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ProfiBus协议的实时性能参数分析 被引量:12
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作者 茹锋 贾立新 薛钧义 《小型微型计算机系统》 CSCD 北大核心 2003年第5期933-936,共4页
在详细探讨Profibus现场总线数据链路层(MAC)协议的基础上,采用随机Petri网方法对协议令牌循环时间和总线存取效率进行建模分析,着重就协议的实时性能给出了确定随机Petri网(DSPN)模型和性能指标计算方法,并结合实例进行了计算和结果比较.
关键词 现场总线 PROFIBUS总线 实时性能参数分析 PROFIBUS协议 PETRI网
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ATR/冲压组合动力高超声速飞行器性能分析 被引量:5
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作者 李永洲 李哲 +2 位作者 李光熙 南向谊 张冬青 《火箭推进》 CAS 2018年第3期6-11,共6页
针对ATR/冲压并联组合动力的高超声速飞行器,按照典型弹道对其总体性能参数进行计算和分析。结果表明:ATR工作段飞行器的加速性能良好,尤其是在Ma2.0~3.5范围内。总航程随着推重比增加而迅速增加,而飞行时间差别很小,其中ATR工作阶段所... 针对ATR/冲压并联组合动力的高超声速飞行器,按照典型弹道对其总体性能参数进行计算和分析。结果表明:ATR工作段飞行器的加速性能良好,尤其是在Ma2.0~3.5范围内。总航程随着推重比增加而迅速增加,而飞行时间差别很小,其中ATR工作阶段所占比例显著降低。总航程和飞行时间随着升阻比增加而显著增加,且影响最大的是冲压发动机工作的Ma6.0附近区域。上述研究从飞行器系统角度出发,进一步深化了对ATR发动机的认识。 展开更多
关键词 高超声速飞行器 组合循环发动机 ATR发动机 冲压发动机 性能参数分析
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面向空间天线的TWF复合材料性能研究 被引量:6
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作者 李怡晨 宋燕平 胡飞 《中国空间科学技术》 EI CSCD 北大核心 2020年第3期25-35,共11页
利用碳纤维三向编织物(triaxial woven fabric,TWF)作为增强材料,与柔性基体材料硅橡胶复合,制成兼具一定柔性和刚性的复合材料壳膜结构,用于卫星天线反射器,是一种新型的高精度可展开天线实现方案。采用复合材料细观方法,对碳纤维增强... 利用碳纤维三向编织物(triaxial woven fabric,TWF)作为增强材料,与柔性基体材料硅橡胶复合,制成兼具一定柔性和刚性的复合材料壳膜结构,用于卫星天线反射器,是一种新型的高精度可展开天线实现方案。采用复合材料细观方法,对碳纤维增强硅橡胶TWF复合材料进行了力学性能的研究。首先由纤维和基体的材料特性得到均质纤维束的材料特性;接下来考虑纤维束交织情况(起伏波动)建立由纤维束组成的单胞实体有限元模型;然后对单胞实体有限元模型进行均匀化分析,施加周期性边界条件,最终得到等效的均质材料特性;为满足天线反射器高性能需求,分析了碳纤维种类、纤维体积分数对单胞等效性能的影响规律。对该材料力学性能的研究,可以为其未来应用于大型高精度可展开天线反射器提供一定的理论依据。 展开更多
关键词 高精度可展开天线 硅橡胶基TWF复合材料 细观建模 周期性边界条件 参数性能分析
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Dynamic performance assessment of shallow buried circular tunnels under explosion hazard
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作者 ZHANG Chen-long ZHANG Dong-ming +1 位作者 HUANG Zhong-kai HUANG Zhen 《Journal of Central South University》 CSCD 2024年第11期3868-3884,共17页
In recent years,the escalation in accidental explosions has emerged as a formidable threat to tunnel infrastructures.Therefore,it is of great significance to conduct a dynamic performance analysis of the tunnels,to im... In recent years,the escalation in accidental explosions has emerged as a formidable threat to tunnel infrastructures.Therefore,it is of great significance to conduct a dynamic performance analysis of the tunnels,to improve the safety and maintain the functionality of underground transport hubs.To this end,this study proposes a dynamic performance assessment framework to assess the extent of damage of shallow buried circular tunnels under explosion hazards.First,the nonlinear dynamic finite element numerical model of soil-tunnel interaction system under explosion hazard was established and validated.Then,based on the validated numerical model,an explosion intensity(EI)considering both explosion equivalent and relative distance was used to further analyze the dynamic response characteristics under typical explosion conditions.Finally,this study further explored the influence of the integrity and strength of the surrounding soil,concrete strength,lining thickness,rebar strength,and rebar rate on the tunnel dynamic performance.Our results show that the dynamic performance assessment framework proposed for shallow circular tunnels fully integrates the coupling effects of explosion equivalent and distance,and is able to accurately measure the degree of damage sustained by these structures under different EI.This work contributes to designing and managing tunnels and underground transport networks based on dynamic performance,thereby facilitating decision-making and efficient allocation of resources by consultants,operators,and stakeholders. 展开更多
关键词 TUNNELS explosion hazard dynamic performance assessment parametric analysis numerical study
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Parametric analysis on buffeting performance of a long-span high-speed railway suspension bridge 被引量:5
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作者 ZHAO Kai-yong WANG Hao +2 位作者 TAO Tian-you GAO Hui WU Tong 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2574-2588,共15页
The buffeting performance of kilometer-level high-speed railway suspension bridges has a great impact on the smooth operation of high-speed trains.To investigate the buffeting performance of the structure significantl... The buffeting performance of kilometer-level high-speed railway suspension bridges has a great impact on the smooth operation of high-speed trains.To investigate the buffeting performance of the structure significantly different from traditional suspension bridges,the first long-span high-speed railway suspension bridge,Wufengshan Yangtze River Bridge(WYRB),is taken as a numerical example to demonstrate the effects of structural parameters and wind field parameters on the buffeting responses.Based on the design information,the spatial finite element model(FEM)of WYRB is established before testing its accuracy.The fluctuating wind fields are simulated via both classical and stochastic wave based spectral representation method(SRM).Finite element method is further taken to analyze the parametric sensitivity on wind induced buffeting responses in time domain.The results show that the vertical displacement is more sensitive to the changing dead load than the lateral and torsional ones.The larger stiffness of the main girder and the lower sag-to-span ratio are both helpful to reduce the buffeting responses.Wind spectrum and coherence function are key influencing factors to the responses so setting proper wind field parameters are essential in the wind-resistant design stage.The analytical results can provide references for wind resistance analysis and selection of structural and fluctuating wind field parameters for similar long-span high-speed railway suspension bridges. 展开更多
关键词 high-speed railway suspension bridge buffeting performance numerical analysis parametric analysis wind field simulation
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Hydration process of rice husk ash cement paste and its corrosion resistance of embedded steel bar 被引量:5
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作者 WANG Hui ZHANG Ai-lian +7 位作者 ZHANG Lin-chun WANG Qian HAN Yan LIU Jun-zhe GAO Xiao-jian SHI Fei-ting LIN Xue-yan FENG Li-yu 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第11期3464-3476,共13页
Thermogravimetric analysis and electrical resistivity were used to determine the hydration process of cement paste with rice husk ash(RHA)(0−15%)and water-cement ratio of 0.4 in this work.X-ray diffraction(XRD)method ... Thermogravimetric analysis and electrical resistivity were used to determine the hydration process of cement paste with rice husk ash(RHA)(0−15%)and water-cement ratio of 0.4 in this work.X-ray diffraction(XRD)method and scanning electron microscopy(SEM)were used to survey crystal composition and microstructures of specimens cured for 3 h,1 d,7 d and 28 d.Finally,electrical parameters(electrical resistance and AC impedance spectroscopy)of steel bars reinforced cement paste were investigated to study the effect of RHA on the corrosion resistance.Results showed that RHA could affect the cement hydration by hydration promotion and pozzolanic effect.The evaluation function for electrical resistivity and curing ages fitted well with linear increasing function.The addition of RHA higher than 5%demonstrated a decreasing role in the electrical resistivity of cement paste at earlier curing ages(3−7 d).Meanwhile,when at later curing ages(7−28 d)the result was the opposite.Moreover,RHA demonstrated positive effects on corrosion resistance of steel bars in cement paste. 展开更多
关键词 rice husk ash thermogravimetric analysis electrical parameters X-ray diffraction corrosion resistance
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Parameter design and performance analysis of zero inertia continuously variable transmission system 被引量:1
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作者 胡建军 吉毅 晏玖江 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期180-188,共9页
In order to solve the problem of weak power performance of vehicle equipped with continuously variable transmission(CVT) system working under transient operating conditions, a new CVT equipped with planetary gear mech... In order to solve the problem of weak power performance of vehicle equipped with continuously variable transmission(CVT) system working under transient operating conditions, a new CVT equipped with planetary gear mechanism and flywheel was researched, a design method of transmission parameter optimization was proposed, and the comprehensive matching control strategy was established for the new transmission system. Fuzzy controllers for throttle opening and CVT speed ratio were designed, and power performance and fuel economy of both vehicles respectively equipped with conventional CVT system and new transmission system wrere compared and analyzed by simulation. The results show that power performance and fuel economy of the vehicle equipped with new transmission system are better than that equipped with conventional CVT, thus the rationality of the parameter design method and control algorithm are verified. 展开更多
关键词 continuously variable transmission inertia optimization fuzzy control simulation
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