Volume 12, Issue 1 (2022)                   Naqshejahan 2022, 12(1): 84-104 | Back to browse issues page

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Rahimi R, Heidar Nattaj V, Najjari Alamoti Y, Anvarifar S. Investigating Green Tourism and Cultural Development of Local Communities with Emphasis on Contemporization of Mazandaran Industrial Heritage. Naqshejahan 2022; 12 (1) :84-104
URL: http://bsnt.modares.ac.ir/article-2-58080-en.html
1- Assistant Professor, Department of Architecture, Faculty of Arts and Architecture, University of Mazandaran, Babolsar, Iran , r.rahimi@umz.ac.ir
2- Associate Professor, Department of Architecture, Faculty of Arts and Architecture, University of Mazandaran, Babolsar, Iran
3- M.Sc. Student, Department of Architecture, Tarbiat Modares University, Tehran, Iran
Abstract:   (1561 Views)
Aims: The purpose of the research is to identify strategies for green adaptive reuse of the shared-heritage of Iran and Germany which were built during WWI and WWII in Mazandaran, and to identify the role of green adaptive reuse in the sustainable development of local communities. The research is to identify the effective components in green contemporization of Mazandaran industrial heritage buildings, and the impact of each criterion on the sustainable development of local communities.
Methods: The AHP method is adopted to evaluate the opinions of the experts by combination of questionnaire and the Delphi method. By examining the industrial heritage of Mazandaran and comparing its position with similar cases, the effective components of the green contemporization process were prioritized.
Findings: The industrial heritage of Mazandaran including the Babol cotton factory with 26.6%, the GhaemShahr textile factory with 21%, the Naseri-way with 20.6%, the Chalous-Metal-Bridge with 16.8% and Lar-Stone-Bridge with 15.5% will be effective in development of the local communities of Mazandaran by means of development of tourism.
Conclusion: The development of industrial heritage with the priority of sustainable social development leads to the development of local communities. The conclusion emphasizes on the priority of tourism development by creating access security, possibility of sale, public and private arena, optimal use of the ruined area, creating a multi-purpose use and organizing commercial units, as well as cultural development with protection of works, integrated development, holding cultural activities will play an effective role in the development of local communities in Mazandaran.
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Article Type: Original Research | Subject: Highperformance Architecture
Received: 2021/09/24 | Accepted: 2022/02/4 | Published: 2022/03/26

References
1. Rezaei Ghahroodii S, Mahdavinejad M. Reviewing and Implementing International Valuation Criteria for Industrial Architectural Heritage. Maremat & Me'mari-e Iran. 2019 Mar 10;9(17):21-38. [Persian] https://dorl.net/dor/20.1001.1.23453850.1398.9.17.4.0 [Article] [DOI]
2. Xu S, Aoki N. Introduction to a Major Project of the National Social Science Fund: Research on China’s Industrial Heritage Conservation System. Built Heritage 2. 2018 Mar 01; 3–18. https://doi.org/10.1186/BF03545699 [Article] [DOI]
3. Sardaro R, La Sala P, De Pascale G, Faccilongo N. The conservation of cultural heritage in rural areas: Stakeholder preferences regarding historical rural buildings in Apulia, southern Italy. Land Use Policy. 2021 Oct 1; 109:105662. https://doi.org/10.1016/j.landusepol.2021.105662 [Article] [DOI]
4. Szromek A, Herman K, Naramski M. Sustainable development of industrial heritage tourism – A case study of the Industrial Monuments Route in Poland. Business, Tourism Management. 2021 Apr 12; 83:104252. https://doi.org/10.1016/j.tourman.2020.104252 [Article] [DOI]
5. Mahdavinejad M, Zia A, Larki AN, Ghanavati S, Elmi N. Dilemma of green and pseudo green architecture based on LEED norms in case of developing countries. International journal of sustainable built environment. 2014 Dec 1; 3(2):235-46. https://doi.org/10.1016/j.ijsbe.2014.06.003 [Article] [DOI]
6. Belláková E. Analysis of Industrial Architectural Heritage – Iron and Steel Plants as a Development Potential. World Multidisciplinary Civil Engineering-Architecture. Procedia Engineering. 2016 Oct 18;161:1926 – 1931. https://doi.org/10.1016/j.proeng.2016.08.769 [Article] [DOI]
7. De Medeiros L. Heritage-LED Development in Postindustrial Areas: A systemic approach to industrial landscapes. ProQuest LLC. 2018. https://doi.org/10.37099/mtu.dc.etdr/673 [Article] [DOI]
8. Bartolini N, DeSilvey C. Making space for hybridity: Industrial heritage nature cultures at West Carclaze Garden Village. Cornwall. Geoforum. 2020 May 18; 113:39-49. https://doi.org/10.1016/j.geoforum.2020.04.010 [Article] [DOI]
9. Claver J, Sebastian M. Methodological study and characterization of industrial heritage of the autonomous community of Galicia. Manufacturing Engineering Society International conference. Procedia Manufacturing. 2017 Oct 5; 13:1305–1311. https://doi.org/10.1016/j.promfg.2017.09.061 [Article] [DOI]
10. Yazdgerd F, Hanachi P, Talebian M. Framework of Conservation Evaluation for Dynamic Cultural World Heritage Sites. Naqshejahan - Basic studies and New Technologies of Architecture and Planning. 2021 Jul 10; 11(2):101-19. [Persian] https://dorl.net/dor/20.1001.1.23224991.1400.11.2.6.1 [Article] [DOI]
11. Shahhosseini G, Moulaii M. Explaining the Role and Place of Industrial Heritage in Improving the Quality Characteristics of the Hierarchy of the City Entrances (Case study: Brick Furnaces in the Entrance of Hamedan). Naqshejahan - Basic Studies and New Technologies of Architecture and Planning. 2019 Mar 10; 9(1):13-22. [Persian] https://dorl.net/dor/20.1001.1.23224991.1398.9.1.3.2 [Article] [DOI]
12. Samadzadehyazdi S, Ansari M, Bemanian M.R. Environment Sustainability through Adaptive Reuse (Case Study: Industrial Heritage of Iran). Naqshejahan - Basic studies and New Technologies of Architecture and Planning. 2019; 9(1):67-77. [Persian] https://dorl.net/dor/20.1001.1.23224991.1398.9.1.2.1 [Article] [DOI]
13. Samadzadehyazdi S, Ansari M, Mahdavinejad M, Bemaninan M. Significance of authenticity: learning from best practice of adaptive reuse in the industrial heritage of Iran. International Journal of Architectural Heritage. 2020 Mar 15;14(3):329-44. https://doi.org/10.1080/15583058.2018.1542466 [Article] [DOI]
14. Pourzargar M. Posto-Corona Visioning for Sustainable Adaptive Reuse of Kahrzak Sugar Factory. Naqshejahan - Basic studies and New Technologies of Architecture and Planning. 2022 Jan 10; 11(4):79-95. [Persian] https://dorl.net/dor/20.1001.1.23224991.1400.11.4.7.6 [Article] [DOI]
15. Goudini, J., Vafamehr, M. A Comprehensive Concept of Architecture in the Study of Industrial Complexes Based on Systems Theory Approach. Journal of Iranian Architecture & Urbanism. 2019 May 22;10(1):79-93. [Persian] https://doi.org/10.30475/isau.2019.97131 [Article] [DOI]
16. Della Torre S. Italian perspective on the planned preventive conservation of architectural heritage. Frontiers of Architectural Research. 2021 Mar 1;10(1),108-116. https://doi.org/10.1016/j.foar.2020.07.008
17. Esmaeilian Toussi H, Etessam E. Analysis of the Architecture of the Industrial Heritage Using a Combined Method of Typology and Analytical Shape Grammar (Case Study of Textile Factories of Isfahan and Yazd in the Pahlavi Era). Naqshejahan - Basic Studies and New Technologies of Architecture and Planning. 2019 Apr 20; 9 (1):1-12. [Persian] https://dorl.net/dor/20.1001.1.23224991.1398.9.1.6.5 [Article] [DOI]
18. Hanachi P, Mollazadeh F, FadaeiNezhadBahramjerdi S. Developing the conceptual framework of value-based management in cultural and historical places; (Looking at the Islamic Culture). Naqshejahan - Basic Studies and New Technologies of Architecture and Planning. 2017 Dec 10;7(3):1-14. [Persian] https://dorl.net/dor/20.1001.1.23224991.1396.7.3.4.3
19. Heidari S, Hanachi P, Teymoortash S. The Adaptive Reuse of Industrial Heritage, an Approach Based on Energy Recycle. Naqshejahan - Basic Studies and New Technologies of Architecture and Planning. 2019 Mar 10; 9 (1):45-53. [Persian] https://dorl.net/dor/20.1001.1.23224991.1398.9.1.5.4 [Article] [DOI]
20. Munarim U, Enedir G. Environmental Feasibility of Heritage Buildings Rehabilitation. Renewable and Sustainable Energy Reviews. 2016 May 1; 58:235-49. https://doi.org/10.1016/j.rser.2015.12.334 [Article] [DOI]
21. Nadkarni R R, Puthuvayi B. A comprehensive literature review of Multi-Criteria Decision Making methods in heritage buildings. Journal of Building Engineering. 2020 Sep 17:101814. https://doi.org/10.1016/j.jobe.2020.101814 [Article] [DOI]
22. Narayanan A, Jenamani M, Mahanty B. Determinants of sustainability and prosperity in Indian cities. Habitat International. 2021 Dec 1; 118:102456. https://doi.org/10.1016/j.habitatint.2021.102456 [Article] [DOI]
23. NejadEbrahimi A, Farrokhi S, Shab Ahang M. Architectural Pattern Recognition of First Pahlavi’s Industrial Factories in Tabriz. Naqshejahan - Basic Studies and New Technologies of Architecture and Planning. 2019; 9 (1):33-44. [Persian] https://dorl.net/dor/20.1001.1.23224991.1398.9.1.4.3 [Article] [DOI]
24. Ragheb A, Aly R, Ghada A. Toward sustainable urban development of historical cities: Case study of Fouh City, Egypt. Ain Shams Engineering Journal. 2021 Jul 1, 13(1). https://doi.org/10.1016/j.asej.2021.06.006 [Article] [DOI]
25. Yazdgerd F, Hanachi P, Talebian M. Framework of Conservation Evaluation for Dynamic Cultural World Heritage Sites. Naqshejahan - Basic Studies and New Technologies of Architecture and Planning. 2021 Jun 22; 11 (2):101-119. [Persian] https://dorl.net/dor/ 20.1001.1.23224991.1400.11.2.6.1 [Article] [DOI]
26. Sharifi M, Talebian M. Recognizing and Explaining the Values of the Railway Heritage (Case Study: Trans-Iranian Railway). Iranian Journal of Anthropology Research. 2019; 8(1):75-94. [Persian] https://doi.org/10.22059/ijar.1397.70509 [Article] [DOI]
27. Meskel L. UNESCO’s World Heritage Convention at 40: Challenging the Economic and Political Order of International Heritage Conservation. The University of Chicago Press on behalf of Wenner-Gren Foundation for Anthropological Research. Current Anthropology. 2013 Aug 01; 54(4):483-494. https://doi.org/10.1086/671136 [Article] [DOI]
28. Bullen P, Love L. A new future for the past: a model for adaptive reuse decision-making. Built Environ Proj Asset Mana. 2011 Jul 8; 1(1):32-44. https://doi.org/10.1108/20441241111143768 [Article] [DOI]
29. Ghanbari A. Industrial heritage in Historic urban landscape; the role of the sugar factory in the varamin urban landscape. Manzar. 2018 Jun 1;10(43):26-33. [Persian] https://doi.org/10.22034/manzar.2018.68623 [Article] [DOI]
30. Shahhoseini G, Moulaei M.M. Explaining the Role and Place of Industrial Heritage in Improving the Quality Characteristics of the Hierarchy of the City Entrances (Case study: Brick Furnaces in the Entrance of Hamedan. Naqshejahan - Basic Studies and New Technologies of Architecture and Planning. 2019 Apr 20; 9(1):13-22. [Persian] http://dorl.net/dor/20.1001.1.23224991.1398.9.1.3.2 [Article] [DOI]
31. Ranjkesh R, Fadaei Nezhad Bahramjerdi S. Adaptation and Reuse of Industrial Heritage as a Continuation of Urban Identity. Tabriz Salambur Factory and Igualada Leather Factory Spain. Naqshejahan - Basic Studies and New Technologies of Architecture and Planning. 2020 Jun 20; 10 (1):55-62. [Persian] http://dorl.net/dor/20.1001.1.23224991.1399.10.1.6.2 [Article] [DOI]
32. Rahimi R, Ansari M, Bemanian M, Mahdavinejad M. Relation between sense of belonging to place and participation on promoting social capital in informal settlements (Case study: Tork-Mahalleh neighborhood at the city of Sari). Journal of Sustainable Architecture and Urban Design. 2020 May 21; 8(1):15-29. [Persian] https://doi.org/10.22061/jsaud.2020.4618.1364 [Article] [DOI]
33. Haghighatbin M, Bidarbakht N. The Improve of Sense of Pleasure in Reclamation of Post-Industrial Landscapes. Naqshejahan - Basic Studies and New Technologies of Architecture and Planning. 2019 Apr 20; 9(1):55-65. [Persian] http://dorl.net/dor/20.1001.1.23224991.1398.9.1.1.0 [Article] [DOI]
34. Aref. F., S Gill. S, Aref F. Tourism Development in Local Communities: As a Community Development Approach. Journal of American Science. 2010 Feb 01; 6(2):155-161. https://doi.org/10.7537/marsjas060210.26 [Article] [DOI]
35. Mohebi A, Hosaini S.M, Nasroullazadeh S.J. Strategic pattern in the organizing the cultural heritage and tourism affairs on the experiences of the Islamic republic of Iran system. Strategic defense studies. 2020 Mar 20; 18 (79):349-368. [Persian] http://dorl.net/dor/20.1001.1.20084897.1399.18.79.15.1 [Article] [DOI]
36. Rahimi. R, Ansari M, Bemanian. M, Mahdavinejad M. Evaluation of the effect of physical components on the place attachmentin communal spaces of selected residential complexes of Tehran. Journal of Bagh-E Nazar. 2020 Apr 20;17(83):15-30. [Persian] https://doi.org/10.22034/bagh.2020.185425.4107 [Article] [DOI]
37. Cristina M, Laurenţiu M, Loreta C, Constantin D. Conversion of industrial heritage as a vector of cultural regeneration. Procedia - Social and Behavioral Sciences. 2014 Mar 19;122:162–166. https://doi.org/10.1016/j.sbspro.2014.01.1320 [Article] [DOI]
38. Claver J, Sebastian M. Basis for the classification and study of immovable properties of the Spanish industrial heritage. The Manufacturing Engineering Society International Conference, MESIC. Procedia Engineering. 2013 Sep 10; 63:506–513. https://doi.org/10.1016/j.proeng.2013.08.184 [Article] [DOI]
39. Romeo E, Morezzi E, Rudiero R. Industrial heritage: reflections on the use compatibility of cultural sustainability and energy efficiency. 6th International Building Physics Conference, IBPC. Energy Procedia. 2015 Nov 01; 78:1305–1310. https://doi.org/10.1016/j.egypro.2015.11.145 [Article] [DOI]
40. Mahdiun S, Fadaei nezhad S. Principles of Retooling for the Adaptive Reuse of the Industrial Architectural Heritage. Naqshejahan - Basic Studies and New Technologies of Architecture and Planning. 2019 Apr 20; 9(1):23-31. [Persian] https://dorl.net/dor/20.1001.1.23224991.1398.9.1.7.6 [Article] [DOI]
41. Mahdavinejad M. Designerly Approach to Energy Efficiency in High-Performance Architecture Theory. Naqshejahan - Basic Studies and New Technologies of Architecture and Planning. 2020 Sep 10;10(2):75-83. [Persian] https://dorl.net/dor/20.1001.1.23224991.1399.10.2.7.5 [Article] [DOI]
42. Mahdavinejad M. Dilemma of Prosperity and Technology in Contemporary Architecture of Developing Countries. Naqshejahan - Basic Studies and New Technologies of Architecture and Planning, 2014 Sep 10;3(2):35-42. [Persian] https://dorl.net/dor/20.1001.1.23224991.1393.4.2.7.3 [Article] [DOI]
43. Diba D. Contemporary architecture of Iran. Architectural Design. 2012 May;82(3):70-9. https://doi.org/10.1002/ad.1406 [Article] [DOI]
44. Ahmadi J, Mahdavinejad M, Asadi S. Folded double-skin façade (DSF): in-depth evaluation of fold influence on the thermal and flow performance in naturally ventilated channels. International Journal of Sustainable Energy. 2021 Jun 16:1-30. https://doi.org/10.1080/14786451.2021.1941019 [Article] [DOI]
45. Ahmadi J, Mahdavinejad M, Larsen OK, Zhang C, Zarkesh A, Asadi S. Evaluating the different boundary conditions to simulate airflow and heat transfer in Double-Skin Facade. Building Simulation. 2021 Sep 16:1-17. Tsinghua University Press. https://doi.org/10.1007/s12273-021-0824-5 [Article] [DOI]
46. Bazazzadeh H, Pilechiha P, Nadolny A, Mahdavinejad M, Hashemi Safaei SS. The Impact Assessment of Climate Change on Building Energy Consumption in Poland. Energies. 2021 July 06;14(14):4084. http://dx.doi.org/10.3390/en14144084 [Article] [DOI]
47. Bazazzadeh H, Świt-Jankowska B, Fazeli N, Nadolny A, Safar Ali Najar B, Hashemi Safaei S, Mahdavinejad M. Efficient Shading Device as an Important Part of Daylightophil Architecture; a Designerly Framework of High-Performance Architecture for an Office Building in Tehran. Energies. 2021 December 8;14(24), 8272. https://doi.org/10.3390/en14248272 [Article] [DOI]
48. Goharian A, Mahdavinejad M. A novel approach to multi-apertures and multi-aspects ratio light pipe. Journal of Daylighting. 2020 Sep 16;7(2):186-200. https://doi.org/10.15627/jd.2020.17 [Article] [DOI]
49. Javanroodi K, Mahdavinejad M, Nik VM. Impacts of urban morphology on reducing cooling load and increasing ventilation potential in hot-arid climate. Applied Energy. 2018; 231: 714-46. https://doi.org/10.1016/j.apenergy.2018.09.116 [Article] [DOI]
50. Goharian A, Mahdavinejad M, Bemanian M, Daneshjoo K. Designerly optimization of devices (as reflectors) to improve daylight and scrutiny of the light-well’s configuration. Building Simulation. 2021 Oct 9 (pp. 1-24). Tsinghua University Press. https://doi.org/10.1007/s12273-021-0839-y [Article] [DOI]
51. Hadianpour M, Mahdavinejad M, Bemanian M, Haghshenas M, Kordjamshidi M. Effects of windward and leeward wind directions on outdoor thermal and wind sensation in Tehran. Building and Environment. 2019 Mar 1;150:164-180. https://doi.org/10.1016/j.buildenv.2018.12.053 [Article] [DOI]
52. Pilechiha P, Mahdavinejad M, Rahimian FP, Carnemolla P, Seyedzadeh S. Multi-objective optimisation framework for designing office windows: quality of view, daylight and energy efficiency. Applied Energy. 2020 Mar 1; 261: 114356. https://doi.org/10.1016/j.apenergy.2019.114356
53. Hadianpour M, Mahdavinejad M, Bemanian M, Nasrollahi F. Seasonal differences of subjective thermal sensation and neutral temperature in an outdoor shaded space in Tehran, Iran. Sustainable Cities and Society, 2018 May 1; 39: 751-64. https://doi.org/10.1016/j.scs.2018.03.003 [Article] [DOI]
54. Javanroodi K, Nik VM, Mahdavinejad M. A novel design-based optimization framework for enhancing the energy efficiency of high-rise office buildings in urban areas. Sustainable Cities and Society. 2019; 49:101597. https://doi.org/10.1016/j.scs.2019.101597 [Article] [DOI]
55. Mahdavinejad M, Hosseini SA. Data mining and content analysis of the jury citations of the Pritzker Architecture prize (1977–2017). Journal of Architecture and Urbanism. 2019 Feb 1;43(1):71-90. https://doi.org/10.3846/jau.2019.5209 [Article] [DOI]
56. Rasoolzadeh M, Moshari M. Prioritizing for Healthy Urban Planning: Interaction of Modern Chemistry and Green Material-based Computation. Naqshejahan - Basic Studies and New Technologies of Architecture and Planning. 2021 May 10;11(1):94-105. [Persian] https://dorl.net/dor/20.1001.1.23224991.1400.11.1.7.0 [Article] [DOI]
57. Heidari F, Mahdavinejad M, Werner LC, Roohabadi M, Sarmadi H. Biocomputational Architecture Based on Particle Physics. Front. Energy Res. 2021 July 08;9:620127. https://doi.org/10.3389/fenrg.2021.620127 [Article] [DOI]
58. Saadatjoo P, Mahdavinejad M, Zhang G, Vali K. Influence of permeability ratio on wind-driven ventilation and cooling load of mid-rise buildings. Sustainable Cities and Society. 2021 Jul 1;70:102894. https://doi.org/10.1016/j.scs.2021.102894
59. Talaei M, Mahdavinejad M, Azari R, Haghighi HM, Atashdast A. Thermal and energy performance of a user-responsive microalgae bioreactive façade for climate adaptability. Sustainable Energy Technologies and Assessments. 2022 Aug 1;52:101894. https://doi.org/10.1016/j.seta.2021.101894 [Article] [DOI]
60. Fallahtafti R, Mahdavinejad M. Window geometry impact on a room's wind comfort. Engineering, Construction and Architectural Management. 2021 Mar 24;28(9):2381-2410. https://doi.org/10.1108/ECAM-01-2020-0075 [Article] [DOI]
61. Saadatjoo P, Mahdavinejad M, Zhang G. A study on terraced apartments and their natural ventilation performance in hot and humid regions. Building Simulation. 2018 Apr 1;11(2):359-372. Tsinghua University Press. https://doi.org/10.1007/s12273-017-0407-7 [Article] [DOI]
62. Shams G, Moshari M. Health and Post-Corona: Air Filtration through Building Skins as Biological Membranes. Naqshejahan - Basic studies and New Technologies of Architecture and Planning. 2022 Jan 10;11(4):44-59. [Persian] https://dorl.net/dor/20.1001.1.23224991.1400.11.4.3.2 [Article] [DOI]
63. Lotfi S, Sholeh M. Assessing the Old Buildings Reclaimability into the New Life Cycle Implementing Adaptive Reuse Potential (ARP) Model. Naqshejahan - Basic Studies and New Technologies of Architecture and Planning. 2017 Dec 10;7(3):15-34. [Persian] https://dorl.net/dor/20.1001.1.23224991.1396.7.3.1.0 [Article] [DOI]
64. Nuñez-Cacho P, Górecki J, Molina-Moreno V, Corpas-Iglesias FA. What gets measured, gets done: Development of a circular economy measurement scale for building industry. Sustainability. 2018 Jul;10(7):2340. https://doi.org/10.3390/su10072340 [Article] [DOI]
65. Leising E, Quist J, Bocken N. Circular Economy in the building sector: Three cases and a collaboration tool. Journal of Cleaner production. 2018 Mar 1;176:976-89. https://doi.org/10.1016/j.jclepro.2017.12.010
66. Foster G. Circular economy strategies for adaptive reuse of cultural heritage buildings to reduce environmental impacts. Resources. Conservation and Recycling. 2020 Jan 1;152:104507. https://doi.org/10.1016/j.resconrec.2019.104507 [Article] [DOI]
67. Rahimi R, Ansari M. Recreating Place in Iranian Monuments Case Study: Hafez Garden-Tomb (1452-1936 A.D.). Iranian Journal of Archaeological Studies, 2020; 10(1): 62-82. [Article]

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