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11.
ABSTRACT

Energy management strategy (EMS) is crucial in improving the fuel economy of plug-in hybrid electric vehicle (PHEV). Existing studies on EMS mostly manage powertrain and cooling system separately which cannot get the minimum total energy consumption. This paper aims to propose a novel EMS for a new type of dual-motor planetary-coupled PHEV, which considers cooling power demand and effect of temperature on fuel economy. Temperature-modified engine model, lithium-ion battery model, two motors, and cooling system models are established. Firstly, the separated EMS (S-EMS) is designed which manages powertrain and cooling system separately. Sequentially, after the analysis of thermal characteristics of the powertrain and cooling system, the thermal-based EMS (T-EMS) is then proposed to manage two systems coordinately. In T-EMS, cooling power demand and the charging/discharging energy of motors are calculated as equivalent fuel consumption and integrated into the object function. Besides, a fuzzy controller is also established to deicide the fuel-electricity equivalent factor with consideration of the effect of temperature and state of charge on powertrain efficiency. Finally, the hardware-in-loop experiment is carried out to validate the real-time effect of EMS under the New European Driving Cycle. The result shows that cooling power demand and temperature can significantly affect the fuel economy of the vehicle. T-EMS shows better performance in fuel economy than S-EMS. The equivalent fuel consumption of the cooling system of T-EMS decreases by 27% compared with that of S-EMS. The total equivalent fuel consumption over the entire trip of PHEV using T-EMS is reduced by 9.7%.  相似文献   
12.
Across the globe, groups are experimenting with initiatives to create alternatives to the dominant food system. What role might research play in helping to strengthen and multiply these initiatives? In this paper we discuss two research projects in Australia and the Philippines in which we have cultivated hybrid collectives of academic researchers, lay researchers and various non-human others with the intention of enacting community food economies. We feature three critical interactions in the “hybrid collective research method”: gathering, which brings together those who share concerns about community food economies; reassembling, in which material gathered is deliberatively rebundled to amplify particular insights; and translating, by which reassembled ideas are taken up by other collectives so they may continue to “do work”. We argue that in a climate-changing world, the hybrid collective research method fosters opportunities for a range of human and non-human participants to act in concert to build community food economies.  相似文献   
13.
陈阳 《环境技术》2014,(2):29-32
网络的发展从仅关注速度的提升转移到关注业务的交付能力,由此网络可靠性问题越来越受到研究者的重视。网络可靠性试验是评价网络可靠性的一种重要手段,而试验流量的生成对可靠性评价结果具有决定性的影响。然而目前从可靠性角度对网络进行试验时,对任务的描述较为简单,无法支撑由客户需求分解到网络流量生成的全过程;从流量模型角度出发的生成技术则仅关注全网流量,难以支持可靠性试验中的流量生成。本文提出基于业务的混合模型的流量描述方法,并使用软件实现,最后进行试验验证所提出方法的有效性。  相似文献   
14.
为了深入研究其中各类活性物质氧化机理,以难降解的3,4-二甲基苯胺(3,4-DMA)废水作为研究对象,通过研究不同抑制剂条件下的动力学规律,并以贡献度(kf/K)来量化各活性物质的作用效果,得出氯类活性物质的贡献度为89.03%,羟基自由基(·OH)的贡献度为6.24%,而空穴和阳极直接氧化贡献度可以忽略.采用三聚氰胺法、二甲亚砜(DMSO)法和DPD法定性定量测定了空穴、·OH和自由氯的含量,结果表明:较高浓度的氯化钠降低了空穴和·OH的贡献度;·OH的产量符合零级动力学规律,其产生速率为0.106mg/(L·min);自由氯的累积浓度分为3个阶段,第3阶段累积速率为0.159mg/(L·min).自由氯仅占氯类活性物质氧化体系的一小部分,其他含氯氧化物质和氯类自由基的氧化占重要地位.通过GC-MS、UV-vis和TOC检测,发现在反应10.0min前,主要通过氯类活性物质对侧链的快速攻击,使3,4-DMA转化为苯甲醛等易分解的苯环类物质;10.0min后,主要通过·OH对苯环大π键的攻击,使苯环类物质转化为小分子物质,然后继续被·OH氧化直到矿化.  相似文献   
15.
为了解析溶解性微生物产物(SMP)在GO/PVDF杂化膜面的污染特性,对膜片进行了宏观污染实验,并采用耗散石英微晶天平(QCM-D)从微观角度分析了SMP在自制镀膜芯片上的吸附规律和污染层结构变化.结果表明,GO含量为0.5wt%的膜污染恢复率最高(79.95%),抗污染能力最强.QCM-D实验发现,GO含量为0wt%镀膜芯片表面SMP吸附量最大,污染较为严重.膜片亲水性越强,吸附频率变化越小,抗污染能力越强.此外,GO含量为0.5wt%镀膜芯片表面的污染物结构比较疏松和柔软,其他膜表面的污染物结构较为坚硬和致密.  相似文献   
16.
洛阳市大气细颗粒物化学组分特征及溯源分析   总被引:2,自引:2,他引:0  
孙佳傧  董喆  李利萍  刘洋  陈红阳  张瑞芹 《环境科学》2021,42(12):5624-5632
为研究洛阳市大气细颗粒物(PM2.5)的化学组分及来源的时空分布特征,对汾渭平原地区较为欠缺的PM2.5相关研究进行补充,在2018年4月至2019年1月在洛阳市高新和林校2个点位进行了样品采集,对P(PM2.5)、化学组分(水溶性离子、碳质组分、元素)和来源进行分析.2个点位的年均ρ(PM2.5)分别为(76.6±37.9)μg-m-3和(83.2±38.9)μg·m-3,季节变化由高到低均为:冬季、春季、秋季和夏季.高新和林校的9种水溶性离子浓度分别占PM2.5的 55.1%和54.2%,林校的二次离子(NO3-、SO42-和NH4+)年均浓度之和高于高新.高新和林校的ρ[有机碳(OC)]、P[元素碳(EC)]分别为(12.4±7.7)μg·m-3、(1.2±0.5)μg·m-3和(13.4±7.7)μg·m-3、(1.3±0.5)μg·m-3,林校的含碳组分在各季节均高于高新;高新和林校冬季的二次有机碳(SOC)在OC中质量分数分别为67.8%和77.3%,远高于其他季节.化学质量平衡结果表明,高新和林校的主要贡献源均为二次硝酸盐(26.9%和27.1%)、二次硫酸盐(14.5%和14.8%)、燃煤(12.6%和11.6%)、SOA(10.8%和12.2%),高新的生物质源贡献较高,而林校的扬尘源和机动车源贡献较高.后向轨迹和潜在源贡献因子分析表明,洛阳市春季不仅受到来自西北方向的传输,来自西南地区的污染传输也不能忽略;夏季既受到正东方向的季风影响,又有来自正南方向的潜在污染;秋季污染物主要来自东南方向,同时也存在西北方向的潜在来源;冬季受到的传输影响则主要来自周边区域,污染来源较为集中.  相似文献   
17.
采用盆栽试验的方法,研究了前期持续淹水和干湿交替预培养对2种水稻土———太湖地区黄泥土、江西鹰潭红壤性水稻土中外源Cd形态分配及高丹草吸收Cd的影响.结果表明,在5mg·kg-1和10mg·kg-1外源Cd处理下,与干湿交替预培养比较,持续淹水预培养后黄泥土中MgCl2提取态Cd分别由21.8%、28.5%下降为8.0%、16.9%,而NH2OH.HCl提取态Cd由17.7%、17.3%升高为28.1%、37.5%;红壤性水稻土NaAc提取态Cd由20.8%、29.6%下降为11.6%、12.6%.回归分析表明,MgCl2提取态Cd与高丹草Cd吸收量呈显著负相关关系.长期淹水预培养显著降低高丹草对黄泥土Cd的吸收.  相似文献   
18.
Solar energy application in a large spectrum has the potential for high-efficiency energy conversion. Though, solar cells can only absorb photon energy of the solar spectrum near their band-gap energy, and the remaining energy will be converted into thermal energy. The use of the thermoelectric generator becomes a necessity for convert this thermal energy dissipated so as to increase efficiency conversion.

This paper analyses the feasibility of photovoltaic-thermoelectric hybrid system and reviews their performance in order to optimize harvested energy. Regarding the thermoelectric effect, a new method of the ambient energy harvesting is presented. This method combines thermoelectric generators and the effects of heat sensitive materials associated to photovoltaic cells in phase change for generating both energy day and night. Experimental measures have been conducted primarily in laboratory conditions for a greater understanding of hybridization phenomena under real conditions and to test the actual performance of devices made. Results show that the hybrid system can generate more power than the simple PV and TEG in environmental conditions. This hybrid technology will highlight the use of renewable energies in the service of the energy production.  相似文献   

19.
China is the world's largest energy consumer, and coal accounts for a higher proportion of the country's total energy consumption, yet during its 12th five-year plan (2011–2015), the coal share among total energy consumption significantly decreased. Previous studies exploring energy performance typically used energy consumption as an input, but this lacks the analytical capacity for the structure of energy consumption. Thus, this study splits energy input into two different inputs, coal consumption and non-coal energy consumption, and based on their differences with other variables, uses the hybrid dynamic data envelopment analysis model to assess the energy performance of China's provincial industrial sector during the period 2011 to 2015. We then compare coal consumption's and non-coal consumption's rooms for improvement and conclude that provinces in eastern and central China should reduce the amount of coal consumption, thereby improving energy performance. Conversely, provinces in the western region should target a balance between energy utilization efficiency and coal consumption.  相似文献   
20.
复合优势菌技术处理M废水   总被引:5,自引:0,他引:5  
以某厂橡胶促进剂M废水为研究对象,通过常规生物处理工艺与复合优势菌生物处理工艺对该废水处理效果的比较,认为复合优势菌生物处理工艺是目前处理M废水的最佳工艺。  相似文献   
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