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151.
152.
以燃气为工质的向心透平常用于微型燃气轮机系统中,有着重要的工程应用价值。本研究关注燃气向心透平的非定常流动特性,基于一台功率等级为1MW,转速为30000rpm的燃气向心透平,首先进行了热力设计,得到了其关键位置的燃气工质热力参数及透平的模型尺寸。其次基于三维粘性数值模拟计算的方法,采用SST k-ω湍流模型及六面体结构化网格在商用软件CFX中对燃气向心透平进行了定常与非定常气动计算,详细分析了其气动特性及非定常流动状况。最终,分析了这一燃气向心透平的非定常气流激振力在时域及频域分布,并准确评估了其流量、扭矩、功率及效率等关键参数。 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
155.
为研究检修道栏杆基石对桥梁涡激振动性能的影响,依托中国某主跨808 m的超大跨度闭口箱梁加劲梁悬索桥,通过主梁大比例节段模型弹性悬挂测振测压风洞试验获取模型风致振动响应和表面各测点压力时程数据,测试原设计断面在±5°攻角范围内的涡振性能,对比分析3种不同栏杆基石位置和高度工况下主梁涡振响应性能和桥面测点脉动压力系数均值、均方差、压力功率谱以及局部气动力和总体气动力的相关性。研究结果表明:依托工程主梁设计断面发生了显著的竖向和扭转涡激共振,且扭转涡振显著超出规范允许值,主梁涡振性能随来流风攻角的增大而变差。主梁表面实测脉动压力数据分析显示,由于栏杆和基石的阻挡,箱梁上表面气流分离后在后部再附,导致上表面前部和中后部发生了强烈的压力脉动。上表面前部、后部以及下表面迎风区斜腹板局部气动力与总体气动力具有很强的相关性,这也是导致主梁发生显著扭转涡振的根本原因。将栏杆基石移至桥面板边沿显著减小了上、下表面压力脉动,上表面前部和后部气动力相关性被破坏,可以大幅抑制涡振;将栏杆基石移至桥面板边沿,并降低栏杆基石高度抑制了气流在上表面后部的再附现象,断面压力脉动被削弱,局部气动力和总体气动力相关性被完全破坏,从而有效抑制涡振。 相似文献
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157.
Fuel-switching personal transportation from gasoline to electricity offers many advantages, including lower noise, zero local air pollution, and petroleum-independence. But alleviations of greenhouse gas (GHG) emissions are more nuanced, due to many factors, including the car’s battery range. We use GPS-based trip data to determine use type-specific, GHG-optimized ranges. The dataset comprises 412 cars and 384,869 individual trips in Ann Arbor, Michigan, USA. We use previously developed algorithms to determine driver types, such as using the car to commute or not. Calibrating an existing life cycle GHG model to a forecast, low-carbon grid for Ann Arbor, we find that the optimum range varies not only with the drive train architecture (plugin-hybrid versus battery-only) and charging technology (fast versus slow) but also with the driver type. Across the 108 scenarios we investigated, the range that yields lowest GHG varies from 65 km (55+ year old drivers, ultrafast charging, plugin-hybrid) to 158 km (16–34 year old drivers, overnight charging, battery-only). The optimum GHG reduction that electric cars offer – here conservatively measured versus gasoline-only hybrid cars – is fairly stable, between 29% (16–34 year old drivers, overnight charging, battery-only) and 46% (commuters, ultrafast charging, plugin-hybrid). The electrification of total distances is between 66% and 86%. However, if cars do not have the optimum range, these metrics drop substantially. We conclude that matching the range to drivers’ typical trip distances, charging technology, and drivetrain is a crucial pre-requisite for electric vehicles to achieve their highest potential to reduce GHG emissions in personal transportation. 相似文献
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159.
为了解决固体废弃物循环利用问题,提出将废旧轮胎橡胶颗粒掺入废弃钢渣中形成新型土工填料。为了了解该新型填料的动力特性,采用共振柱试验对基于钢渣+橡胶颗粒的新型土工填料的动剪切模量和阻尼比特性开展研究。首先分析围压与橡胶颗粒含量对新型填料动剪切模量和阻尼比的影响,试验结果表明:动剪切模量和阻尼比与剪应变的关系类似传统土类,动剪切模量随着剪应变的增大而减小,阻尼比则随着剪应变的增加而增大,变化曲线趋势基本一致;新型填料的动剪切模量随着钢渣含量的减少和橡胶颗粒含量的增加而逐渐减小,橡胶颗粒含量达到20%时,动剪切模量与剪应变的关系曲线低缓显著,新型填料中橡胶颗粒不宜掺入太多。然后,基于Hardin-drnevich双曲线模型建立新型填料的动力特性理论模型,Hardin-drnevich双曲线模型能够较好地模拟新型填料动剪切模量归一化的数据,并对新型填料参考剪应变随橡胶含量的变化趋势进行了预测。最后,将新型填料的最大动剪切模量与纯钢渣、南京砂和福建标准砂的最大动剪切模量进行比较。分析结果表明:新型填料的橡胶颗粒含量不宜超出15%,这种新型填料动剪切模量适中,阻尼比较大,具有较好的抗震减震能力,能够替代砂土成为一种回填材料。 相似文献
160.
隧道基坑常位于地下管线数量较多的闹市区,为避免施工过程中对周边管线的破坏,如何准确分析基坑开挖对周边管线的影响至关重要。利用三维有限元软件MIDAS GTS对基坑周边不同管线进行计算,通过对计算数据的观察分析,归纳总结基坑开挖对不同管线所造成的位移变形特点,为隧道基坑周边管线的合理保护优化提供了重要依据。 相似文献