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Tytuł artykułu

The importance of low-carbon landscape design in rural tourism landscape

Autorzy
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper aims to study the importance of low-carbon landscape design based on rural tourism landscape. First of all, after sorting out and researching the relevant reviews of low-carbon landscapes, taking rural landscapes as the research object, a rural landscape planning and design framework based on the perspective of low-carbon construction is proposed. Then, Xiwuli Village is used as an example to carry out the application practice of specific strategies and the carbon emissions before and after the planning and design are calculated and compared. After the low-carbon planning and design of the rural landscape, the net carbon footprint and the total carbon footprint were significantly reduced, confirming the low-carbon effect of the planning and design strategy. Finally, according to the actual situation of the scenic spot, it points out the principles and policy suggestions that must be followed in the development of low-carbon rural tourism. Experiments show that: the net carbon footprint and total carbon footprint are significantly reduced, which proves the actual effect of low-carbon design and the effect of low-carbon planning and design strategy.
Rocznik
Strony
319--332
Opis fizyczny
Bibliogr. 15 poz., rys., tab., wykr.
Twórcy
autor
  • College of Fine Art and Design, Hubei Engineering University, Xiaogan 432000, Hubei, China
autor
  • College of Information and Computer Science, Hubei Engineering University, Xiaogan 432000, Hubei, China
Bibliografia
  • [1] Shafiezadeh M, Moradi H, Fakheran S, Pourmanafi S, Senn J. Integrated coastal-terrestrial conservation planning for landscape-scale reserve design in Southeastern Iran. Ecol Indicators. 2019;103:756-65. DOI: 10.1016/j.ecolind.2019.03.006.
  • [2] Yoshihara T, Nishina D, Tanaka T, Kawase K, Takagishi H. A study on the psychological evaluation of tourism landscape images in Hiroshima a psychological evaluation by Korean subjects. J Asian Architecture Building Eng. 2017;16(1):223-9. DOI: 10.3130/jaabe.16.223.
  • [3] Neves EMG, Haldenby E. Fertile ground: Cultivating a renewed identity through architecture while providing a solution to sustain the natural biodiversity and thermal waters in Manteigas, Portugal. Environ Earth Sci. 2015;73(6):3019-31. DOI: 10.1007/s12665-014-3550-9.
  • [4] Takagishi H, Nishina D, Lu W, Jin H, Tanaka T, Yoshihara T, et al. A study on the psychological evaluation of tourism landscape images in Hiroshima. J Environ Eng. 2016;81(726):651-60. DOI: 10.3130/aije.81.651.
  • [5] Li D, Li H, Li W, Guo J, Li E. Application of flipped classroom based on the rain classroom in the teaching of computer-aided landscape design. Computer Applications Eng Educ. 2020;28(2):357-66. DOI: 10.1002/cae.22198.
  • [6] Wang G, Xue Y, An L, Zheng Y, Dou Y, Zhang L, et al. Theoretical study on the structural and antioxidant properties of some recently synthesised 2,4,5-trimethoxy chalcones. Food Chem. 2015;171:89-97. DOI: 10.1016/j.foodchem.2014.08.106.
  • [7] Fartmann T, Kmpfer S, Brüggeshemke J, Juchem M, Klauer F, Weking S, et al. Landscape-scale effects of Christmas-tree plantations in an intensively used low-mountain landscape-applying breeding bird assemblages as indicators. Ecol Indicators. 2018;94: 409-19. DOI: 10.1016/j.ecolind.2018.07.006.
  • [8] Yan S, Wang X, Cai Y, Li C, Yang Z, Yi Y. Investigation of the spatio-temporal dynamics in landscape variations in a shallow lake based on a new tendency-pattern-service conceptual framework. J Cleaner Production. 2017;161:1074-84. DOI: 10.1016/j.jclepro.2017.05.114.
  • [9] Ilić P, Ilić S, Nešković Markić D, Stojanović Bjelić L, Farooqi ZUR, Sole B, et al. Source identification and ecological risk of polycyclic aromatic hydrocarbons in soils and groundwater. Ecol Chem Eng S. 2021;28(3):355-63. DOI: 10.2478/eces-2021-0024.
  • [10] Zscheischler J, Busse M, Heitepriem N. Challenges to build up a collaborative landscape management (CLM)-lessons from a stakeholder analysis in Germany. Environ Manage. 2019;64(5):580-92. DOI: 10.1007/s00267-019-01205-3.
  • [11] Liu N, Nishina D, Takagishi H, Lu W, Jin H, Tanaka T, et al. The influence of text information on the psychological evaluation of tourism landscape images in Hiroshima. J Environ Eng (Trans AIJ). 2019;84(760):553-63. DOI: 10.3130/aije.84.553.
  • [12] Liu N, Nishina D, Lu W, Jin H, Jiang R. Corrigendum: The influence of text information on the psychological evaluation of tourism landscape images in Hiroshima. J Environ Eng (Trans AIJ). 2021;86(781):347. DOI: 10.3130/aije.86.347.
  • [13] Schwoertzig E, Poulin N, Hardion L, Trernolieres M. Plant ecological traits highlight the effects of landscape on riparian plant communities along an urban-rural gradient. Ecol Indicators: Integrating, Monitoring, Assessment Manage. 2016;61(Part 2):568-76. DOI: 10.1016/j.ecolind.2015.10.008.
  • [14] Pranskevicius M, Paliulis D. Evaluation of total organic carbon quantity and emissions of CO2 from soil into the atmosphere near street. Ecol Chem Eng S. 2021;28(3):399-410. DOI: 10.2478/eces-2021-0027.
  • [15] Gottero E, Cassatella C. Landscape indicators for rural development policies. Application of a core set in the case study of Piedmont Region. Environ Impact Assessment Rev. 2017;65:75-85. DOI: 10.1016/j.eiar.2017.04.002.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-4c0fd36d-3ffa-4b2e-a828-cf1f2e40e97d
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