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通过对水下气泡的受力分析,建立气泡在水中运动的微分方程,通过数值方法进行简化求解,得出用水深表示速度的ω(h)解析关系式,用以描述气泡运动包括加速段的整个过程.气泡急剧加速上升阶段很短,与直径有关;上升的最终速度与气泡的直径有关,与水深无关;接近恒速阶段的起始速度与水深有密切关系. 相似文献
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高埋深软硬岩互层地质条件下敞开式TBM岩爆段施工方法研究 总被引:1,自引:0,他引:1
基于喜马拉雅山区域某软硬岩性互层地质条件下的深埋隧洞工程,为解决该区域TBM施工过程中的岩爆问题,统计分析了TBM施工过程中的岩爆特征;在施工过程中开展了多种岩爆规避试验,形成了一套较完整的有针对性的施工方法: 1)岩爆风险巡查常态化; 2)超前地质预报和超前处理措施相结合; 3)支护材料和支护方式合理化; 4)掘进参数动态调整。在后续的施工中加以应用,取得了较好的效果,可以为类似地质条件下的安全施工提供参考。 相似文献
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Surrogate indicators are meant to be alternatives or complements of safety analyses based on accident records. These indicators are used to study critical traffic events that occur more frequently, making such incidents easier to analyse. This article provides an overview of existing surrogate indicators and specifically focuses on their merit for the analyses of vulnerable road users and the extent to which they have been validated by previous research. Each indicator is evaluated based on its ability to consider the collision risk, which can be further divided into the initial conditions of an event, the magnitude of any evasive action and the injury risk in any traffic event. The results show that various indicators and their combinations can reflect different aspects of any traffic event. However, no existing indicator seems to capture all aspects. Various studies have also focused on the validity of different indicators. However, due to the use of diverse approaches to validation, the large difference in how many locations were investigated and variations in the duration of observation at each location, it is difficult to compare and discuss the validity of the different surrogate safety indicators. Since no current indicator can properly reflect all the important aspects underlined in this article, the authors suggest that the choice of a suitable indicator in future surrogate safety studies should be made with considerations of the context-dependent suitability of the respective indicator. 相似文献
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Fixed-rail metro (or ‘subway’) infrastructure is generally unable to provide access to all parts of the city grid. Consequently, feeder bus lines are an integral component of urban mass transit systems. While passengers prefer a seamless transfer between these two distinct transportation services, each service’s operations are subject to a different set of factors that contribute to metro-bus transfer delay. Previous attempts to understand transfer delay were limited by the availability of tools to measure the time and cost associated with passengers’ transfer experience. This paper uses data from smart card systems, an emerging technology that automatically collects passenger trip data, to understand transfer delay. The primary objective of this study is to use smart card data to derive a reproducible methodology that isolates high priority transfer points between the metro system and its feeder-bus systems. The paper outlines a methodology to identify transfer transactions in the smart card dataset, estimate bus headways without the aid of geographic location information, estimate three components of the total transfer time (walking time, waiting time, and delay time), and isolate high-priority transfer pairs. The paper uses smart card data from Nanjing, China as a case study. The results isolate eight high priority metro-bus transfer pairs in the Nanjing metro system and finally, offers several targeted measures to improve transfer efficiency. 相似文献
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German De Melo Rodríguez Enrique Martin-Alcalde J.C. Murcia-González Sergi Saurí 《WMU Journal of Maritime Affairs》2017,16(3):405-420
This paper provides an estimation of air emissions (CO2, NOX, SOX and PM) released by cruise vessels at the port level. The methodology is based on the “full bottom-up” approach and starts by evaluating the fuel consumed by each vessel on the basis of its individual port activities (manoeuvring, berthing and hoteling). The Port of Barcelona was selected as the site at which to perform the analysis, in which 125 calls of 30 cruise vessels were monitored. Real-time data from the automatic identification system (AIS), factor emissions from engine certificates and vessel characteristics from IHS Sea-web database were also collected for the analysis. The research findings show that the most appropriate indicators are inventory emissions per “port-time gross tonnage”, “port-time passenger” and “port time”. These emission indicators improve our understanding of cruise emissions and will facilitate the work that aims to estimate reliably and quickly the in-port ship emission inventories of cruise ports. 相似文献