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高速履带车辆制动能量与制动力分布规律预测方法研究 被引量:7
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作者 张舒阳 张豫南 +2 位作者 宁克焱 颜南明 方青峰 《兵工学报》 EI CAS CSCD 北大核心 2019年第5期904-914,共11页
为预测高速履带车辆制动系统能量与制动力的分布规律,以某型履带车辆为例建立其整车动力学模型、推进系统模型以及制动系统模型,提出一种由路线长度、坡度、半径、侧倾角、路面功率谱密度、行驶阻力系统.土壤最大附着系数、最大转向阻... 为预测高速履带车辆制动系统能量与制动力的分布规律,以某型履带车辆为例建立其整车动力学模型、推进系统模型以及制动系统模型,提出一种由路线长度、坡度、半径、侧倾角、路面功率谱密度、行驶阻力系统.土壤最大附着系数、最大转向阻力系数8个参数定义试验场地的建模方法。分析了道路参数对车速的影响;采用最优控制理论设计车辆最短时间仿真行驶策略,基于试验数据建立二元线性回归方程修正仿真制动转矩。通过试验与仿真验证了模型的准确性以及控制策略的有效性。基于1000km试验数据建立典型试验场地模型,并预测了6000km车辆全寿命里程制动能量与制动力分布情况。仿真与预测结果验证了该方法的可行性。 展开更多
关键词 履带车辆 动系统 动能量与制动力分布 最优控
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小减压量下制动力差异对重载列车纵向力影响研究
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作者 李巧银 林小杰 +1 位作者 谢磊 张杰 《铁道车辆》 2024年第5期164-168,共5页
为研究制动力差异对重载列车纵向力的影响,分析了车辆制动力影响因素及车辆间制动力差异的原因。以C 80B型车辆为例,分析了各影响因素的波动范围,仿真计算了不同大小制动力在不同分布工况下的车钩力。结果表明:与制动力均布且均处于平... 为研究制动力差异对重载列车纵向力的影响,分析了车辆制动力影响因素及车辆间制动力差异的原因。以C 80B型车辆为例,分析了各影响因素的波动范围,仿真计算了不同大小制动力在不同分布工况下的车钩力。结果表明:与制动力均布且均处于平均值为对比,车辆制动力在差异范围内随机分布对列车纵向力影响小;列车以车辆制动力差异分为n部(n≥2),n越小,列车纵向力越大,制动力差异越大,列车纵向力越大。 展开更多
关键词 重载列车 纵向力 制动力分布 动力差异 小减压量 仿真计算
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Study on Dynamic Mechanism of Urban Expansion: A Case Study of Shandong Province
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作者 Zhang Xiaoqing Ren Jianlan 《Chinese Journal of Population,Resources and Environment》 北大核心 2007年第3期37-42,共6页
This paper aims at studying the dynamic mechanism of urban expansion and its role. Based on the economic model of urban spatial structure and applying panel data in Shandong Province, the paper concludes. Economic gro... This paper aims at studying the dynamic mechanism of urban expansion and its role. Based on the economic model of urban spatial structure and applying panel data in Shandong Province, the paper concludes. Economic growth and transition of economic structure have played the most powerful role in urban expansion. An increase in population helps the core to extend. Increasing agricultural productivity can provide a countervailing force. An increase in transportation costs will limit urban expan- sion. An increase in the marginal productivity of land in housing production will increase urban expansion. Fiscal and taxation policies also have encouraged the extensive shift of cultivated land into build-up area. This paper also suggests that if high rate increasing GDP is needed, the urban core will continue to expand. The government should take measures to improve the rapid growth of the city. 展开更多
关键词 urban extent dynamic mechanism economic modelof urban spatial structure panel data
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Fabrication of chitosan microspheres for efficient adsorption of methyl orange 被引量:3
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作者 Linlin Zhai Zhishan Bai +2 位作者 Yong Zhu Bingjie Wang Wenqiang Luo 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2018年第3期657-666,共10页
In this article, morphology, structure and size controllable chitosan microspheres with high mechanical strength were synthesized by microfluidic technology combining chemical crosslinking and used as an adsorbent for... In this article, morphology, structure and size controllable chitosan microspheres with high mechanical strength were synthesized by microfluidic technology combining chemical crosslinking and used as an adsorbent for methyl orange. The synthesized adsorbents were characterized using scanning electron microscopy(SEM),Fourier transform infrared spectroscopy(FTIR), and an Energy Dispersive Spectrometer(EDS). The effect of pH revealed that the adsorption process depended on pH and the pH variation of methyl orange solution after adsorption indicated that adsorption capacity was affected through the associated role of chitosan nature and pH variation. Experimental results suggested that the as-prepared chitosan microspheres were controlled within a narrow size distribution(coefficients of variation is 1.81%), whose adsorption capacity reached to 207 mg·g^(-1) and mechanical strength was suitable to resist forces. In addition, the adsorption isotherm was well fitted with the Langmuir model, and the adsorption kinetic was best described by the pseudo-second-order kinetic model.The high performance microfluidic-synthesized chitosan microspheres have promising potentials in the applications of removing dyes from wastewater. 展开更多
关键词 Microfluidic technology Chitosan microspheres Adsorption Methyl orange
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