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11.
针对TBD234V6型柴油机,采用AVL-fire软件对额定工况下,不同乙醇/水掺混比进行三维数值模拟研究,对比分析缸内压力、缸内温度、缸内温度场、燃烧放热率、NOx浓度、NOx浓度场、Soot浓度、Soot浓度场,并通过赋权法确定最优乙醇/水掺混比。结果表明:随着乙醇/水掺混比的增加,缸内压力逐渐升高,燃烧放热率滞后,燃油消耗率呈上升趋势,但在0E10W时,最高燃烧压力下降率约为3.7%;燃油消耗率下降0.38%;缸内高温分布区域缩小,NOx和Soot浓度下降。通过计算确定最优掺混比为20E10W,此时,最高燃烧压力提升5.6%,燃油消耗率上升2.41%,NOx排放下降率约为18.8%,Soot排放下降率约为29.6%。研究结果可为船用柴油机采用柴油/乙醇/水三燃料燃烧提供一定的指导依据。 相似文献
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一种用汽油燃烧系统模拟发动机台架催化剂热老化的方法 总被引:1,自引:0,他引:1
采用通用汽车公司的快速老化程序RAT-A,分别在FOCAS燃烧系统及发动机上对催化剂在老化前和老化后的性能进行对比试验。结果表明,FOCAS燃烧系统能够对催化剂进行和发动机类似的老化。与发动机台架试验相比,FOCAS系统有明显的优点,如严格地控制空燃比使其变化幅度很小、空燃比稳定运行的范围宽、活动部件少及易操作等。 相似文献
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Pipelines are important to offshore oil and gas development, but suffers from the pipeline walking phenomenon due to cyclic temperature variations—where large axial walking distances threaten the safety of pipeline systems. Current research indicates that pipeline walking is triggered by steel catenary riser (SCR) tension, seabed slopes, or thermal transients. This paper proposes a new driving mechanism for the pipeline walking phenomenon, involving cyclic hardening soil strength. The finite element analysis method was adopted to analyse the soil friction difference induced walking phenomenon, and the influence of key parameters on the gain in soil friction on walking distance was studied. Pipeline walking distances under different drainage conditions in the heating and cooling processes were also calculated, and the impact of the degree of drainage in the heating process was determined. To better understand the new pipeline walking mechanism, theoretical analysis of the walking behaviour under different cyclic soil friction conditions was carried out. Analytical solutions for estimating the pipeline walking distance were also provided, based on the simplified theoretical analysis. 相似文献
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A potential solution to reduce greenhouse gas (GHG) emissions in the transport sector is the use of alternative fuel vehicles (AFV). As global GHG emission standards have been in place for passenger cars for several years, infrastructure modelling for new AFV is an established topic. However, as the regulatory focus shifts towards heavy-duty vehicles (HDV), the market diffusion of AFV-HDV will increase as will planning the relevant AFV infrastructure for HDV. Existing modelling approaches need to be adapted, because the energy demand per individual refill increases significantly for HDV and there are regulatory as well as technical limitations for alternative fuel station (AFS) capacities at the same time. While the current research takes capacity restrictions for single stations into account, capacity limits for locations (i.e. nodes) – the places where refuelling stations are built such as highway entries, exits or intersections – are not yet considered. We extend existing models in this respect and introduce an optimal development for AFS considering (station) location capacity restrictions. The proposed method is applied to a case study of a potential fuel cell heavy-duty vehicle AFS network. We find that the location capacity limit has a major impact on the number of stations required, station utilization and station portfolio variety. 相似文献
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通过工艺分析发现,引起缸头泄漏的主要原因是气门座圈加工工序的夹具系统和刀具系统存在不足,导致气门座图形位误差难以保证,使该工序能力指数达不到要求,整机一次装配合格率过低。通过采取有效措施,使某型号发动机缸头燃烧室密封性能超差问题得到了根本解决。 相似文献
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