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91.
公共车辆的运营优化调度能够很好的减少城市交通拥堵,缓解交通压力,保证多方面的利益。对乘客高峰期快线公共车辆的调度进行了研究。首先运用了三元组α/β/γ方法对问题进行了描述,将乘客高峰期快线车辆的调度描述为一类以最小化制造期和平均等待时间为目标,具有先入先出原则和机器适用限制的流水车间动态调度问题。并在此基础上建立了相应的数学模型;接着,运用模拟植物生长算法进行了算法设计;最后,用实际数据进行了数值仿真,结果证明该研究具有较高的理论及现实价值。  相似文献   
92.
The effects of a diesel oxidation catalytic (DOC) converter on diesel engine emissions were investigated on a diesel bench at various loads for two steady-state speeds using diesel fuel and B20. The DOC was very effective in hydrocarbon (HC) and CO oxidation. Approximately 90%–95% reduction in CO and 36%–70% reduction in HC were realized using the DOC. Special attention was focused on the effects of the DOC on elemental carbon (EC) and organic carbon (OC) fractions in fine particles (PM2.5) emitted from the diesel engine. The carbonaceous compositions of PM2.5 were analyzed by the method of thermal/optical reflectance (TOR). The results showed that total carbon (TC), OC and EC emissions for PM2.5 from diesel fuel were generally reduced by the DOC. For diesel fuel, TC emissions decreased 22%–32% after the DOC depending on operating modes. The decrease in TC was attributed to 35%–97% decrease in OC and 3%–65% decrease in EC emissions. At low load, a significant increase in the OC/EC ratio of PM2.5 was observed after the DOC. The effect of the DOC on the carbonaceous compositions in PM2.5 from B20 showed different trends compared to diesel fuel. At low load, a slight increase in EC emissions and a significant decrease in OC/EC ratio of PM2.5 after DOC were observed for B20.  相似文献   
93.
针对常规污染土壤修复处理方法存在有毒降解产物、容易产生二次污染等问题,本研究采用行星球磨仪研究了机械化学法(MC)对柴油污染土壤的修复效能,利用GC/MS对柴油烃组分的降解产物进行分析,并采用SEM、XRD、BET、FTIR和TGA等方法对不同处理条件下的土壤样品进行表征.结果表明,MC处理在0.5~4.0 h内对土壤中总石油烃(TPH)的去除率可达95%以上.随着初始TPH浓度和球土质量比的升高,TPH去除率随之提高.采用MC处理后柴油组分降解难度顺序如下:烷烃<烯烃<环烷烃<芳香族化合物.在球磨处理4 h后,未检出有毒有害残留物质.球磨后土壤粒径变小,表面变粗糙,粘土矿物中的硅氧四面体暴露在土壤表面,矿物结构的结晶度逐渐降低,晶体结构逐渐破裂或变形,可在土壤表面形成富电子区域或促使土壤具有更高的反应活性,这是机械化学法高效降解柴油的主要机制.其次,土壤有机质的主要官能团受到破坏,纳米级孔隙容量降低,从而降低了土壤组分的吸附能力,增加了柴油的有效性,也有助于柴油的解吸和机械化学降解.此外,随着球磨时间的增加,土壤有机碳(SOC)含量先增加后下降,但均高于处理前.可见,MC处理可以快速彻底降解土壤中的柴油,且有利于增加土壤有机碳含量,对于石油烃污染土壤修复具有较好的应用潜力.  相似文献   
94.
This study compares highway crash incidence, injuries, and costs by vehicle type. Annual crash and injury incidence were estimated using Crashworthiness Data System (1988-1991), National Automotive Sampling System (1982-1986), General Estimates System (1992-1993), and Fatal Analysis Reporting System (1993) data. Costs were computed based on restraint use, body region, and threat-to-life severity of the injury. Costs were then allocated between vehicle types using three different methods in order to answer comparative safety questions. Motor vehicle and bicycle crash costs total $389 billion annually; 75% resulting from passenger vehicles. Motorcycles and bicycles have the highest costs per 1000 vehicle and passenger miles; costs per victim are highest for pedestrians, bicyclists, and motorcyclists. Costs per vehicle mile for heavy trucks and passenger cars are comparable but exceed costs for light trucks. Passenger vehicle occupants are safest if a crash occurs. Light truck, other single truck, and bus occupants have the lowest cost per passenger mile, but higher costs than air and rail travelers. Motorcyclists face the greatest risks. Combination trucks may not impose an excess risk to other drivers, but their drivers face large risks.  相似文献   
95.
电动增压补气消除柴油机瞬态加速冒烟的试验   总被引:1,自引:0,他引:1  
将自行开发的、适用车载24V电源的电动增压补气系统在一台490QDI柴油机上进行了实验研究.实验工况包括起始负荷分别为0和40N.m的加载加速的瞬态工况以及1400r·min-1、60N·m,1600 r·min-1、90N-m和1800 r.min-1、120N·m 3种低转速、大扭矩稳态工况,针对以上工况分别进行了有无电动增压补气的实验.试验结果表明,有电动增压补气的柴油机同原机相比,零负荷加载加速时的微粒排放降低达70%以上,瞬间输出功率最大可提高54.5%;在稳态工况时,HC、CO排放都随着电机转速的升高而降低,最大减少量分别达到66.7%和75.O%;波许烟度平均减小50%以上.此外,加速补气对提高燃油经济性也有一定效果,比油耗最大能降低7.46%.  相似文献   
96.
In this study, the efforts to reduce NOx and particulate matter (PM) emissions from a diesel engine using both ethanol-selective catalytic reduction (SCR) of NOx over an Ag/Al2O3 catalyst and a biodiesel-ethanol-diesel fuel blend (BE-diesel) on an engine bench test are discussed. Compared with diesel fuel, use of BE-diesel increased PM emissions by 14% due to the increase in the soluble organic fraction (SOF) of PM, but it greatly reduced the Bosch smoke number by 60%-80% according to the results from 13-mode test of European Stationary Cycle (ESC) test. The SCR catalyst was effective in NOx reduction by ethanol, and the NOx conversion was approximately 73%. Total hydrocarbons (THC) and CO emissions increased significantly during the SCR of NOx process. Two diesel oxidation catalyst (DOC) assemblies were used after Ag/Al2O3 converter to remove CO and HC. Different oxidation catalyst showed opposite effect on PM emission. The PM composition analysis revealed that the net effect of oxidation catalyst on total PM was an integrative effect on SOF reduction and sulfate formation of PM. The engine bench test results indicated that the combination of BE-diesel and a SCR catalyst assembly could provide benefits for NOx and PM emissions control even without using diesel particle filters (DPFs).  相似文献   
97.
In this paper, the assessment and modelling of alternative renewable energy systems for Masirah Island is considered. The hybrid system that is simulated comprises various combinations of wind turbines and/or photovoltaic (PV) supplemented with diesel generators and short-term battery storage. It was found from the analysis that the PV–wind–diesel hybrid system, with battery unit, has the lowest cost values as compared to solar-only or wind–diesel hybrid systems. Furthermore, the study illustrates that for a given hybrid system the presence of battery storage will reduce diesel consumption. The decrease in carbon emission, the percentage of fuel savings, the cost of energy production and the effect of wind and PV penetration are also addressed in this paper. The PV–wind–diesel hybrid option is techno-economically viable for the electrification of the Masirah Island.  相似文献   
98.
This paper proposes two novel approaches for the problem of energy management in hybrid electric vehicles. Shuffled frog-leaping algorithm (SFLA) is a recently proposed population-based optimization algorithm. This paper first formulates energy management as an optimization problem and optimizes the problem using SFLA. Then the paper makes use of SFLA as a training algorithm to train artificial neural network (ANN) and this SFLA-trained ANN is used for energy management. Interestingly, the proposed approaches of this paper are found to be robust and more efficient than contemporary approaches.  相似文献   
99.
The diminishing resources and continuously increasing cost of petroleum in association with their alarming pollution levels from diesel engines have caused an interest in finding alternative fuels to diesel which are renewable and sustainable. Emission control and engine efficiency are two most important parameters in current engine design. The impending introduction of emission standards such as Euro IV and Euro V is forcing the research towards developing new technologies for combating engine emissions. The classification of Euro IV and V norms is applicable to heavy-duty engines in Europe, where as Euro 5 is applicable to light-duty engines. This paper presents the effects of exhaust gas recirculation (EGR), swirl augmentation techniques and ethanol addition on the combustion of Honge oil methyl ester (HOME) and its blends with ethanol in a diesel engine. From the experimental work conducted, it is found that the combustion of HOME plus up to 15% ethanol blend in a diesel engine operated with optimised parameters of injection timing 23° Before Top Dead Centre and compression ratio 17.5 results in acceptable combustion emissions and improved brake thermal efficiency (BTE). The addition of ethanol increased BTE with reduced hydrocarbons (HCs), CO and smoke emissions. However, NO x emissions increased dramatically. Use of appropriate EGR reduces NO x to acceptable levels. The implementation of swirl augmentation techniques further resulted in increased BTE and considerable reduction in tail pipe emissions such as smoke, HCs, CO and NO x . The effect of swirl by providing grooves on the piston was taken into consideration to find the overall biodiesel engine performance, which gives scope for further studies.  相似文献   
100.
ABSTRACT

This work deals with the optimization of an hybrid energy system used to supply an isolated site. The proposed system combines a wind turbine, a photovoltaic panel, a diesel generator and a battery bank to electrify atypical home. An energy cost-effectiveness approach is adopted in accordance with meteorological data, time profile of energy consumption, and the cost of different alternative systems. A variety of performances is obtained through simulations within the Homer Pro environment. The selection of an optimal combination is based on the maximum integration of renewable energy in the suggested system with a minimum of gas emission. According to the obtained results, the overall cost of the selected installation is about 72,900 €, with 0.415€ the unit cost of a kWh electric energy provided with a contribution of renewable energy of around 86%. Simulations show a technical and financial benefits of the different configurations obtained to supply the target site. To control the proposed hybrid energy system, a supervision algorithm is developed and implemented on TMS320F28027 DSP platform. The proposed energy system aims to take advantages of renewable energy sources and shift to conventional sources only when necessary in order to ensure source autonomy and service continuity.  相似文献   
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