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Multi-Hazard Evaluation Using Cluster Analysis—For Designated Evacuation Centers of Yokohama

机译:使用聚类分析 - 横滨指定疏散中心的多危害评估

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Hazard maps are usually prepared for each disaster, including seismic hazard maps, flood hazard maps, and landslide hazard maps. However, when the general public attempts to check their own disaster risk, most are likely not aware of the specific types of disaster. So, first of all, we need to know what kind s of hazards are important. However, the information that integrates multiple hazards is not well maintained, and there are few such studies. On the other hand, in Japan, a lot of hazard information is being released on the Internet. So, we summarized and assessed hazard data that can be accessed online regarding shelters (where evacuees live during disasters) and their catchments (areas assigned to each shelter) in Yokohama City, Kanagawa Prefecture. Based on the results, we investigated whether a grouping by cluster analysis would allow for multi-hazard assessment. We used four natural disasters (seismic, flood, tsunami, sediment disaster) and six parameters of other population and senior population. However, since the characteristics of the population and the senior population were almost the same, only population data was used in the final examination. From the cluster analysis, it was found that it is appropriate to group the designated evacuation centers in Yokohama City into six groups. In addition, each of the six groups was found to have explainable characteristics, confirming the effectiveness of multi-hazard creation using cluster analysis. For example, we divided, all hazards are low, both flood and Seismic hazards are high, sediment hazards are high, etc. In many Japanese cities, disaster prevention measures have been constructed in consideration of ground hazards, mainly for earthquake disasters. In this paper, we confirmed the consistency between the evaluation results of the multi-hazard evaluated here and the existing ground hazard map and examined the usefulness of the designated evacuation center. Finally, the validity was confirmed by comparing this result with the ground hazard based on the actual measurement by the past research. In places where the seismic hazard is large, the two are consistent with the fact that the easiness of shaking by actual measurement is also large.
机译:危险地图通常为每场灾难准备,包括地震危险地图,洪水危险地图和滑坡危险地图。但是,当一般公众试图检查自己的灾害风险时,大多数人都可能不知道特定类型的灾难。所以,首先,我们需要知道危害的危险是什么重要的。但是,整合多种危险的信息并不妥善维护,并且少数这样的研究。另一方面,在日本,互联网上发布了很多危险信息。因此,我们概述和评估了可以在线访问的危险数据,了解庇护所(在灾害期间逃避)及其在横滨市横滨市的灾害中的集水区(分配给每个避难所)。根据结果​​,我们调查了集群分析的分组是否允许多危害评估。我们使用了四种自然灾害(地震,洪水,海啸,沉积物灾害)和其他人口和高级人口的六个参数。然而,由于人口和高级人群的特征几乎是相同的,因此在最终考试中只使用群体数据。从集群分析中,发现将指定的疏散中心分为横滨市将指定的疏散中心分为六组。此外,发现六组中的每一个具有可解释的特征,确认使用聚类分析的多危害创建的有效性。例如,我们分开,所有危险都很低,洪水和地震危害都很高,沉积物危害很高等。在许多日本城市,灾害预防措施是考虑到地面灾害,主要用于地震灾害。在本文中,我们确认了在此处评估的多危险评估结果与现有地面危险地图之间的一致性,并检查了指定的疏散中心的有用性。最后,通过基于过去研究的实际测量,通过对地面危害进行比较来确认有效性。在地震危险大的地方,这两个是一致的,即通过实际测量摇动的容易性也很大。

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