Mathematical Model Applied to Green Building Concept for Sustainable Cities Under Climate Change

M. H. A. Biswas, Pinky Rani Dey, M. Islam, S. Mandal
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引用次数: 6

Abstract

Recently the effect of greenhouse gases (GHGs) is worldwide terrified anxiety to the public and scholars. Even this global problem is one of the great issues that continuously makes worrying the governments and environmentalists, but its solution findings are not out of the image at all. In this study, we have proposed and analysed a mathematical model for the solvable management of GHGs by sowing the seeds of green building dynamic systems. Moreover, in the model, the human community is used to enhance the production power of individuals of green buildings by absorbing the GHGs. The model is analysed by stability analysis at the equilibrium points: trivial and global equilibrium, and also by convincing the stability and instability of the system of equations. The behaviour of the propound model has been developed by numerical simulations which shows the rate of the fruitfulness of GHG components.
气候变化下可持续城市绿色建筑理念的数学模型
近年来,温室气体(GHGs)的影响引起了全世界公众和学者的极大担忧。即使这个全球性的问题是不断让政府和环保人士担忧的重大问题之一,但它的解决方案却一点也不脱离形象。在这项研究中,我们提出并分析了一个数学模型,通过播下绿色建筑动态系统的种子来解决温室气体的管理问题。此外,在模型中,人类社区通过吸收温室气体来增强绿色建筑个体的生产能力。通过平衡点的稳定性分析:平凡平衡点和全局平衡点,以及方程组的稳定性和不稳定性。通过数值模拟得到了该模式的行为,它显示了温室气体组分的丰产率。
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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