Title: Application of energy saving and environmental protection material in landscape construction of urban landscape wetland system

Authors: Yifei Zhang; Yi Liu

Addresses: School of Architecture, Harbin Institute of Technology, China; Key Laboratory of Cold Region Urban and Rural Human Settlement Environment Science and Technology, Ministry of Industry and Information Technology, Harbin, Heilongjiang, 150001, China ' The 4th Affiliated Hospital of Harbin Medical University, Harbin, Heilongjiang, 150001, China

Abstract: With the strengthening of energy saving and environmental protection requirements of buildings in China, the limitations of traditional landscape construction in energy saving and environmental protection in China are becoming more and more obvious. Based on this, this paper studies the application of energy saving and environmental protection materials in the landscape design of urban garden wetland system, and constructs a material performance analysis model based on logical regression algorithm. From six aspects, the information collection of materials in energy conservation and environmental protection is realised, and the logical regression algorithm is used for comprehensive analysis and evaluation. The material analysis model can make the construction of urban garden wetland system more ecological by comprehensive analysis of different types of materials, according to the environmental protection requirements of landscape construction and the planning scheme of urban garden wetland system. The experimental results show that the material analysis model based on logical regression algorithm has the advantages of quantifiable evaluation and good stability, which can improve the application efficiency of energy saving and environmental protection materials in landscape construction and strengthen the ecological nature of garden wetland system.

Keywords: logical regression algorithm; urban garden wetland system; energy saving and environmental protection materials; landscape construction; nanometre material.

DOI: 10.1504/IJNT.2022.129756

International Journal of Nanotechnology, 2022 Vol.19 No.12, pp.1105 - 1116

Received: 08 Dec 2020
Accepted: 23 Feb 2021

Published online: 25 Mar 2023 *

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