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排序方式: 共有81条查询结果,搜索用时 31 毫秒
1.
杨智 《船舶工程》2020,42(S1):487-497
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   
2.
燃料电池电动车车载甲醇重整器   总被引:3,自引:0,他引:3  
对目前世界几大汽车公司研制开发的燃料电池电动汽车车载甲醇重整器加以介绍,着重讨论了重整器的设计与重整催化剂的布置。指出,甲醇重整器的效果良好,但重整器出口富氢重整气中CO的含量仍然很高,而较高浓度的CO会使燃料电池电极中毒。因此,从重整器中产生出来的重整气在进入燃料电池以前要进行净化。  相似文献   
3.
Transporting more than 55 million passengers per day, buses are the main transit mode in Brazil. Most of these vehicles use diesel oil and this situation causes dependence on oil, extensive greenhouse gas emissions and increasing air pollution in urban areas. In order to improve this situation the options for Brazilian cities include the use of alternative fuels and new propulsion technologies, such as hybrid vehicles. This article proposes a procedure for evaluating the performance of a recently developed Brazilian hybrid-drive technology. A simple procedure is presented to compare hybrid-drive buses with conventional diesel buses in urban operation focusing on fuel economy and the potential for reducing diesel oil consumption through the use of hybrid-drive buses. Field tests carried out by the authors indicate that fuel consumption improvement through the use of hybrid-drive buses would certainly exceed 20%, resulting in lower fuel costs and reduced carbon dioxide (CO2) emissions.  相似文献   
4.
环保客车发展面临的机遇与挑战   总被引:1,自引:0,他引:1  
王静  朱向雷 《客车技术》2006,(2):12-13,23
着重分析了目前汽车排放污染的严重性,并从能源结构调整和环保两大意义上阐述了发展环保型客车的必要性。目前的形势给环保型客车的发展带来很好的机遇,同时,由于我国环保客车技术尚未成熟,很多技术上的问题亟待解决。  相似文献   
5.
Transit agencies implement many strategies in order to provide an attractive transportation service. This article aims to evaluate the impacts of implementing a combination of strategies, designed to improve the bus transit service, on running time and passenger satisfaction. These strategies include using smart card fare collection, introducing limited-stop bus service, implementing reserved bus lanes, using articulated buses, and implementing transit signal priority (TSP). This study uses stop-level data collected from the Société de transport de Montréal (STM)’s automatic vehicle location (AVL) and automatic passenger count (APC) systems, in Montréal, Canada. The combination of these strategies has lead to a 10.5% decline in running time along the limited stop service compared to the regular service. The regular route running time has increased by 1% on average compared to the initial time period. The study also shows that riders are generally satisfied with the service improvements. They tend to overestimate the savings associated with the implementation of this combination of strategies by 3.5-6.0 min and by 2.5-4.1 min for both the regular route and the limited stop service, respectively. This study helps transit planners and policy makers to better understand the effects of implementing a combination of strategies to improve running time and passenger’s perception of these changes in service.  相似文献   
6.
华蓥山特长隧道洞身穿越区域性含油地层,残余油气藏的原油在热作用下产生具有较强毒性和臭鸡蛋气味的硫化氢气体,透过衬砌裂缝或渗漏水进入隧道,影响隧道内的卫生标准和洞内行车的舒适性.通过隧道内渗漏水中硫化物和挥发性物质成分的测定,得出渗漏水是带出硫化氢气体的重要通道之一;检测隧道内硫化氢气体浓度的分布,确定硫化氢气体涌出的主要段落.基于隧道内硫化氢气体的涌出通道,制订采用地下水封闭引排、裂缝封堵和加强隧道内运营通风相结合的综合治理措施.参照国内外其它行业有关硫化氢气体浓度控制标准,制订了隧道内硫化氢气体的卫生标准和舒适性标准,在无现行规范可循的情况下,具有一定的参考意义.  相似文献   
7.
以北京市两个不同类型的典型公交站点为例,研究了公交站点处自行车对公交车的干扰行为,并建立了不同因素影响下自行车对公交车的干扰行为模型,进而对其进行验证.最后,提出了几点减少公交站点处自行车对公交车干扰的建议.  相似文献   
8.
9.
采用表面处理的方法不合适或操作不符合工艺参数要求,直接影响到紧固件的机械性能,绝非局限于表面抗腐性能或外观  相似文献   
10.
This paper shows the results of a comparative fleet test the main objective of which was to measure the influence of Low Viscosity Oils (LVO) over the fuel consumption and CO2 emissions of urban buses. To perform this test, 39 urban buses, classified into candidate and reference groups depending on the engine oil viscosity, covered a 60,000 km mileage corresponding to two rounds of standard Oil Drain Interval (ODI). In the same way, for 9 buses of the 39 buses, the effect of differential LVO over fuel consumption and their interaction with engine LVO was assessed during the second ODI.Test results confirm that the use of LVO could reduce fuel consumption, hence CO2 emissions. However, special attention should be taken prior to its implementation in a fleet, particularly if the vehicles are powered by engines with high mechanical and thermal stresses during vehicle operation because this could lead to friction loss increase, loss of the potential fuel consumption reduction of LVO and, in the worst scenario, higher rates of engine wear.  相似文献   
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