Gwak Jae Ha, Lee Bo Kyeong, Lee Won Kyung, Sohn So Young
Department of Information and Industrial Engineering, Yonsei University, 134 Shinchon-dong, Seoul 120-749, Republic of Korea.
Department of Information and Industrial Engineering, Yonsei University, 134 Shinchon-dong, Seoul 120-749, Republic of Korea.
J Environ Manage. 2017 Mar 15;189:125-133. doi: 10.1016/j.jenvman.2016.12.022. Epub 2016 Dec 22.
This study proposes a new framework for the selection of optimal locations for green roofs to achieve a sustainable urban ecosystem. The proposed framework selects building sites that can maximize the benefits of green roofs, based not only on the socio-economic and environmental benefits to urban residents, but also on the provision of urban foraging sites for honeybees. The framework comprises three steps. First, building candidates for green roofs are selected considering the building type. Second, the selected building candidates are ranked in terms of their expected socio-economic and environmental effects. The benefits of green roofs are improved energy efficiency and air quality, reduction of urban flood risk and infrastructure improvement costs, reuse of storm water, and creation of space for education and leisure. Furthermore, the estimated cost of installing green roofs is also considered. We employ spatial data to determine the expected effects of green roofs on each building unit, because the benefits and costs may vary depending on the location of the building. This is due to the heterogeneous spatial conditions. In the third step, the final building sites are proposed by solving the maximal covering location problem (MCLP) to determine the optimal locations for green roofs as urban honeybee foraging sites. As an illustrative example, we apply the proposed framework in Seoul, Korea. This new framework is expected to contribute to sustainable urban ecosystems.
本研究提出了一个新的框架,用于选择绿色屋顶的最佳位置,以实现可持续的城市生态系统。所提出的框架选择能够使绿色屋顶效益最大化的建筑场地,这不仅基于对城市居民的社会经济和环境效益,还基于为蜜蜂提供城市觅食场所。该框架包括三个步骤。首先,根据建筑类型选择绿色屋顶的候选建筑。其次,根据所选候选建筑预期的社会经济和环境影响进行排名。绿色屋顶的效益包括提高能源效率和空气质量、降低城市洪水风险和基础设施改善成本、雨水再利用以及创造教育和休闲空间。此外,还考虑了安装绿色屋顶的估计成本。我们利用空间数据来确定绿色屋顶对每个建筑单元的预期影响,因为效益和成本可能因建筑位置而异。这是由于空间条件的异质性。在第三步中,通过解决最大覆盖选址问题(MCLP)来确定作为城市蜜蜂觅食场所的绿色屋顶的最佳位置,从而提出最终的建筑场地。作为一个示例,我们在韩国首尔应用了所提出的框架。这个新框架有望为可持续城市生态系统做出贡献。