城市气候适应计划工具:博洛尼亚案例研究及减少热浪影响的成果

Challenges Pub Date : 2023-11-29 DOI:10.3390/challe14040048
L. Cremonini, T. Georgiadis, M. Nardino, Federica Rossi, Alessandro Rossi, Giovanna Pinca, Massimiliano Fazzini
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摘要

本文旨在描述在艾米利亚-罗马涅地区建立一个协调一致的框架,以识别当地环境的城市脆弱性、应对热浪日益增加的威胁以及采取具体的适应政策的过程。我们利用小气候模型(ENVI-met)模拟了博洛尼亚五个地区的气温变化,并提供了事先地图,使我们能够确定最脆弱地区的位置。在世界气象组织第 1234 号指南的支持下,提出了适应措施建议,包括采用高缓冲建筑材料和自然解决方案的建议。所制定的逐步方法将当地的脆弱性与适应建议相结合,将科学方法融入政治决策。研究结果广泛反映了这座城市的脆弱性,被认为在支持城市的适应雄心方面表现突出,现已成为正在实施的《博洛尼亚城市总体规划》(PUG)的一部分,该规划对建筑干预措施进行了规范,规定企业有义务尊重或改善其干预的所有区域的小气候。这一工具可以复制并适用于任何城市地区,因为它将世界气象组织的权威解决方案与准确的微气候评估相结合,从而提供适合当地情况的适应性干预措施。本文旨在支持科学和政策制定者的共同愿景,即把城市转变为具有广泛复原力的系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tools for Urban Climate Adaptation Plans: A Case Study on Bologna and Outcomes for Heat Wave Impact Reduction
The purpose of this paper is to describe the process of building a coherent frame for the identification of local environmental urban vulnerabilities, coping with heat waves’ increasing threats, and adopting specific adaptation policies in the Emilia-Romagna region. A microclimate model (ENVI-met) was used to simulate temperature regimes in five areas of Bologna, providing ex ante maps enabling us to locate the most vulnerable areas. Adaptation measures were suggested with the support of WMO Guidance 1234 and included recommendations about the introduction of high-albedo building materials and nature-based solutions. The step-by-step methodology developed, coupling local vulnerabilities with adaptation recommendation, integrates a scientific methodology into a political decision. The results, allowing us to widely represent this city’s vulnerability, are considered outstanding with respect to supporting the city’s adaptation ambitions and are now part of the running Bologna General Urban Plan (PUG), which regulates building interventions, introducing the obligation for enterprises to respect or ameliorate the microclimate in all the areas in which they intervene. This tool can be replicated and adapted to any municipal area, as it integrates authoritative WMO solutions with accurate microclimate assessment, thus providing locally tailored adaptation interventions. This paper aims to support the vision, shared by both science and policy makers, of transforming cities into widely resilient systems.
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