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21.
文章主要介绍的是重卡新能源高压线束工艺分解过程中,对于原材料选型、屏蔽层的处理以及导线对插接器防水性能的影响进行简单分析,简明扼要地阐述了高压线加工的难点,为线束工艺设计人员提供一些参考。  相似文献   
22.
汽车空调作为整车内部主要耗能附件,对用户实际使用油耗的影响巨大,有着很大的节能潜力。文章基于WLTC循环,采用不同试验方案,对多辆轻型车进行空调油耗,考察国内多款主流车型的空调油耗水平及空调制冷效果,验证压缩机排量和车辆前端密封导流对空调油耗的影响。结果表明:1)空调能耗占比较大,不容忽视,不同车辆的空调能耗占比总体分布在22%左右。2)多数车辆无法达到10min时头部平均温度达到23℃的要求,无法获得节能效果值。3)适当降低压缩机排量和增加车辆前端密封导流都具有一定的节油效果。  相似文献   
23.
统计能量法及其在提速客车噪声预测中的应用   总被引:3,自引:0,他引:3  
为了预测提速客车内部噪声能量分布及噪声传递路径,用统计能量法对其进行了分析,讨论了统计能量法分析复杂振声系统的基本原理及稳态振声系统统计能量分析的基本方程.以唐山车辆厂提速客车为应用实例,获得了车内总的声功率在车底架、窗玻璃等主要传递路径上的能量分布,并给出了车窗双层玻璃不同厚度的高频响应以及车底架地板涂抹阻尼材料吸收低频声能的机理的治理措施。  相似文献   
24.
介绍了能力谱方法的主要原理、计算方法和分类,说明了能力谱方法作为一种基于性能的能力谱方法在确定结构弹塑性地震响应中的重要地位。  相似文献   
25.
基于两级温差发电的船舶废热回收试验研究   总被引:1,自引:1,他引:0  
对于船舶柴油机而言,其所做功的30%都以废热的形式随尾气排放到了大气中。利用温差发电(TEG)技术回收船舶余热进行发电具有极其广阔的发展前景。因此提出了一种利用船舶柴油机尾气废热进行两级温差发电的新型装置。在对两级温差发电系统进行建模后,搭建了两级温差发电装置并进行了测试。理论分析和实验结果表明该装置利用温差发电技术对船舶余热回收是可行的。当热端温度达到473 K时,该温差发电实验装置可输出功率250 W,系统热效率为5.35%,相比单级TEG在相同条件下4.04%的热效率,该系统提高了32%。最后,对系统优化和装置的进一步改进进行了探讨。  相似文献   
26.
Globalization, greenhouse gas emissions and energy concerns, emerging vehicle technologies, and improved statistical modeling capabilities make the present moment an opportune time to revisit aggregate vehicle miles traveled (VMT), energy consumption, and greenhouse gas (GHG) emissions forecasting for passenger transportation. Using panel data for the 48 continental states during the period 1998-2008, the authors develop simultaneous equation models for predicting VMT on different road functional classes and examine how different technological solutions and changes in fuel prices can affect passenger VMT. Moreover, a random coefficient panel data model is developed to estimate the influence of various factors (such as demographics, socioeconomic variables, fuel tax, and capacity) on the total amount of passenger VMT in the United States. To assess the influence of each significant factor on VMT, elasticities are estimated. Further, the authors investigate the effect of different policies governing fuel tax and population density on future energy consumption and GHG emissions. The presented methodology and estimation results can assist transportation planners and policy-makers in determining future energy and transportation infrastructure investment needs.  相似文献   
27.
This study quantifies the energy and environmental impact of a selection of traffic calming measures using a combination of second-by-second floating-car global positioning system data and microscopic energy and emission models. It finds that traffic calming may result in negative impacts on vehicle fuel consumption and emission rates if drivers exert aggressive acceleration levels to speed up to their journeys. Consequently by eliminating sharp acceleration maneuvers significant savings in vehicle fuel consumption and emission rates are achievable through driver education. The study also demonstrates that high emitting vehicles produce CO emissions that are up to 25 times higher than normal vehicle emission levels while low emitting vehicles produce emissions that are 15–35% of normal vehicles. The relative increases in vehicle fuel consumption and emission levels associated with the sample traffic calming measures are consistent and similar for normal, low, and high emitting vehicles.  相似文献   
28.
The performance of container terminals needs to be improved to handle the growth of transported containers and maintain port sustainability. This paper provides a methodology for improving the handling capacity of an automated container terminal in an energy-efficient way. The behavior of a container terminal is considered as consisting of a higher level and a lower level represented by discrete-event dynamics and continuous-time dynamics, respectively. These dynamics represent the behavior of a large number of terminal equipment. The dynamics need to be controlled. For controlling the higher level dynamics, a minimal makespan problem is solved. For this, the minimal time required by equipment for performing an operation at the lower level is needed. The minimal time for performing an operation at the lower level is obtained using Pontryagin’s Minimum Principle. The actual operation time allowed by the higher level for processing an operation at the lower level is subsequently determined by a scheduling algorithm at the higher level. Given an actual operation time, the lower level dynamics are controlled using optimal control to achieve minimal energy consumption while respecting the time constraint. Simulation studies illustrate how energy-efficient management of equipment for the minimal makespan could be obtained using the proposed methodology.  相似文献   
29.
This primary objective of this paper is to examine the causes for the change in energy consumption in the transport sector in India. The pattern of energy consumption and their causes for change are benchmarked against select countries. A mathematical model that decomposes changes in energy consumption to various factors has been used. The changes in the energy consumption are attributed to growth in transport volume, structural change or modal shift, and energy intensity. The analysis is conducted for passenger and freight transport separately. Results indicate that the growth in transport volume has been the main cause for increase in energy consumption for both passenger and freight transport in India despite the decline in energy intensity of various transport modes. Though not surprising for a growing economy like India, this poses a challenge for the future. Currently, India is a low carbon economy.  相似文献   
30.
以C8051F单片机作为中央处理器,采集电参数计量模块和TAX2型机车安全综合监测装置的信息,生成并存储电量消耗记录;通过USB盘转储数据到地面进行处理和分析。系统整体设计具有模块化、准确可靠的特点,对电力机车节能降耗措施提供合理的依据。  相似文献   
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