Analysis Of Solar Radiation Towards Optimization and Location Of The Urban Blocks In The Neighborhood Units

O. Veisi, A. Shakibamanesh
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引用次数: 6

Abstract

Increasing population causes Energy consumption and environmental pollution. It is essential to consider renewable forms of energy, especially solar power, to reduce energy consumption. This requires attention to energy issues in the early stages of urban design and practical and creative solutions for more efficient use of this type of energy. This study aims at calculating the annual solar radiation at a city scale through a novel process and methodology. In this regard, artificial intelligence algorithms and satellite data can help maximize the amount of sunlight in neighborhoods and urban blocks in neighborhood units during the development process. In the simulation process, location, and optimization of the urban form, it is necessary to consider the limitations and resources for field study and simulation of urban blocks. Therefore, in this study, Farhangian neighborhood in phase 1 of Kermanshah, Iran, which has a good level of structural diversity and lends itself to field studies, was selected and studied at neighborhood and urban block scales. The case study indicates the significant role of calculating and optimizing the patterns of urban blocks to achieve maximum solar energy. Estimates at different levels show that urban block variables effectively access solar radiation energy and, given various scales of development - from macro-scale spatial planning to micro-scale local design - can improve energy intake by 3 to 5 percent. Accordingly, the results show that to accelerate the calculation of energy at the planning scale, the use of 2.5D locating model and 3D optimization contribute to achieving the maximum or minimum solar radiation, respectively. On the other hand, this method can be used to organize calculations and planning for maximum absorption of solar radiation at different stages of development.
太阳辐射对城市街区邻里单元优化定位的影响分析
人口增长导致能源消耗和环境污染。必须考虑使用可再生能源,特别是太阳能,以减少能源消耗。这需要在城市设计的早期阶段注意能源问题,并为更有效地利用这类能源提供实际和创造性的解决办法。本研究旨在通过一种新的过程和方法来计算城市尺度上的年太阳辐射。在这方面,人工智能算法和卫星数据可以帮助在开发过程中最大限度地提高社区和社区单元的城市街区的日照量。在城市形态的模拟过程、定位和优化中,需要考虑城市街区实地研究和模拟的局限性和资源。因此,本研究选取结构多样性水平较好、适合实地研究的伊朗Kermanshah一期Farhangian街区,在街区和城市街区尺度上进行研究。案例研究表明,计算和优化城市街区的模式对于实现最大的太阳能利用具有重要作用。不同水平的估计表明,城市街区变量有效地获取太阳辐射能,并且考虑到各种规模的发展-从宏观尺度的空间规划到微观尺度的局部设计-可以将能量摄入提高3%至5%。结果表明,为了加快规划尺度下的能量计算,采用2.5D定位模型和三维优化分别有助于实现太阳辐射最大值和最小值。另一方面,该方法可用于组织计算和规划在不同发展阶段对太阳辐射的最大吸收。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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