse and form local stress wave,which results in the complex multi-wave structure of the shock wave.The microstructure analysis shows that the local stress increases and the local velocity decreases gradually during the process of pore collapse to complete compaction.Finally,it leads to stress relaxation and velocity homogenization.The shock stress peaks can be fitted with two exponential functions,and the amplitude of attenuation coefficient decreases with the increase of density.Besides,the pore collapse under shock or non-shock are discussed by the entropy increase rate of the system.The energy is dissipated mainly through the multiple interactions of the waves under shock.The energy is dissipated mainly by the friction between atoms under non-shock. 展开更多
关键词 Polyurethane foam Shock wave ATTENUATION Atomistic simulation
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Non-dimensional analysis on blast wave propagation in foam concrete:Minimum thickness to avoid stress enhancement 被引量:1
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作者 Ya Yang Xiangzhen Kong Qin Fang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第6期30-46,共17页
Foam concrete is a prospective material in defense engineering to protect structures due to its high energy absorption capability resulted from the long plateau stage.However,stress enhancement rather than stress miti... Foam concrete is a prospective material in defense engineering to protect structures due to its high energy absorption capability resulted from the long plateau stage.However,stress enhancement rather than stress mitigation may happen when foam concrete is used as sacrificial claddings placed in the path of an incoming blast load.To investigate this interesting phenomenon,a one-dimensional difference model for blast wave propagation in foam concrete is firstly proposed and numerically solved by improving the second-order Godunov method.The difference model and numerical algorithm are validated against experimental results including both the stress mitigation and the stress enhancement.The difference model is then used to numerically analyze the blast wave propagation and deformation of material in which the effects of blast loads,stress-strain relation and length of foam concrete are considered.In particular,the concept of minimum thickness of foam concrete to avoid stress enhancement is proposed.Finally,non-dimensional analysis on the minimum thickness is conducted and an empirical formula is proposed by curve-fitting the numerical data,which can provide a reference for the application of foam concrete in defense engineering. 展开更多
关键词 Foam concrete Blast wave propagation Non-dimensional analysis Stress enhancement
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孤立波作用下浮式防波堤对箱梁防护特性的影响
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作者 黄玲玲 孙亮 +1 位作者 王春正 袁琦新 《科学技术与工程》 北大核心 2024年第33期14113-14121,共9页
目前在大多数应用浮式防波堤对桥梁结构进行防护的研究中,系泊浮式防波堤在极端波浪下对沿海桥梁的防护研究还很有限。基于开源计算流体动力学(computational fluid dynamics, CFD)软件OpenFOAM中的waves2foam工具和开源系泊工具MoorDy... 目前在大多数应用浮式防波堤对桥梁结构进行防护的研究中,系泊浮式防波堤在极端波浪下对沿海桥梁的防护研究还很有限。基于开源计算流体动力学(computational fluid dynamics, CFD)软件OpenFOAM中的waves2foam工具和开源系泊工具MoorDyn耦合,以孤立波为极端工况,建立孤立波作用下浮式防波堤与箱梁的水动力模型,研究了浮式防波堤淹没系数、浮式防波堤长度及系泊拖地长度对箱梁防护特性的影响,并对流场和箱梁特征点的压力进行分析,揭示箱梁受力特性发生改变的原因。结果表明,所采用的耦合方法具有较高的精度和可靠性,浮式防波堤对减小水平荷载贡献大,对减小竖向荷载贡献较小,需增强箱梁的竖向抗冲击约束,浮托力对特征点的压力峰值有较大影响,适当增大防波堤淹没系数对箱梁的综合防护效果较好。 展开更多
关键词 孤立波 系泊 浮式防波堤 箱梁 waves2foam
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Semi-quantitative analysis of the structural evolution of mesophase pitch-based carbon foams by Raman and FTIR spectroscopy
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作者 LIU Yue CHANG Sheng-kai +3 位作者 SU Zhan-peng HUANG Zu-jian QIN Ji YANG Jian-xiao 《新型炭材料(中英文)》 SCIE EI CAS CSCD 北大核心 2024年第4期668-680,共13页
Graphitized carbon foams(GFms)were prepared using mesophase pitch(MP)as a raw material by foaming(450℃),pre-oxidation(320℃),carbonization(1000℃)and graphitization(2800℃).The differences in structure and properties... Graphitized carbon foams(GFms)were prepared using mesophase pitch(MP)as a raw material by foaming(450℃),pre-oxidation(320℃),carbonization(1000℃)and graphitization(2800℃).The differences in structure and properties of GFms prepared from different MP precursors pretreated by ball milling or liquid phase extraction were investigated and compared,and semi-quantitative calculations were conducted on the Raman and FTIR spectra of samples at each preparation stage.Semi-quantitat-ive spectroscopic analysis provided detailed information on the structure and chemical composition changes of the MP and GFm de-rived from it.Combined with microscopic observations,the change from precursor to GFm was analyzed.The results showed that ball milling concentrated the distribution of aromatic molecules in the pitch,which contributed to uniform foaming to give a GFm with a uniform pore distribution and good properties.Liquid phase extraction helped remove light components while retaining large aromatics to form graphitic planes with the largest average size during post-treatment to produce a GFm with the highest degree of graphitization and the fewest open pores,giving the best compression resistance(2.47 MPa),the highest thermal conductivity(64.47 W/(m·K))and the lowest electrical resistance(13.02μΩ·m).Characterization combining semi-quantitative spectroscopic ana-lysis with microscopic observations allowed us to control the preparation of the MP-derived GFms. 展开更多
关键词 Mesophase pitch Carbon foams RAMAN FTIR GRAPHITIZATION
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Protective performance of shear stiffening gel-modified foam against ballistic impact:Experimental and numerical study
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作者 Huan Tu Haowei Yang +9 位作者 Pengzhao Xu Zhe Yang Fan Tang Cheng Dong Yuchao Chen Lei Ren Wenjian Cao Chenguang Huang Yacong Guo Yanpeng Wei 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第2期510-520,共11页
As one of the most widely used personal protective equipment(PPE),body armors play an important role in protecting the human body from the high-velocity impact of bullets or projectiles.The body torso and critical org... As one of the most widely used personal protective equipment(PPE),body armors play an important role in protecting the human body from the high-velocity impact of bullets or projectiles.The body torso and critical organs of the wear may suffer severe behind-armor blunt trauma(BABT)even though the impactor is stopped by the body armor.A type of novel composite material through incorporating shear stiffening gel(STG)into ethylene-vinyl acetate(EVA)foam is developed and used as buffer layers to reduce BABT.In this paper,the protective performance of body armors composed of fabric bulletproof layers and a buffer layer made of foam material is investigated both experimentally and numerically.The effectiveness of STG-modified EVA in damage relief is verified by ballistic tests.In parallel with the experimental study,numerical simulations are conducted by LS-DYNA®to investigate the dynamic response of each component and capture the key mechanical parameters,which are hardly obtained from field tests.To fully describe the material behavior under the transient impact,the selected constitutive models take the failure and strain rate effect into consideration.A good agreement between the experimental observations and numerical results is achieved to prove the validity of the modelling method.The tests and simulations show that the impact-induced deformation on the human body is significantly reduced by using STG-modified EVA as the buffering material.The improvement of protective performance is attributed to better dynamic properties and more outstanding energy absorption capability of the composite foam. 展开更多
关键词 Ballistic behavior Composite foam Shear stiffening gel Finite element analysis Protective mechanism
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印度洋海盆模影响西北东部5月降水的数值模拟研究 被引量:4
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作者 杨建玲 胡海波 +2 位作者 穆建华 王敏 胡文东 《高原气象》 CSCD 北大核心 2017年第2期510-516,共7页
利用海洋大气完全耦合模式FOAM模拟研究了热带印度洋海盆模影响我国西北地区东部5月降水的异常及其物理机制。结果表明:当热带印度洋为暖海盆异常模态时,FOAM模式模拟的西北地区东部5月降水异常偏多,这与观测分析结果相一致。模拟发现... 利用海洋大气完全耦合模式FOAM模拟研究了热带印度洋海盆模影响我国西北地区东部5月降水的异常及其物理机制。结果表明:当热带印度洋为暖海盆异常模态时,FOAM模式模拟的西北地区东部5月降水异常偏多,这与观测分析结果相一致。模拟发现春季热带印度洋暖海盆模态可在大气中引起类似"Matsuno-Gill Pattern"的异常响应,在对流层高层青藏高原西南侧形成异常高压,并在北半球中纬度沿高空急流轴形成异常遥相关波列,西北地区东部处于异常遥相关波列在东亚地区正异常中心的西部,正好为"西低东高"这一典型降水偏多的大气环流形势控制,对应对流层高层风场为明显的异常反气旋环流,气流辐散,低层有小范围的弱辐合,形成气流上升运动和水汽异常大值中心,引起降水偏多,模拟的海盆模引起的大气环流异常场与观测分析结果基本一致。FOAM模式对热带印度洋海盆模影响西北地区东部5月降水异常及其物理过程进行了较好的模拟验证。 展开更多
关键词 西北地区东部 降水 模拟试验 FOAM模式
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非线性波浪荷载作用下海上风机管桩基础周围海床液化研究 被引量:5
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作者 于秀霞 李欣 +1 位作者 凌贤长 刘俊伟 《工程地质学报》 CSCD 北大核心 2021年第5期1599-1610,共12页
为研究近浅海领域内海上风机大直径单桩基础周围的砂质海床在非线性荷载作用下的瞬时液化的稳定性,在Open FOAM平台上建立波浪-单桩-海床三维数值模型(WSSI模型),采用ola Foam求解器求解RANS方程模拟波浪的非线性运动,将Biot方程作为海... 为研究近浅海领域内海上风机大直径单桩基础周围的砂质海床在非线性荷载作用下的瞬时液化的稳定性,在Open FOAM平台上建立波浪-单桩-海床三维数值模型(WSSI模型),采用ola Foam求解器求解RANS方程模拟波浪的非线性运动,将Biot方程作为海床模型的控制方程研究单桩周围海床的液化规律。对以往的数值解析结果和实验结果进行对比分析,验证本文建立三维波浪模型和海床模型的准确性和有效性。将建立的波浪-管桩-海床相互作用三维数值模型应用到实际工况中,对数值模型在实际工程中的海床响应进行分析评估。研究结果表明,单桩周围海床的孔隙水压力场和有效应力场在水深方向发生较大变化,在水平方向变化较小。在该工况下海床的最大液化深度可达到10 m,且在垂直于波浪运动方向的海床更容易发生液化,为实际工程预测海床液化提供一定的技术支持。 展开更多
关键词 Open FOAM BIOT方程 海床液化 管桩基础
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FOAM模拟的20世纪气候变化 被引量:1
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作者 方长芳 吴立新 《中国海洋大学学报(自然科学版)》 CAS CSCD 北大核心 2010年第6期11-18,共8页
在加入温室气体和太阳常数后,FOAM较好地模拟出20世纪气候变化的主要特征,与IPCC AR4模式和观测的结果基本保持一致,主要特征如下:(1)全球平均地表气温升高约0.6~0.7℃,海表面温度升高约0.4~0.5℃;地表温度升高不均匀,冰面大于陆地,陆... 在加入温室气体和太阳常数后,FOAM较好地模拟出20世纪气候变化的主要特征,与IPCC AR4模式和观测的结果基本保持一致,主要特征如下:(1)全球平均地表气温升高约0.6~0.7℃,海表面温度升高约0.4~0.5℃;地表温度升高不均匀,冰面大于陆地,陆地大于海洋,北半球大于南半球;对流层变暖,平流层变冷。(2)中纬度西风增强,西风带和信风带都有往极地移动的趋势,在南半球更明显;南北半球增暖的不对称可能影响信风的变化。(3)海表面温度经向梯度增大,和中纬度西风增强有互为因果的关系。(4)中低纬度蒸发加强,大气中的水汽增加,水汽的温室效应增强。(5)海洋上层增暖,副热带地区更明显;高纬度海洋变淡,太平洋变淡,印度洋和大西洋中低纬度变咸;北大西洋热盐环流减弱。 展开更多
关键词 FOAM 全球变暖 气候变化 气候模式
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基于时间延迟的GPS辅助空中快速对准算法 被引量:1
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作者 朱启举 张义崇 +1 位作者 翁浚 李永成 《弹箭与制导学报》 CSCD 北大核心 2014年第1期9-12,共4页
目前动基座对准问题的解决方案大都基于惯性系,但这些方案需要存储导航期间惯性系矢量信息,且大都没有考虑时间延迟的存在。文中通过插值、外推的方法对GPS时间延迟进行补偿,然后通过机载动基座快速最优姿态矩阵(fast optimal attitude ... 目前动基座对准问题的解决方案大都基于惯性系,但这些方案需要存储导航期间惯性系矢量信息,且大都没有考虑时间延迟的存在。文中通过插值、外推的方法对GPS时间延迟进行补偿,然后通过机载动基座快速最优姿态矩阵(fast optimal attitude matrix,FOAM)对准算法进行快速空中对准。最后通过仿真表明,经过时间延迟补偿的对准结果明显优于未经过补偿的。 展开更多
关键词 初始对准 FOAM算法 时间同步 GPS辅助
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基于BSMPKU的高分辨率大气扩散数值模拟研究
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作者 郑亦佳 刘树华 +1 位作者 缪育聪 陈笔澄 《安全与环境学报》 CAS CSCD 北大核心 2015年第5期255-261,共7页
为了检验北京大学街区尺度模式BSMPKU(Block Scale Model of Peking University)在城市大气环境研究中的适用性,首先利用Thompson风洞试验的数据集对BSMPKU模式进行了验证,并将其模拟结果与Open FOAM(Open Source Field Operation and M... 为了检验北京大学街区尺度模式BSMPKU(Block Scale Model of Peking University)在城市大气环境研究中的适用性,首先利用Thompson风洞试验的数据集对BSMPKU模式进行了验证,并将其模拟结果与Open FOAM(Open Source Field Operation and Manipulation)的模拟结果进行比较,然后将BSMPKU模式应用在复杂的实际建筑物群中,进行了3种不同交通线源排放的理想数值模拟研究。结果表明:1)对于单个建筑物,随建筑物宽度增加,建筑物迎风面回流区和建筑物背风面的尾流涡区范围增大;2)BSMPKU和Open FOAM对单个建筑物周围的流场及浓度场有较好的模拟能力;3)与基于高斯扩散理论的AERMOD相比,BSMPKU和Open FOAM能更好地模拟出建筑物周围的浓度场,但两个模式的模拟结果都与实测值存在一定误差;4)在实际小区中,受建筑物群影响,建筑物群内的流场分布比较复杂,大部分地区风速大幅下降,建筑物群内污染物浓度场的分布受排放源位置和走向的影响很大;5)BSMPKU能较好地模拟出实际城区的流场和浓度场分布,具有一定模拟和预报复杂城区污染物扩散过程的能力。 展开更多
关键词 环境学 CFD BSMPKU OPEN FOAM 大气扩散模拟
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非晶态Pd-P/聚吡咯/泡沫Ni电极对五氯苯酚的催化还原 被引量:2
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作者 王婧 崔春月 +3 位作者 田侠 张雪 王颖 辛言君 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2020年第10期1157-1162,共6页
电催化还原氯代有机物具有效率高和环境友好等优点。研究采用电化学沉积法在泡沫Ni上制备了非晶态Pd-P/聚吡咯/泡沫Ni(Pd-P/PPy/foam Ni)复合电极,用于电催化还原法去除水中的五氯苯酚(PCP)。扫描电镜(SEM)、透射电镜(TEM)、X射线衍射分... 电催化还原氯代有机物具有效率高和环境友好等优点。研究采用电化学沉积法在泡沫Ni上制备了非晶态Pd-P/聚吡咯/泡沫Ni(Pd-P/PPy/foam Ni)复合电极,用于电催化还原法去除水中的五氯苯酚(PCP)。扫描电镜(SEM)、透射电镜(TEM)、X射线衍射分析(XRD)和X射线光电子能谱分析(XPS)等表征结果表明,掺杂P使Pd催化剂分散均匀,粒径变小,且由晶态结构转变为非晶态。由电催化还原PCP发现,掺杂P明显提高了电极的催化活性。在n(Pd)/n(P)为1:3,Pd负载量为0.15 mg/cm^2,H2SO4浓度为0.2 mol/L,阴极电位为–1.2 V条件下,处理180 min后,PCP的降解率达到90.8%。另外,Pd-P/PPy/foam Ni电极重复使用8次,仍保持良好的稳定性。 展开更多
关键词 Pd-P/PPy/foam Ni 非晶态 电催化还原
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基于IQN-ILS流固耦合算法的改进及应用 被引量:2
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作者 葛佳斌 王灿星 冯占宸 《机电工程》 CAS 2015年第4期469-473,共5页
针对IQN-ILS流固耦合分离迭代算法存在的稳定性问题,对如何在管道流动的流固耦合数值模拟中提高计算稳定性进行了研究,提出了将松弛因子引入IQN-ILS算法和混合使用Aitken和IQN-ILS的两种基于IQN-ILS算法的改进算法,在CFD开源C++类库Open... 针对IQN-ILS流固耦合分离迭代算法存在的稳定性问题,对如何在管道流动的流固耦合数值模拟中提高计算稳定性进行了研究,提出了将松弛因子引入IQN-ILS算法和混合使用Aitken和IQN-ILS的两种基于IQN-ILS算法的改进算法,在CFD开源C++类库Open Foam的基础上开发了新的流固耦合求解器,编程实现了提出的改进算法,并通过二维标准算例验证了所开发的流固耦合解器的有效性,最终将改进算法应用到三维管道流动算例中。研究结果表明,所提出的改进算法均能够提高计算的稳定性,取得了很好的效果。 展开更多
关键词 流固耦合 IQN-ILS算法 Aitken算法 松驰因子 OPEN Foam
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改进SST湍流模型在分离流中的应用 被引量:1
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作者 康庄 倪问池 孙丽萍 《哈尔滨工程大学学报》 EI CAS CSCD 北大核心 2017年第9期1359-1364,共6页
针对标准SST模型无法对分离流动进行准确的数值模拟的问题,本文根据分离流动的特性,在传统SST模型的基础上增加了能量传递耗散项,提升了该模型对分离流动的模拟精度。以开源软件Open FOAM为平台,运用改进的SST湍流模型,对亚临界雷诺数... 针对标准SST模型无法对分离流动进行准确的数值模拟的问题,本文根据分离流动的特性,在传统SST模型的基础上增加了能量传递耗散项,提升了该模型对分离流动的模拟精度。以开源软件Open FOAM为平台,运用改进的SST湍流模型,对亚临界雷诺数情况下的圆柱绕流算例进行计算,并结合已有的实验结果,与原始SST模型的计算结果进行对比。结果证明:改进的SST模型能有效弥补原始SST模型在模拟分离流时,漩涡脱落强度偏小的缺陷,对于亚临界雷诺数下的分离流动的数值模拟具有良好效果。 展开更多
关键词 改进SST模型 分离流动 湍流模型 数值模拟 亚临界雷诺数 OPEN FOAM软件 圆柱绕流
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