Open Access

Improved Variable Scale Optimisation Algorithm in Water Saving Landscape Design and Its Application

, ,  and   
Oct 10, 2024

Cite
Download Cover

Marin J, de Meulder B. Urban landscape design exercises in urban metabolism: reconnecting with Central Limburg’s regenerative resource landscape. J Landscape Architect. 2018;13(1):36-49. DOI: 10.1080/18626033.2018.1476031. Search in Google Scholar

Raaphorst K, Roeleveld G, Duchhart I, Van der Knaap W, Van den Brink A. Reading landscape design representations as an interplay of validity, readability and interactivity: a framework for visual content analysis. Visual Communication. 2020;19(2):163-97. DOI: 10.1177/1470357218779103. Search in Google Scholar

Xie Z. Key factors influencing landscape design in informatized urban development. Ekoloji. 2019;28(107):3535-40. Available from: https://openurl.ebsco.com/EPDB%3Agcd%3A1%3A12756865/detailv2?sid=ebsco%3Aplink%3Ascholar&id=ebsco%3Agcd%3A136265000&crl=f. Search in Google Scholar

Ling SY, Ruitu X, Bandeira AS. On the landscape of synchronization networks: A perspective from nonconvex optimization. SIAM J Optimization. 2019;29(3):1879-907. DOI: 10.1137/18M1217644. Search in Google Scholar

Liu ZZ, Wang Y, Yang S, Tang K. An adaptive framework to tune the coordinate systems in nature-inspired optimization algorithms. IEEE Trans Cybernetics. 2018;49(4):1403-16. DOI: 10.1109/TCYB.2018.2802912. Search in Google Scholar

Teng TW, Congyi Q. Urban landscape design based on sustainable development innovation. Open House Int. 2018;43(1):68-72. DOI: 10.1108/OHI-01-2018-B0014. Search in Google Scholar

Toy S, Neslihan D. Possible ways of mitigating the effects of climate change using efficient urban planning and landscape design principles in Turkey. Fresenius Environ Bull. 2019;28(2):710-7. Available from: https://avesis.atauni.edu.tr/yayin/d11e41fb-f476-4d29-b59c-355d3fc3f927/possible-ways-of-mitigating-the-effects-of-climate-change-using-efficient-urban-planning-and-landscape-design-principles-in-turkey. Search in Google Scholar

Maki R, Tomoko N. Landscape design in Hiroshima peace memorial park: transition of the design by Kenzo Tange. Japan Architect Rev. 2020;3(2):193-204. DOI: 10.1002/2475-8876.12136. Search in Google Scholar

Bilous LSV, Shyshchenko P, Havrylenko O. GIS in landscape architecture and design. Geoinformatics. 2021;2021(1):1-7. DOI: 10.3997/2214-4609.20215521034. Search in Google Scholar

Zhao D, Balint B, Tie W. Architecture and landscape design for Beikanzi village in China: An investigation of human settlement and environment. Pollack Periodica. 2018;13(2):231-6. DOI: 10.1556/606.2018.13.2.22. Search in Google Scholar

Long NV, Cheng Y. Urban landscape design adaption to flood risk: a case study in Can Tho City, Vietnam. Environ Urbanization ASIA. 2018;9(2):138-57. DOI: 10.1177/0975425318783587. Search in Google Scholar

Wang SJ, Haibin T. An extraction method of environmental behaviour characteristics in landscape design. Int J Environ Technol Manage. 2023;26(1-2):66-80. DOI: 10.1504/IJETM.2023.127341. Search in Google Scholar

Siregar Heri SP, & Akhmad AH. Landscape design for the south labuhanbatu district government office based on eco-design. Jurnal Arsitektur. 2023;13(1):19-30. DOI: 10.36448/ja.v13i1.2366. Search in Google Scholar

Deng BJ, Kim YH, Cao LS, Heo SH. Realization method for landscape architecture design using virtual reality technology-focused on the residential garden design. Journal of the Korean Institute of Landscape Architecture. 2019;47(3):71-80. DOI: 10.9715/KILA.2019.47.3.071. Search in Google Scholar

Guneroglu N, Makbulenur B. A methodology of transformation from concept to form in landscape design. J History Culture Art Res. 2019;8(1):243-53. DOI: 10.7596/taksad.v8i1.1625. Search in Google Scholar

Zhang M, Yang C, Zhang Z, Tian W, Hui B, Zhang J, et al. Tungsten oxide polymorphs and their multifunctional applications, Adv Colloid Interface Sci. 2022;300. 102596. DOI: 10.1016/j.cis.2021.102596. Search in Google Scholar

Huang X, Rudolph DL. Coupled model for water, vapour, heat, stress and strain fields in variably saturated freezing soils. Adv Water Resources. 2021;154.103945. DOI: 10.1016/j.advwatres.2021.103945. Search in Google Scholar

Huang X, Rudolph DL. A hybrid analytical-numerical technique for solving soil temperature during the freezing process. Adv Water Resources. 2022;162.104163. DOI: 10.1016/j.advwatres.2022.104163. Search in Google Scholar

Huang X, Rudolph DL, Glass B. A coupled thermal - hydraulic - mechanical approach to modeling the impact of roadbed frost loading on water main failure. Water Resources Res. 2022;58(3):e2021WR030933. DOI: 10.1029/2021WR030933. Search in Google Scholar

Qian L, Chen Z, Huang Y, Stanford RJ. Employing categorical boosting (CatBoost) and meta-heuristic algorithms for predicting the urban gas consumption. Urban Climate. 2023;51:101647. DOI: 10.1016/j.uclim.2023.101647. Search in Google Scholar

Hong Y, Wan M, Li Z. Understanding the health information sharing behavior of social media users: An empirical study on WeChat. J Organizational End User Computing (JOEUC). 2021;33(5):180-203. DOI: 10.4018/JOEUC.20210901.oa9. Search in Google Scholar

Xiao G, Wang T, Chen X, Zhou L. Evaluation of ship pollutant emissions in the ports of Los Angeles and Long Beach. J Marine Sci Eng. 2022;10(9):1206. DOI: 10.3390/jmse10091206. Search in Google Scholar

Lou R, Lv Z, Dang S, Su T, Li X. Application of machine learning in ocean data. Multimedia Systems. 2023;29(3):1815-24. DOI: 10.1007/s00530-020-00733-x. Search in Google Scholar

He G. Enterprise e-commerce marketing system based on big data methods of maintaining social relations in the process of e-commerce environmental commodity. J Organizational End User Computing (JOEUC). 2021;33(6):1-16. DOI: 10.4018/JOEUC.20211101.oa16. Search in Google Scholar

Jiang L. Environmental benefits of green buildings with BIM technology. Ecol Chem Eng S. 2023;30(2):191-9. DOI: 10.2478/eces-2023-0019. Search in Google Scholar

Li J. The mechanism and path of finance promoting the development of low carbon economy. Ecol Chem Eng S. 2023;30(2):227-34. DOI: 10.2478/eces-2023-0023. Search in Google Scholar

Klugmann-Radziemska E. Environmental assessment of solar cell materials. Ecol Chem Eng S. 2023;30(1):23-35. DOI: 10.2478/eces-2023-0002. Search in Google Scholar