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1.
Macrobenthic surveys are an expensive, slow and labour intensive means to establish the health of benthic communities. Sediment profile imagery (SPI) is a means of rapid reconnaissance for monitoring large areas of the benthos. SPI has often been used to monitor gross anthropogenic disturbance. The aim of this study is to determine if SPI can be used as a tool to reliably map change in communities along natural estuarine gradients. Macrobenthic sampling was carried out at five stations along an established estuarine gradient. This faunal data was analysed using standard multivariate techniques and to ground truth a concurrent SPI survey. Faunal analysis showed that habitat quality in Inner Galway Bay was generally good, with some localised disturbance from the River Corrib and the sewage out flow exterior to the city dock. Four distinct groups were identified with a degree of overlap occurring between stations 3 and 4. While existing SPI indices mapped habitat quality in the same manner as the faunal data for end member stations, the level of distinction between the habitats of an intermediate staging was found to be poor. This lack of distinction amongst the stage 2 and 3 stations was overcome by developing a tailored index, the Galway Bay index of habitat quality (GBHQ). This index was derived from the 5 observed variables in the SPI data that were determined to best match the faunal distribution by permutative mantel testing. The 5 observed variables from the SPI data were the depth of the apparent redox potential discontinuity (aRPD), the depth of penetration by the prism, and the presence/absence of infauna, surface faecal pellet layer and biogenic mounding. The GBHQ was able to distinguish between the 5 stations to a greater extent than previously described indices, showing clearly the separate groupings defined by the faunal data. The index was tested on a follow up SPI survey and shown to be applicable in mapping a broader range of habitats in Galway Bay. Indices generated for localised mapping of estuarine gradients should be derived from observed features and be ground truthed using faunal data. Some aspects of the GBHQ should be generally applicable to fine grained boreal estuarine sediments (aRPD/penetration), while others may be of limited utility in other locations depending on the digging characteristics of the particular SPI camera, and local factors influencing the persistence of biogenic features in the profile. This derivation technique provides a simple way to optimise SPI to particular studies and localities. 相似文献
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FWD和贝克曼梁在路基弯沉检测中的相关性分析 总被引:7,自引:0,他引:7
以湘潭至邵阳高速公路路基为试验路段 ,对其进行了FWD和贝克曼梁路基弯沉对比试验。其目的是通过研究两者在弯沉检测结果之间的相关性 ,建立两者之间的相互转换公式 ,从而为将FWD检测技术直接用于路基施工质量检测提供技术基础 相似文献
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Estimating the travel time reliability (TTR) of urban arterial is critical for real-time and reliable route guidance and provides theoretical bases and technical support for sophisticated traffic management and control. The state-of-art procedures for arterial TTR estimation usually assume that path travel time follows a certain distribution, with less consideration about segment correlations. However, the conventional approach is usually unrealistic because an important feature of urban arterial is the dependent structure of travel times on continuous segments. In this study, a copula-based approach that incorporates the stochastic characteristics of segments travel time is proposed to model arterial travel time distribution (TTD), which serves as a basis for TTR quantification. First, segments correlation is empirically analyzed and different types of copula models are examined. Then, fitting marginal distributions for segment TTD is conducted by parametric and non-parametric regression analysis, respectively. Based on the estimated parameters of the models, the best-fitting copula is determined in terms of the goodness-of-fit tests. Last, the model is examined at two study sites with AVI data and NGSIM trajectory data, respectively. The results of path TTD estimation demonstrate the advantage of the proposed copula-based approach, compared with the convolution model without capturing segments correlation and the empirical distribution fitting methods. Furthermore, when considering the segments correlation effect, it was found that the estimated path TTR is more accurate than that by the convolution model. 相似文献
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Carpooling has been considered a solution for alleviating traffic congestion and reducing air pollution in cities. However, the quantification of the benefits of large-scale carpooling in urban areas remains a challenge due to insufficient travel trajectory data. In this study, a trajectory reconstruction method is proposed to capture vehicle trajectories based on citywide license plate recognition (LPR) data. Then, the prospects of large-scale carpooling in an urban area under two scenarios, namely, all vehicle travel demands under real-time carpooling condition and commuter vehicle travel demands under long-term carpooling condition, are evaluated by solving an integer programming model based on an updated longest common subsequence (LCS) algorithm. A maximum weight non-bipartite matching algorithm is introduced to find the optimal solution for the proposed model. Finally, road network trip volume reduction and travel speed improvement are estimated to measure the traffic benefits attributed to carpooling. This study is applied to a dataset that contains millions of LPR data recorded in Langfang, China for 1 week. Results demonstrate that under the real-time carpooling condition, the total trip volumes for different carpooling comfort levels decrease by 32–49%, and the peak-hour travel speeds on most road segments increase by 5–40%. The long-term carpooling relationship among commuter vehicles can reduce commuter trips by an average of 30% and 24% in the morning and evening peak hours, respectively, during workdays. This study shows the application potential and promotes the development of this vehicle travel mode. 相似文献
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分析了仅依靠成本效益评估而选择的船舶风险控制方案的片面性,综合考虑安全、环保、经济收益、成本等多因素对方案所表现的影响,建立了基于灰色关联度的船舶风险控制方案多指标评价模型。论文所建立的该模型可以充分利用各方案的指标取值所包含的信息,并考虑专家主观因素对指标重要度的影响,通过主客观综合赋权的方法突出某个指标在方案排序中的作用。以国际海事组织对液化天然气船的综合安全评估报告所提供的风险控制措施为例,使用该模型进行方案优选,并与仅用成本效益评估所得结果比较;分析比较表明:论文所建立的多指标评价模型可以更全面评估风险控制方案,方法合理,使用简便可靠。 相似文献
7.
飞行安全和流量管理空管领域一个很重要的课题,通过飞行计划与航迹相关,可以直观地了解各航空器的详细飞行状态和空域中飞行流量,及时为飞行器制订合理飞行计划,保证飞行安全和空域飞行流量。因而需要对航空器飞行计划与航迹相关的一些方法和问题进行研究,以提高空管可靠性和合理选用空域资源。 相似文献
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为了评价公众交通安全意识,进而明确不同年龄、不同受教育程度、不同职业和不同出行方式的公众群体交通安全意识的差异性,对公众交通安全意识调查数据进行了量化分析。首先,基于自主编制的公众交通安全意识问卷对5 029名参与者进行了调查;其次,对回收的问卷进行因子分析和信度、效度检验,得到了交通安全行为、交通安全态度和交通管理认知3个因子;最后,选取上述因子作为3个一级评价指标,因子所含条目作为17个二级评价指标,对公众交通安全意识进行评价,采用主成分分析法计算因子得分,并应用熵值法确定一级评价指标权重,再通过灰色关联分析计算灰色关联度,最终根据模糊综合评价得出不同公众群体的交通安全意识水平。研究结果表明:不同年龄段的公众中,18~40岁群体交通安全意识水平最高(b=0.79),41~65岁(b=0.44)和65岁以上(b=0.45)群体交通安全意识水平较低;不同受教育程度的公众中,专科学历群体的交通安全意识水平最高(b=1),小学及以下学历群体其交通安全意识水平较低(b=0.33);不同职业的公众中,事业单位人员群体的交通安全意识水平最高(b=0.93),农民群体的交通安全意识水平较低(b=0.33);不同出行方式的公众中,以公交车为主要出行方式的群体其交通安全意识水平最高(b=0.91),而以三轮车(b=0.35)和自行车(b=0.36)为主要出行方式的群体其交通安全意识水平较低。研究结果可用于不同公众群体交通安全意识的度量,并为不同群体的交通安全意识提升方法制定提供理论依据。 相似文献