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输入扰动对波动鳍推进性能影响是一个新兴的研究领域。本文分析了高频率、小幅度和短波长的正弦波形叠加于波动鳍上时对波动鳍推进力的影响。建立运动学模型,利用四面体网格对计算区域进行划分,采用非耦合隐式求解器求解非定常不可压缩N-S方程和连续性方程。给出计算条件,并对算法给予验证。比较等波幅和变波幅两种正弦扰动波形下,波动鳍的无量纲阻力系数、阻力系数均值以及涡量场随周期(0.05 s、0.1 s、0.3 s、0.5 s、0.8 s)、幅度(0.0008 m、0.001 m、0.0015 m)和波长(0.002 m、0.008 m、0.012 m)的变化情况,从涡动力学角度对该影响进行解释。结果显示:输入扰动不仅影响了波动鳍前缘涡的传递,并对波动鳍周边及尾迹区域漩涡数量和强度产生了改变。除在特定条件外,输入扰动对波动鳍推进力产生负面影响,变波幅扰动的影响要大于等波幅情况。该研究可为波动鳍选择合适参数的输入扰动以提高推进力提供参考。 相似文献
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Currently, the shipping industry is facing a great challenge of reducing emissions. Reducing ship speeds will reduce the emissions in the immediate future with no additional infrastructure. However, a detailed investigation is required to verify the claim that a 10% speed reduction would lead to 19% fuel savings (Faber et al., 2012).This paper investigates fuel savings due to speed reduction using detailed modeling of ship performance. Three container ships, two bulk carriers, and one tanker, representative of the shipping fleet, have been designed. Voyages have been simulated by modeling calm water resistance, wave resistance, propulsion efficiency, and engine limits. Six ships have been simulated in various weather conditions at different speeds. Potential fuel savings have been estimated for a range of speed reductions in realistic weather.It is concluded that the common assumption of cubic speed-power relation can cause a significant error in the estimation of bunker consumption. Simulations in different seasons have revealed that fuel savings due to speed reduction are highly weather dependent. Therefore, a simple way to include the effect of weather in shipping transport models has been proposed.Speed reduction can lead to an increase in the number of ships to fulfill the transport demand. Therefore, the emission reduction potential of speed reduction strategy, after accounting for the additional ships, has been studied. Surprisingly, when the speed is reduced by 30%, fuel savings vary from 2% to 45% depending on ship type, size and weather conditions. Fuel savings further reduce when the auxiliary engines are considered. 相似文献
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为探究复合改性技术提升混合生物沥青路用性能的工艺及机理,针对特定来源的SH型生物沥青,将其与石油沥青共混制备混合生物沥青后进行SBS/橡胶粉复合改性,研究改性顺序及改性剂掺量对复合改性沥青常规路用性能的影响、生物沥青掺量对改性剂溶胀特性与复合改性沥青高温及低温性能的影响,由此确定混合生物沥青复合改性工艺;利用多应力重复蠕变恢复(MSCR)、弯曲梁流变(BBR)和频率扫描(FS)试验评价复合改性沥青的流变特性;借助红外光谱(IR)化学官能团分析以及荧光显微镜(FM)和原子力显微镜(AFM)微观形貌观测分析揭示混合生物沥青复合改性机理。研究结果表明:SBS掺量为2.5%,橡胶粉掺量为18%(内掺)时,按照先SBS改性后橡胶粉改性的顺序制备的复合改性沥青的常规路用性能均较优;生物沥青掺量为15%时改性剂溶胀特性与复合改性沥青的高温及低温性能均较佳;SBS/橡胶粉复合改性在显著提升混合生物沥青弹性恢复率与m值的同时还降低了其不可恢复柔量与劲度模量,即改善了混合生物沥青的高温稳定性与低温抗裂性,且此结果与FS复数模量主曲线结果相一致;生物沥青可有效增溶聚合物改性剂并增强聚合物相网络结构,从而显著提升沥青复合改性效果;对混合生物沥青进行SBS/橡胶粉复合改性后未出现新的特征吸收峰,此复合改性过程属于物理变化;沥青厂生产的复合改性沥青性能优于实验室水平制备的复合改性沥青。 相似文献
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不同改性剂改性沥青性能分析 总被引:3,自引:0,他引:3
通过常规试验和SH RP沥青试验,对国内外常用的几种不同改性剂改性沥青的性能进行了对比研究,同时结合相应改性沥青混合料的高温性能、低温性能和疲劳性能研究,比较了不同改性沥青的路用性能。 相似文献
129.
高掺量粉煤灰对混凝土的耐久性作用研究 总被引:1,自引:0,他引:1
高掺量粉煤灰混凝土作为一种新型材料,具有自身独特的优越性。通过对高掺量粉煤灰混凝土的抗侵蚀性能、抗冻性、抗气渗透性与抗水渗透性、抗硫酸盐性这些耐久性能进行研究,并与普通混凝土进行对比分析,研究结果表明高掺量粉煤灰可以显著改善混凝土的耐久性能。 相似文献
130.
Reza Tolouei Helena Titheridge 《Transportation Research Part D: Transport and Environment》2009,14(6):385-399
One interaction between environmental and safety goals in transport is found within the vehicle fleet where fuel economy and secondary safety performance of individual vehicles impose conflicting requirements on vehicle mass from an individual’s perspective. Fleet characteristics influence the relationship between the environmental and safety outcomes of the fleet; the topic of this paper. Cross-sectional analysis of mass within the British fleet is used to estimate the partial effects of mass on the fuel consumption and secondary safety performance of vehicles. The results confirmed that fuel consumption increases as mass increases and is different for different combinations of fuel and transmission types. Additionally, increasing vehicle mass generally decreases the risk of injury to the driver of a given vehicle in the event of a crash. However, this relationship depends on the characteristics of the vehicle fleet, and in particular, is affected by changes in mass distribution within the fleet. We confirm that there is generally a trade-off in vehicle design between fuel economy and secondary safety performance imposed by mass. Cross-comparison of makes and models by model-specific effects reveal cases where this trade-off exists in other aspects of design. Although it is shown that mass imposes a trade-off in vehicle design between safety and fuel use, this does not necessarily mean that it imposes a trade-off between safety and environmental goals in the vehicle fleet as a whole because the secondary safety performance of a vehicle depends on both its own mass and the mass of the other vehicles with which it collides. 相似文献