将风流分析纳入早期城市设计:从业人员指南

Mathieu Paris, Frédéric Dubois, S. Bosc, Philippe Devillers
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引用次数: 0

摘要

在城市规划设计中模拟风模式的研究为城市规划设计领域的社会和经济方面做出了重大贡献。首先,它解决了城市发展中的一个关键因素,尤其是在地中海气候条件下,自然通风对夏季舒适度有很大影响。通过对城市风模式进行预测性数值模拟,这项研究为改善城市地区的室外热舒适度提供了宝贵的见解。在适应气候变化的背景下,这一点尤为重要,因为它为城市规划者和建筑师提供了明智的决策工具,以创造更可持续、更舒适的城市环境。此外,这项研究还为中型城市项目设计的早期阶段提供了迭代风模拟指南,从而为经济发展做出了贡献。通过对模拟工作流程的验证,它简化了设计流程,有可能减少城市规划和建筑设计所需的时间和资源。效率的提高可在项目开发过程中节约成本。此外,该研究就风洞单元大小和细化程度等仿真参数提出的建议,为优化仿真流程提供了切实可行的见解,有可能降低计算费用,提高城市设计项目的整体经济可行性。总之,这项研究有效地应对了与气候相关的挑战,在城市规划和设计领域造福了社会福祉和经济效益,同时也为更高效的模拟驱动设计程序提供了指导。
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Integrating Wind Flow Analysis in Early Urban Design: Guidelines for Practitioners
The research focused on simulating wind patterns in urban planning design offers substantial contributions to both the social and economic aspects of the urban planning and design field. To begin with, it addresses a critical factor in urban development, especially in Mediterranean climates, where natural ventilation significantly influences summer comfort. By incorporating predictive numerical simulations of urban wind patterns, this study provides valuable insights into improving outdoor thermal comfort within urban areas. This holds particular importance in the context of adapting to climate change, as it equips urban planners and architects with informed decision-making tools to create more sustainable and comfortable urban environments. Additionally, this research makes an economic contribution by presenting guidelines for iterative wind simulations in the early stages of designing medium-scale urban projects. Through the validation of a simulation workflow, it streamlines the design process, potentially reducing the time and resources required for urban planning and architectural design. This enhanced efficiency can result in cost savings during project development. Moreover, the study's recommendations concerning simulation parameters, such as wind tunnel cell size and refinement levels, offer practical insights for optimizing simulation processes, potentially lowering computational expenses and improving the overall economic viability of urban design projects. To summarize, this research effectively addresses climate-related challenges, benefiting both social well-being and economic efficiency in the field of urban planning and design, while also providing guidance for more efficient simulation-driven design procedures.
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