Melbourne School of Design, University of Melbourne, Masson Rd, Parkville, VIC 3010, Australia.
School of Design and Architecture, Swinburne University of Technology, John Street, Hawthorn, VIC 3122, Australia.
Int J Environ Res Public Health. 2022 Jul 5;19(13):8220. doi: 10.3390/ijerph19138220.
The design of green infrastructure in urban renewal sites is complex, requiring engagement with existing communities and future sustainable development goals, consideration of existing and future urban forms, changing climatic conditions, and the sites often being in low-lying and flood-prone areas. Traditional street tree decision-making approaches are inadequate for addressing the scale, environmental complexity, and mutability of decisions involved in urban renewal projects-new tree selection approaches that consider complex competing criteria for tree selections addressing stormwater management systems, visual assessment and solar amenity are needed. This paper describes a new method of multi-criteria street design decision modelling that combines outputs from hydrology modelling, digital procedural tree modelling and urban form analysis, with animation and gaming technologies. We evaluate our approach through application to the design of a large-scale, urban renewal project underway in Melbourne, Australia. The results of the study demonstrate the functionality of our model, which allowed the simultaneous output of streetscape visualisation, with tree selection responding to integrated stormwater management infrastructure and flooding, along with the likely overshadowing conditions of urban renewal built-form. Our multi-criteria approach makes a significant contribution to the tools available to urban designers, planners and landscape architects in their pursuit of smarter streetscape design decisions that respond to complex spatial, cultural and climatic urban challenges.
城市更新项目中绿色基础设施的设计较为复杂,需要与现有社区和未来可持续发展目标相契合,考虑现有的和未来的城市形态、不断变化的气候条件,并且这些场地通常位于地势低洼且容易发生洪涝的地区。传统的街道树木决策方法不足以应对城市更新项目所涉及的规模、环境复杂性和决策的多变性——需要新的树木选择方法,该方法需要考虑到与雨水管理系统、视觉评估和太阳能设施相关的复杂竞争标准。本文描述了一种新的多标准街道设计决策建模方法,该方法结合了水文学建模、数字程序树木建模和城市形态分析的输出结果,以及动画和游戏技术。我们通过将该方法应用于澳大利亚墨尔本正在进行的大规模城市更新项目的设计,对其进行了评估。研究结果表明,我们的模型具有功能性,该模型可以同时输出街道景观可视化效果,并且树木选择可以响应综合雨水管理基础设施和洪水情况,以及城市更新建筑形态可能产生的遮阳条件。我们的多标准方法为城市设计师、规划师和景观建筑师提供了重要的工具,有助于他们做出更智能的街道景观设计决策,以应对复杂的空间、文化和气候城市挑战。