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利用高密度监测网络系统推进城市气候研究。

Progressing urban climate research using a high-density monitoring network system.

机构信息

Faculty of Sciences, Climatology and Hydrology Research Centre, University of Novi Sad, Trg Dositeja Obradovića 3, Novi Sad, 21000, Serbia.

Faculty of Technical Sciences, Department of Applied Computer Science, University of Novi Sad, Trg Dositeja Obradovića 3, Novi Sad, 21000, Serbia.

出版信息

Environ Monit Assess. 2019 Jan 21;191(2):89. doi: 10.1007/s10661-019-7210-0.

Abstract

An increasing number of urban meteorological networks (UMNs) and automated data acquisition are irreplaceable tools in modern urban climate monitoring, evaluation, and analysis. The most serious issue in such systems is data loss, caused primarily by communication problems between stations and servers. The Novi Sad Urban Network (NSUNET) consists of 28 remote stations and 2 servers built solely on open-source technologies. It is used for monitoring climate peculiarities and acquiring long-term meteorological data from the urban area of Novi Sad, as well as for the early warning notification to the city emergency services of the current urban weather conditions. Since its deployment, the system has managed to overcome most of the problems related to today's UMNs, to operate at a low Internet service fee, and ensure high reliability and performance on low-budget hardware. This study includes details on how to develop such a system and it presents a statistical analysis of the NSUNET system's performances and the measurement data. Furthermore, this kind of monitoring system provides good results in the analysis of air/surface temperature and outdoor human thermal comfort in the local climate zones (LCZs) of urban and surrounding areas and can help identify hot spots/districts in the urban area.

摘要

越来越多的城市气象网络 (UMN) 和自动化数据采集是现代城市气候监测、评估和分析中不可或缺的工具。此类系统中最严重的问题是数据丢失,主要是由于站点和服务器之间的通信问题造成的。Novi Sad 城市网络 (NSUNET) 由 28 个远程站和 2 个仅基于开源技术构建的服务器组成。它用于监测诺维萨德市区的气候特征和获取长期气象数据,并向城市应急服务部门发出当前城市天气状况的预警通知。自部署以来,该系统已成功克服了与当今 UMN 相关的大多数问题,以低互联网服务费用运行,并确保在低预算硬件上具有高可靠性和高性能。本研究详细介绍了如何开发此类系统,并对 NSUNET 系统的性能和测量数据进行了统计分析。此外,这种监测系统在分析城市和周边地区局部气候区 (LCZ) 的空气/表面温度和户外人体热舒适度方面提供了良好的结果,并有助于识别城市热点/区域。

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