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非定常态供应链集成模式——应急物流体分析 被引量:12
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作者 韩景倜 詹亚辉 +1 位作者 徐颖凯 李常富 《空军工程大学学报(自然科学版)》 CSCD 北大核心 2005年第2期92-94,共3页
剖析非定常态下物流供应链及其应急保障物流的结构特征,提出应急物流体的概念和基本模型。应急物流体是构建于国家和企业物流供应链基础上、经集成的特殊物流供应链系统模式。为应急状态下的实时物流供应(RTLS)提供决策支持,为相应研究... 剖析非定常态下物流供应链及其应急保障物流的结构特征,提出应急物流体的概念和基本模型。应急物流体是构建于国家和企业物流供应链基础上、经集成的特殊物流供应链系统模式。为应急状态下的实时物流供应(RTLS)提供决策支持,为相应研究提供新的思路。 展开更多
关键词 非定常态 流供应 物流体
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基于应急物流体的应急救援物资调度模型 被引量:19
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作者 韩景倜 池为叠 韩小妹 《系统仿真学报》 CAS CSCD 北大核心 2009年第18期5828-5830,5835,共4页
应急物流体理论(ELS3)是解决应急突发事件的宏观方法,以该理论基本原则为依据,从技术实施与应用角度研究应急救援物资的调度问题,以时间性,经济性和可靠性为优化目标,建立了多目标决策模型,并给出求解算法。为提高应急响应能力、缩短救... 应急物流体理论(ELS3)是解决应急突发事件的宏观方法,以该理论基本原则为依据,从技术实施与应用角度研究应急救援物资的调度问题,以时间性,经济性和可靠性为优化目标,建立了多目标决策模型,并给出求解算法。为提高应急响应能力、缩短救援时间、减少损失提供一种实用的方法。 展开更多
关键词 应急物流体 应急限制期 应急供应点 多目标决策
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基于CBR应急保障物流体智能决策支持系统研究 被引量:12
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作者 韩小妹 韩景倜 《计算机工程与应用》 CSCD 北大核心 2007年第20期204-206,共3页
在对应急决策和应急保障物流体分析的基础上,应用基于案例推理技术和智能决策方法构建了应急保障物流体智能决策支持系统,讨论了系统的工作原理及体系结构,重点分析了系统的案例推理机制和关键技术,从而为应急状态下的物流保障决策和原... 在对应急决策和应急保障物流体分析的基础上,应用基于案例推理技术和智能决策方法构建了应急保障物流体智能决策支持系统,讨论了系统的工作原理及体系结构,重点分析了系统的案例推理机制和关键技术,从而为应急状态下的物流保障决策和原形系统的开发提供了理论支撑。 展开更多
关键词 基于案例推理 应急决策 决策支持系统 应急保障物流体
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应急物流体可靠性指标仿真 被引量:6
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作者 韩景倜 覃正 徐颖凯 《计算机应用研究》 CSCD 北大核心 2006年第11期134-136,共3页
可靠性是评价应急物流体的重要指标之一。根据应急物流体构件的复杂多变性,提出与传统系统可靠性不同的计算方法,并将仿真预测引入应急物流体可靠性指标计算,为评价多态、多结构的应急物流体总体可靠性提供基本算法。
关键词 应急物流体 可靠性 仿真
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草珊瑚超临界CO2流体萃取物抑菌效果和应用研究 被引量:31
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作者 李先春 王敦清 +3 位作者 赫荣安 曾思襄 熊秋林 程光英 《日用化学工业》 CAS CSCD 北大核心 1999年第2期17-18,共2页
试验表明:草珊瑚超临界CO2流体萃取物对金黄色葡萄球菌,大肠杆菌,伤寒沙门氏菌,铜绿假单胞等均有较好的抑菌效果,由该萃取物制成的草珊瑚药物牙膏不仅外观更好,口感也更佳。
关键词 草珊瑚 流体萃取 抑菌 牙膏 超临界二氧化碳
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姜黄超临界CO_2流体萃取物姜黄素含量测定 被引量:1
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作者 何媛媛 于得才 +1 位作者 孔令辉 李红英 《中成药》 CAS CSCD 北大核心 2007年第1期122-124,共3页
关键词 姜黄 超临界CO2流体萃取 姜黄素 姜黄总酚
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从生物化学的角度看担子菌子实体形成 被引量:3
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作者 北本丰 辻山彰一 《食用菌学报》 CSCD 北大核心 2015年第4期9-12,共4页
总结了从生物化学的角度看待担子菌子实体形成的研究进展。通过以金针菇为模型的RI示踪实验,解析了菌丝体中积蓄的糖原作为营养成长过程中的主要贮藏碳水化合物、随着子实体形成的开始而被分解、被转换为海藻糖后输送到子实体、并作为... 总结了从生物化学的角度看待担子菌子实体形成的研究进展。通过以金针菇为模型的RI示踪实验,解析了菌丝体中积蓄的糖原作为营养成长过程中的主要贮藏碳水化合物、随着子实体形成的开始而被分解、被转换为海藻糖后输送到子实体、并作为主要发育基质被利用。笔者率先发现了存在于海藻糖的合成与分解代谢中的新酶—海藻糖磷酸化酶(TP),接着,在几种食用菌的生化反应中证明了此酶存在并通过基因克隆方法发现此酶在子实体形成中的作用—在营养菌丝体中以糖原为基质催化加磷酸反应,形成α-G1P海藻糖,当海藻糖输送到子实体,借助该酶的加磷酸分解功能生成α-G1P葡萄糖,而葡萄糖作为子实体发育中的主要糖代谢基质而被加以利用。了解了营养菌丝从培养基中吸收的葡萄糖基本上不能从菌丝体输送到子实体。通过基因实验,检证了TP在营养菌丝体中对催化海藻糖的合成作用。另一方面,该酶还具有加磷酸分解从菌丝体输送到子实体的海藻糖的生理功能,伴随子实体发育的细胞内磷酸糖类分析证明了α-G1P(α-1磷酸葡萄糖)的含量比α-G6P(α-6磷酸葡萄糖)更多。另外,从子实体形成过程中氮化合物代谢分析表明,营养菌丝的菌体蛋白为形成子实体的主要氮素来源,当生殖生长启动时被菌丝体内的蛋白酶分解,形成的氨基酸输送到子实体并被用于子实体发育。通过这些研究的累积,已大致了解了碳素和氮素在子实体形成过程中的动态,但是,从营养生长转换到子实体形成的机制却至今仍不明了。 展开更多
关键词 代谢调控 子实体形成 输送碳水化合 贮藏碳水化合 蛋白质水解
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滇东北乐红大型铅锌矿床稀土元素地球化学特征 被引量:9
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作者 赵冻 韩润生 +1 位作者 王加昇 任涛 《矿物学报》 CSCD 北大核心 2017年第5期588-595,共8页
乐红铅锌矿床位于扬子地块西南缘,是滇东北铅锌(银)多金属矿集区中的典型代表。通过不同中段典型矿化-蚀变样品中白云石、方解石、重晶石及闪锌矿稀土元素地球化学研究,探讨了该矿床的成矿流体来源。灰黑色白云岩、脉状-团块状白云石、... 乐红铅锌矿床位于扬子地块西南缘,是滇东北铅锌(银)多金属矿集区中的典型代表。通过不同中段典型矿化-蚀变样品中白云石、方解石、重晶石及闪锌矿稀土元素地球化学研究,探讨了该矿床的成矿流体来源。灰黑色白云岩、脉状-团块状白云石、斑团状-脉状重晶石、脉状方解石和各世代闪锌矿的∑REE均较低,均值分别为6.44×10-6、5.62×10-6、4.66×10-6和8.88×10-6,S1:1.12×10-6,S2:0.35×10-6,S3:2.75×10-6;δEu分别为0.72、0.80、68.27和0.65,S1:2.08,S2:3.78,S3:0.75;稀土配分模式为LREE富集-HREE亏损的右倾型。白云石、方解石和闪锌矿在REE配分模式、Eu和Ce异常及La/Ho-Y/Ho图解上的分布等均与未蚀变白云岩接近,表明成矿流体主要来源于碳酸盐地层中的循环水;而早阶段重晶石稀土元素特征差别明显,可能与早期深部流体有关。综合研究表明成矿流体具多源性,可能为源自于深部流体沿构造带运移至有利部位与碳酸盐岩地层中循环水发生混合。Eu、Ce异常特征表明,从成矿早阶段到成矿晚阶段,成矿过程经历了早期高温、氧化→成矿期中高温、弱还原→晚期中低温、还原的演化过程。 展开更多
关键词 稀土元素 成矿流体 乐红铅锌矿床 滇东北矿集区
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Evolution of diagenetic fluid of ultra-deep Cretaceous Bashijiqike Formation in Kuqa depression 被引量:9
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作者 LI Ling TANG Hong-ming +7 位作者 WANG Xi LIAO Ji-jia QI Bai-long ZHAO Feng ZHANG Lie-hui FENG Wei TANG Hao-xuan SHI Lan 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第10期2472-2495,共24页
Diagenetic fluid types of the Cretaceous Bashijiqike formation are restored based on the analysis of petrographic,electron microprobe composition,inclusions homogenization temperature,salinity and vapor composition an... Diagenetic fluid types of the Cretaceous Bashijiqike formation are restored based on the analysis of petrographic,electron microprobe composition,inclusions homogenization temperature,salinity and vapor composition and laser carbon and oxygen isotope of diagenetic mineral,and regional geological background.Diagenetic fluid evolution sequence is analyzed on this basis.The crystalline dolomite cement has a low concerntration of Sr,high concerntration of Mn and higher carbon isotope,showing that the crystalline dolomite is affected by meteoric fresh water,associated with the tectonic uplift of late Cretaceous.Similarδ13CPDB,negative transfer ofδ18OPDB and the differentiation of the concerntration of Fe and Mn indicate that the diagenetic fluid of the vein dolomite cement is homologous with the diagenetic fluid of the crystalline dolomite cement,temperature and depth are the dominant factors of differential precipitation between these two carbonate cements.Anhydrite cements have high concerntration of Na,extremely low concerntration of Fe and Mn contents.Based on these data,anhydrite cements can be thought to be related to the alkaline fluid overlying gypsum-salt layer produced by dehydration.The barite vein has abnormally high concerntration of Sr,ultra-high homogenization temperature and high-density gas hydrocarbon inclusions,which is speculated to be the forward fluid by intrusion of late natural gas.Coexistence of methane inclusions with CO2 gas proves existence of acid water during the accumulation of natural gas in the late stages.Therefore,the alkaline environment and associated diagenesis between the meteoric fresh water in epidiagentic stage and carbonic acid in the late diagenesis have dominated the process of diagenesis and reservoir,the secondary porosity and fracture zone formed by gas accumulation is a favorable play for the exploration of ultra-deep reservoirs. 展开更多
关键词 ultra-deep reservoirs diagenetic minerals diagenetic fluids alkaline fluid meteoric fresh water
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Influence of polymers on drag and heat transfer of nanofluid past stretching surface: A molecular approach 被引量:4
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作者 ADEEL Ahmad MARIA Athar YASIR Khan 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第12期3912-3924,共13页
This article studies the influence of polymers on drag reduction and heat transfer enhancement of a nanofluid past a uniformly heated permeable vertically stretching surface. Our prime focus is on analyzing the possib... This article studies the influence of polymers on drag reduction and heat transfer enhancement of a nanofluid past a uniformly heated permeable vertically stretching surface. Our prime focus is on analyzing the possible effects of polymer inclusion in the nanofluid on drag coefficient, Nusselt number and Sherwood number. Dispersion model is considered to study the behavior of fluid flow and heat transfer in the presence of nanoparticles. Molecular approach is opted to explore polymer addition in the base fluid. An extra stress arises in the momentum equation as an outcome of polymer stretching. The governing boundary layer equations are solved numerically. Dependence of physical quantities of engineering interest on different flow parameters is studied. Reduction in drag coefficient, Nusselt number and Sherwood number is noticed because of polymer additives. 展开更多
关键词 POLYMERS NANOFLUID STRETCHING CONCENTRATION drag coefficient relaxation time heat flux
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Swimming of motile gyrotactic microorganisms and suspension of nanoparticles in a rheological Jeffery fluid with Newtonian heating along elastic surface 被引量:2
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作者 Siddra RANA Rashid MEHMOOD +1 位作者 M.M.BHATTI Mohsan HASSAN 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第11期3279-3296,共18页
Bioconvection plays an inevitable role in introducing sustainable and environment-friendly fuel cell technologies.Bio-mathematical modelling of such designs needs continuous refinements to achieve strong agreements in... Bioconvection plays an inevitable role in introducing sustainable and environment-friendly fuel cell technologies.Bio-mathematical modelling of such designs needs continuous refinements to achieve strong agreements in experimental and computational results.Actually,microorganisms transport a miscellaneous palette of ingredients in manufacturing industrial goods particularly in fertilizer industries.Heat transfer characteristics of molecular structure are measured by a physical phenomenon which is allied with the transpiration of heat within matter.Motivated by bioinspired fuel cells involved in near-surface flow phenomena,in the present article,we examine the transverse swimming of motile gyrotactic microorganisms numerically in a rheological Jeffery fluid near a stretching wall.The leading physical model is converted in a nonlinear system of ODEs through proper similarity alterations.A numerical technique called shooting method with R-K Fehlberg is applied via mathematical software and graphical presentations are obtained.The influence of all relative physical constraints on velocity,temperature,concentration,and volume fraction of gyrotactic microorganisms is expressed geometrically.It is found that heat and mass flux at the surface as well as density of motile microorganism’s declines for Brownian motion and thermophoresis parameter.Comparison in tabular form is made with existing literature to validate the results for limiting cases with convective boundary conditions. 展开更多
关键词 oblique stagnation point flow Jeffery fluid BIOCONVECTION swimming of motile gyrotactic NANOPARTICLES
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Adomian decomposition method simulation of von Kármán swrling bioconvection nanofluid flow 被引量:2
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作者 M D SHAMSHUDDIN S R MISHRA +1 位作者 O ANWAR BEG A KADIR 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第10期2797-2813,共17页
The study reveals analytically on the 3-dimensional viscous time-dependent gyrotactic bioconvection in swirling nanofluid flow past from a rotating disk.It is known that the deformation of the disk is along the radial... The study reveals analytically on the 3-dimensional viscous time-dependent gyrotactic bioconvection in swirling nanofluid flow past from a rotating disk.It is known that the deformation of the disk is along the radial direction.In addition to that Stefan blowing is considered.The Buongiorno nanofluid model is taken care of assuming the fluid to be dilute and we find Brownian motion and thermophoresis have dominant role on nanoscale unit.The primitive mass conservation equation,radial,tangential and axial momentum,heat,nano-particle concentration and micro-organism density function are developed in a cylindrical polar coordinate system with appropriate wall(disk surface)and free stream boundary conditions.This highly nonlinear,strongly coupled system of unsteady partial differential equations is normalized with the classical von Kármán and other transformations to render the boundary value problem into an ordinary differential system.The emerging 11th order system features an extensive range of dimensionless flow parameters,i.e.,disk stretching rate,Brownian motion,thermophoresis,bioconvection Lewis number,unsteadiness parameter,ordinary Lewis number,Prandtl number,mass convective Biot number,Péclet number and Stefan blowing parameter.Solutions of the system are obtained with developed semi-analytical technique,i.e.,Adomian decomposition method.Validation of the said problem is also conducted with earlier literature computed by Runge-Kutta shooting technique. 展开更多
关键词 nanofluids BIOCONVECTION rotating disk bioreactors von Kármán swirling flow Stefan blowing Adomian decomposition method(ADM)
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不同质量粒子分布SPH方法及其应用 被引量:2
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作者 艾孜海尔.哈力克 热合买提江.依明 +1 位作者 开依沙尔.热合曼 买买提明.艾尼 《振动与冲击》 EI CSCD 北大核心 2015年第22期62-67,共6页
光滑粒子流体动力学(SPH)方法是一种新发展起来的纯拉格朗日数值方法,其最大的优点是不需要对自由表面进行特殊处理,有利于模拟飞溅、破碎等高度非线性流。SPH方法的一个缺点是计算的时间复杂性高,因为需要大量粒子详细定义流体,使之计... 光滑粒子流体动力学(SPH)方法是一种新发展起来的纯拉格朗日数值方法,其最大的优点是不需要对自由表面进行特殊处理,有利于模拟飞溅、破碎等高度非线性流。SPH方法的一个缺点是计算的时间复杂性高,因为需要大量粒子详细定义流体,使之计算时间相应增加。在核半径保持不变的情况下为了提高计算效率和精度提出不同质量粒子分布的方法,即在关键计算区域分布较小质量粒子,而在其它区域分布较大质量粒子。首先通过静水数值模拟,初步验证了此方法的有效性。之后,对半浸泡振荡圆筒所产生的小振幅水波进行了数值模拟。将数值模拟结果与已有的实验结果进行了对比分析。分析结果表明此方法能够明显提高计算精度的同时可以节省大量计算时间。 展开更多
关键词 光滑流体动力学方法 波浪 振荡圆筒 不同质量粒子 流体与结构相互作用
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Thermal conductivity modeling of water containing metal oxide nanoparticles 被引量:1
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作者 Ahmad Azari 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第3期1141-1145,共5页
The nano particles have demonstrated great potential to improve the heat transfer characteristics of heat transfer fluids.Possible parameters responsible for this increase were studied. The heat transfer profile in th... The nano particles have demonstrated great potential to improve the heat transfer characteristics of heat transfer fluids.Possible parameters responsible for this increase were studied. The heat transfer profile in the nanolayer region was combined with other parameters such as volume fraction, particle radius thermal conductivity of the fluid, particle and nanolayer, to formulate a thermal conductivity model. Results predicting the thermal conductivity of nanofluids using the model were compared with experimental results as well as studies by other researchers. The comparison of the results obtained for the Cu O/water and Ti O2/water nanofluids studied shows that the correlation proposed is in closest proximity in predicting the experimental results for the thermal conductivity of a nanofluid. Also, a parametric study was performed to understand how a number of factors affect the thermal conductivity of nanofluids using the developed correlation. 展开更多
关键词 nanofluid effective thermal conductivity nanoparticle nanolayer modeling
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Liquid film falling behaviour on horizontal circular cylinder 被引量:3
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作者 CHUNG Han-shik K.Wusiman +5 位作者 KIM Seong-soo B.Nasan H.Afrianto Hafizur Rehman CHOI Du-youl JEONG Hyo-min 《Journal of Central South University》 SCIE EI CAS 2012年第5期1353-1358,共6页
The flow pattern behaviour of falling liquid film over three horizontal cylinders was evaluated.These flows can take three forms:discrete droplets,individual jets,and continuous sheet,and special attention is paid to ... The flow pattern behaviour of falling liquid film over three horizontal cylinders was evaluated.These flows can take three forms:discrete droplets,individual jets,and continuous sheet,and special attention is paid to the effects of the physical properties and geometrical parameters of the first two forms(droplets and jets) because these forms are more important in heat-transfer behaviour and less research has been published for these forms,The flow modes and experimental results were successfully compared with previous experimental literatures,and also the effects of liquid flow rate,tube diameter,and tube spacing on departure site spacing,in both drop and jet modes,were evaluated in the low Galileo number and high viscosity fluid(cooking oil),to help developing criteria for determining falling film modes and their transitions,and to understand the heat transfer characteristics associated with each mode. 展开更多
关键词 falling film flow mode CYLINDER
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Impact of human motion on TVOCs inhalation dose under side re-circulated ventilation
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作者 张泉 曾丽萍 +2 位作者 谢更新 张国强 牛建磊 《Journal of Central South University》 SCIE EI CAS 2009年第4期599-607,共9页
The main objectives were to (1) calculate the total volatile organic compounds (TVOCs) inhalation dose, (2) analyze the proportions of human’s inhaled contaminant dose from different sources, and (3) present a newly ... The main objectives were to (1) calculate the total volatile organic compounds (TVOCs) inhalation dose, (2) analyze the proportions of human’s inhaled contaminant dose from different sources, and (3) present a newly defined ratio of relative inhalation dose level (RIDL) to assess indoor air quality (IAQ). A user defined function based on CFD (computational fluid dynamics) was developed, which integrated human motion model with TVOCs emission model in a high sidewall air supply ventilation mode. Based on simulation results of 10 cases, it is shown that the spatial concentration distribution of TVOCs is affected by human motion. TVOCs diffusion characteristic of building material is the most effective way to impact the TVOCs inhalation dose. From the RIDL index, case A-2 has the most serious IAQ problem, while case D-1 is of the best IAQ. 展开更多
关键词 indoor air quality (IAQ) human motion computational fluid dynamics (CFD) simulation volatile organic compounds(VOCs) CONTAMINANT relative inhalation dose level (RIDL) index
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Video learning based image classification method for object recognition
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作者 LEE Hong-ro SHIN Yong-ju 《Journal of Central South University》 SCIE EI CAS 2013年第9期2399-2406,共8页
Automatic image classification is the first step toward semantic understanding of an object in the computer vision area.The key challenge of problem for accurate object recognition is the ability to extract the robust... Automatic image classification is the first step toward semantic understanding of an object in the computer vision area.The key challenge of problem for accurate object recognition is the ability to extract the robust features from various viewpoint images and rapidly calculate similarity between features in the image database or video stream.In order to solve these problems,an effective and rapid image classification method was presented for the object recognition based on the video learning technique.The optical-flow and RANSAC algorithm were used to acquire scene images from each video sequence.After the selection of scene images,the local maximum points on comer of object around local area were found using the Harris comer detection algorithm and the several attributes from local block around each feature point were calculated by using scale invariant feature transform (SIFT) for extracting local descriptor.Finally,the extracted local descriptor was learned to the three-dimensional pyramid match kernel.Experimental results show that our method can extract features in various multi-viewpoint images from query video and calculate a similarity between a query image and images in the database. 展开更多
关键词 image classification multi-viewpoint image feature extraction video learning
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Rotational nanofluids for oxytactic microorganisms with convective boundary conditions using bivariate spectral quasi-linearization method 被引量:1
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作者 Mlamuli DHLAMINI Hiranmoy MONDAL +1 位作者 Precious SIBANDA Sandile MOTSA 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第3期824-841,共18页
In this study,we considered the three-dimensional flow of a rotating viscous,incompressible electrically conducting nanofluid with oxytactic microorganisms and an insulated plate floating in the fluid.Three scenarios ... In this study,we considered the three-dimensional flow of a rotating viscous,incompressible electrically conducting nanofluid with oxytactic microorganisms and an insulated plate floating in the fluid.Three scenarios were considered in this study.The first case is when the fluid drags the plate,the second is when the plate drags the fluid and the third is when the plate floats on the fluid at the same velocity.The denser microorganisms create the bioconvection as they swim to the top following an oxygen gradient within the fluid.The velocity ratio parameter plays a key role in the dynamics for this flow.Varying the parameter below and above a critical value alters the dynamics of the flow.The Hartmann number,buoyancy ratio and radiation parameter have a reverse effect on the secondary velocity for values of the velocity ratio above and below the critical value.The Hall parameter on the other hand has a reverse effect on the primary velocity for values of velocity ratio above and below the critical value.The bioconvection Rayleigh number decreases the primary velocity.The secondary velocity increases with increasing values of the bioconvection Rayleigh number and is positive for velocity ratio values below 0.5.For values of the velocity ratio parameter above 0.5,the secondary velocity is negative for small values of bioconvection Rayleigh number and as the values increase,the flow is reversed and becomes positive. 展开更多
关键词 BIOCONVECTION oxytactic microorganisms velocity ratio rotational nanofluid bivariate spectral quasilinearization method(BSQLM)
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Heat transfer intensification in hydromagnetic and radiative 3D unsteady flow regimes: A comparative theoretical investigation for aluminum and γ-aluminum oxides nanoparticles 被引量:2
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作者 Naveed AHMED ADNAN +3 位作者 Umar KHAN Syed Zulfiqar Ali ZAIDI Imran FAISAL Syed Tauseef MOHYUD-DIN 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第5期1233-1249,共17页
This article investigates the colloidal study for water and ethylene glycol based nanofluids.The effects of Lorentz forces and thermal radiation are considered.The process of non-dimensionalities of governing equation... This article investigates the colloidal study for water and ethylene glycol based nanofluids.The effects of Lorentz forces and thermal radiation are considered.The process of non-dimensionalities of governing equations is carried out successfully by means of similarity variables.Then,the resultant nonlinear nature of flow model is treated numerically via Runge-Kutta scheme.The characteristics of various pertinent flow parameters on the velocity,temperature,streamlines and isotherms are discussed graphically.It is inspected that the Lorentz forces favors the rotational velocity and rotational parameter opposes it.Intensification in the nanofluids temperature is observed for volumetric fraction and thermal radiation parameter and dominating trend is noted for γ-aluminum nanofluid.Furthermore,for higher rotational parameter,reverse flow is investigated.To provoke the validity of the present work,comparison between current and literature results is presented which shows an excellent agreement.It is examined that rotation favors the velocity of the fluid and more radiative fluid enhances the fluid temperature.Moreover,it is inspected that upturns in volumetric fraction improves the thermal and electrical conductivities. 展开更多
关键词 conventional fluids aluminum and γ-aluminum oxides magnetic field thermal radiation Runge-Kutta scheme shear stress local rate of heat transfer
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Fluid-solid interaction of resistance loss of flexible hose in deep ocean mining 被引量:3
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作者 王志 饶秋华 刘少军 《Journal of Central South University》 SCIE EI CAS 2012年第11期3188-3193,共6页
The resistance loss of transportation was studied and the influences of buoyancy layout,mineral content and elastic modulus of flexible hose were investigated based on three-dimensional finite element model of fluid-s... The resistance loss of transportation was studied and the influences of buoyancy layout,mineral content and elastic modulus of flexible hose were investigated based on three-dimensional finite element model of fluid-solid interaction by MSC.MARC/MENTAT software.The numerical results show that the resistance losses increase with the increase of mineral content Cv and velocity of internal fluid v and decrease with the increase of elastic modulus E of flexible hose.The buoyancy layout and the velocity of internal fluid have greater impacts on the resistance losses than the elastic modulus of flexible hose.In order to reduce the resistance losses and improve the efficiency of the deep-ocean mining,Cv and v must be restricted in a suitable range (e.g.10%-25% and 2.5-4 m/s).Effective buoyancy layout (such as Scheme C and D) should be adopted and the suitable material of moderate E should be used for the flexible hose in deep-ocean mining. 展开更多
关键词 resistance loss flexible hose fluid-solid interaction deep-ocean mining finite element method
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