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计算任意截面的自由扭转常数可采用有限元分析方法,位移法有限元计算出的自由扭转常数比理论值偏大且网格剖分尺寸大小明显影响计算速度。本文从弹性理论圣维南自由扭转问题基本假设出发,针对悬臂梁模型采用基于位移的最小势能原理和基于应力的最小余能原理两种方法,推导势能泛函和余能泛函表达式,并求得泛函的极小值从而推导出相应的有限元方程,得到两种计算自由扭转常数公式。根据推导出的有限元方程,采用三角形单元编写程序进行两种截面的计算并与理论值对比。对比结果表明,采用两种方法计算自由扭转常数并取其平均值作为最终结果相较于采用单一位移法计算其精度大幅提高,两种方法互相参考有利于解决计算结果偏大和计算量过大的问题。 相似文献
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In many cities, diesel buses are being replaced by electric buses with the aim of reducing local emissions and thus improving air quality. The protection of the environment and the health of the population is the highest priority of our society. For the transport companies that operate these buses, not only ecological issues but also economic issues are of great importance. Due to the high purchase costs of electric buses compared to conventional buses, operators are forced to use electric vehicles in a targeted manner in order to ensure amortization over the service life of the vehicles. A compromise between ecology and economy must be found in order to both protect the environment and ensure economical operation of the buses.In this study, we present a new methodology for optimizing the vehicles’ charging time as a function of the parameters CO2eq emissions and electricity costs. Based on recorded driving profiles in daily bus operation, the energy demands of conventional and electric buses are calculated for the passenger transportation in the city of Aachen in 2017. Different charging scenarios are defined to analyze the influence of the temporal variability of CO2eq intensity and electricity price on the environmental impact and economy of the bus. For every individual day of a year, charging periods with the lowest and highest costs and emissions are identified and recommendations for daily bus operation are made. To enable both the ecological and economical operation of the bus, the parameters of electricity price and CO2 are weighted differently, and several charging periods are proposed, taking into account the priorities previously set. A sensitivity analysis is carried out to evaluate the influence of selected parameters and to derive recommendations for improving the ecological and economic balance of the battery-powered electric vehicle.In all scenarios, the optimization of the charging period results in energy cost savings of a maximum of 13.6% compared to charging at a fixed electricity price. The savings potential of CO2eq emissions is similar, at 14.9%. From an economic point of view, charging between 2 a.m. and 4 a.m. results in the lowest energy costs on average. The CO2eq intensity is also low in this period, but midday charging leads to the largest savings in CO2eq emissions. From a life cycle perspective, the electric bus is not economically competitive with the conventional bus. However, from an ecological point of view, the electric bus saves on average 37.5% CO2eq emissions over its service life compared to the diesel bus. The reduction potential is maximized if the electric vehicle exclusively consumes electricity from solar and wind power. 相似文献
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飞轮储能具有绿色无污染的特点,发展潜能巨大。文章以电磁耦合式储能飞轮为研究对象,将其应用于纯电动汽车的制动能量回收,通过整车仿真,分析电磁耦合式储能飞轮的能量回收效率。建立搭载电磁耦合式储能飞轮系统的整车模型,并仿真验证,在初速度为70 km/h时,制动时间为5.853 s,制动距离为70.67 m。分别在不同初始速度和储能飞轮转动惯量条件下进行制动仿真。随着初速度提高,电磁转差离合器作用时间延长,飞轮储存能量增加,但储能飞轮的回收效率相差不大,且能量回收效率均不低于22.4%;转动惯量越大,回收的能量多,回收效率高,但制动时间增加,不利于行车的安全性。由此得出结论:电磁耦合式储能飞轮系统可以有效回收制动产生的能量,选择合适转动惯量的飞轮可以提高制动能量的回收效率。 相似文献
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氢能作为一种高效、清洁、可持续利用的二次能源被认为是构建未来以可再生能源为主的多元能源结构的重要载体,以其开发和利用技术为主逐渐形成全球化氢能产业规模,氢能产业技术发展离不开氢能技术标准的推动和支撑,纵观国内外氢能技术标准化的发展及现况,我国氢能技术与国外还存在很大的差距,在液氢制取与储运、船用氢能燃料电池动力系统、加氢站关键设备及部件等技术方面需要加大科研投入,预研相关技术标准,提前谋划布局,以标准引领我国氢能技术及产业快速、高质量发展。 相似文献
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针对一款串联型插电式混合动力公交车,文章基于MTLALB建立整车和各部件数值模型。在中国典型城市公交工况下,建立基于全局优化的DP策略,并与CD-CS策略和PMP策略进行能耗对比分析。结果表明:(1)基于CD-CS策略的后期SOC在一定范围内波动,DP策略与PMP策略的SOC轨迹近似呈线性变化。(2)CD-CS策略较DP策略的能耗成本高22.68%,PMP策略比DP策略的能耗成本高0.30%。DP策略与PMP策略可以合理分配能量源,实现全局最优,但DP策略相比PMP策略计算量大。 相似文献
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随着新规范对船舶及海上工作平台提出了更高要求,舱室噪声的控制及优化设计越来越受到人们的关注。本文首先对全频段舱室噪声预报软件——VA One软件统计能量分析理论及软件概况进行了阐述,其次应用该软件对海洋核动力平台进行几何建模与仿真计算。通过对舱室仿真计算结果与标准指标要求的对比分析,在设计阶段提出了海洋核动力平台舱室空气噪声综合治理降噪方案,该措施可以缩短建造周期、降低制造成本,提高海洋核动力平台的舒适性与安全性,具有十分重要的经济效益和社会效益。 相似文献
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Contrary to most signal decomposition methods that usually decompose an original signal into a series of components simultaneously, a novel approach based on repeated extraction of Maximum Energy Component (MEC) is proposed. The approach starts from determination of the MEC referring to the estimated Power Spectral Density (PSD) function, and then represents the MEC by employing an exponential function to fit the original signal. By defining a stopping criterion based on two adjacent estimated PSDs, each MEC can be accurately extracted with an improved performance throughout the entire signal decomposition. To verify the proposed method, a single degree-of-freedom system subject to harmonic loads has been examined. Numerical results show that the analytical response can not only be decomposed into four MECs corresponding to the excitation and the system, respectively, but also provide an accurate estimation of natural frequency and damping ratio of the system. Meanwhile, by observing results from the Ensemble Empirical Mode Decomposition (EEMD), Variational Mode Decomposition (VMD) and Prony based on state-space model (Prony-SS), an improved decomposition accuracy has been achieved from the proposed approach. Furthermore, experimental data from the Norwegian Deepwater Programme and two sets of field-test data from one fixed offshore platform and an offshore wind turbine have been used to demonstrate the correctness of the developed signal decomposition method. It is noted that divergence in results by Prony-SS can be observed when a very large model order is used, while the proposed method provides the better decomposition and reconstruction of signals. 相似文献