Investigating the Impact of Lighting Techniques on Urban Landscape Quality; A Case Study of Historical Buildings in Tabriz

Document Type : Original Research Paper

Authors

1 Ph.D. Candidate in Architecture, Department of Architecture, Shabestar Branch, Islamic Azad University, Shabestar, Iran.

2 Associate Professor, Department of Architecture, Shabestar Branch, Islamic Azad University, Shabestar, Iran.

3 Assistant Professor, Department of Architecture, Sardroud Center, Tabriz Branch, Islamic Azad University, Tabriz, Iran.

4 Assistant Professor, Department of Architecture, Bostanabad Branch, Islamic Azad University, Bostanabad, Iran.

Abstract
Extended Abstract
Background and Objectives: The first condition for perceiving vision and space is light. Therefore, in the art of architecture, light is one of the essential components presented alongside other elements such as structure, order, materials, and color. Moreover, light is a fundamental element of architecture and environmental design, and urban lighting has significant potential to enhance the efficiency and well-being of people. In addition, it can contribute to the redesign of urban spaces, environmental architecture, and the urban landscape while providing beauty and security at night. Considering the importance of lighting in urban spaces and buildings, the purpose of this research is to investigate the effect of lighting techniques used for historical buildings in Tabriz on the quality of the urban landscape. Historical monuments are of great importance in cities because of their unique character and cultural identity. Therefore, appropriate lighting methods and techniques, as a complement to historical spaces and monuments, can be influential factors in strengthening identity and the sense of place. Furthermore, improving the quality of urban spaces through lighting increases the presence of citizens and, consequently, enhances the vitality and dynamism of the space. Accordingly, the present study, while examining lighting techniques applied to historical monuments in Tabriz, seeks to answer the following question: What effect do lighting techniques for historical monuments in Tabriz have on the quality of the urban landscape?

Methods: The research method adopted in the present study is a mixed-method (qualitative–quantitative) approach with an analytical–interpretive orientation. In the first stage, a qualitative content analysis was conducted to examine the lighting of historical monuments in Tabriz and compare it with successful international examples through documentary studies and field observations. Content analysis is a qualitative research method that focuses on identifying, analyzing, and interpreting patterns of meaning within qualitative data. In this method, the concept of content or theme serves as the central analytical element. Moreover, content represents the most meaningful unit of analysis and refers to the specific meaning derived from a phenomenon, word, sentence, or paragraph. The historical monuments examined in Tabriz include the Blue Mosque, Saheb-al-Amr Mosque, Arg-e Alishah, and Saat Square. These sites were selected because they represent different categories of historical buildings (religious, governmental, and service-related), have comparable successful international counterparts, and already possess completed lighting designs. To evaluate the effectiveness of historical monument lighting patterns on urban landscape quality—including enhancing beauty and visual appeal, organizing the visual environment, strengthening urban identity and image, and improving readability and landmark recognition—a quantitative approach employing the logarithmic regression coefficient was used. Data were collected from managers, officials, and architectural experts because of their professional knowledge in lighting and urban landscape design. Since the size of the statistical population was unknown, the Cohen method was applied at a 95% confidence level to determine the sample size. Accordingly, 90 participants were selected using the snowball sampling technique.

Findings: The findings indicate that the lighting of historical buildings in Tabriz, implemented in recent years using various techniques such as uplighting, surface lighting, and direct lighting, has enhanced environmental quality and the visual perception of these buildings. Furthermore, the lighting has contributed to increasing beauty and visual appeal, improving legibility and landmark recognition, organizing the visual environment, and creating a positive urban identity and image. Therefore, the use of diverse and integrated lighting techniques not only highlights the architectural details and distinctive features of historical buildings but also improves the overall quality of the urban landscape.

Conclusion: Urban landscape lighting is a comprehensive system that integrates the illumination of streets, buildings, urban furniture, traffic signals, and digital display screens. In addition to supporting urban activities and functions during nighttime, it plays a significant role in enhancing security, comfort, and the visual attractiveness of urban environments. Among the key responsibilities of urban designers and architects is the effective lighting of historical monuments, which represent the cultural identity, heritage, and symbolic landmarks of a city. The results of this study indicate that the lighting of historical monuments in Tabriz is in a relatively favorable condition. It has contributed not only to improving nightlife, security, and visual quality but also to enhancing beauty and visual appeal, increasing readability and landmark recognition, organizing the visual environment, and strengthening a positive urban identity and image. However, the findings also reveal that some buildings are illuminated using uniform lighting principles regardless of their architectural characteristics, and that users’ preferences have not been sufficiently considered in the lighting design process.
Accordingly, the following recommendations are proposed to achieve more effective lighting patterns for the historical buildings of Tabriz:
- Evaluation: Assess the existing lighting conditions by analyzing visual characteristics such as brightness, contrast, and shadow.
- Research: Review the historical background of each site and establish a timeline of architectural changes, social contexts, and previous lighting interventions.
- Classification: Classify monuments according to their architectural and functional characteristics and apply appropriate combinations of lighting techniques (e.g., uplighting, downlighting, surface lighting, and spotlighting).
- Technical considerations: Select suitable lighting sources with emphasis on aesthetic quality, energy efficiency, and long-term sustainability.

Highlights

- Light, as one of the non-physical elements of the urban landscape, has a significant impact on the quality of urban spaces, as well as on people’s perception, experience, and mental image of the environment. 
- The primary goal of lighting design for historical buildings is to enhance and reveal their architectural character through the appropriate use of light direction, intensity, and color.

Keywords

Subjects

این مقاله برگرفته از رساله دکتری نویسنده نخست با عنوان «بررسی تأثیر الگوهای نورپردازی بر کیفیت‌بخشی معمارانه‌ی منظر شهری در بناهای تاریخی تبریز» می‌باشد که به راهنمایی نویسنده دوم و سوم و مشاوره نویسنده چهارم در دانشگاه آزاد اسلامی واحد شبستر انجام گرفته است.

This article is derived from the first author`s doctoral thesis entitled “Investigating the effect of lighting patterns on the architectural quality of the urban landscape in the historical buildings of Tabriz”, supervised by the second and third authors and advised by the fourth, at Islamic Azad University, Shabestar Branch.

  1. Akhavan Saraf, A. M., Khosravi Danesh, O., Mazaheri, R., & Zamani, B. (2014). The urban nightscape: An approach to the strategic lighting plan of Mashhad. Armanshahr Architecture & Urban Development, 7(Special issue on lighting), 55–66. [In Persian]
  2. Alavi Tabari, H. (2016). Objectives and influential factors in urban landscape lighting. Journal of Applied Arts, 4(8), 59–71. [In Persian]
  3. Almodovar-Melendo, J.-M., Cabeza-Lainez, J.-M., & Rodriguez-Cunill, I. (2018). Lighting features in historical buildings: Scientific analysis of the Church of Saint Louis of the Frenchmen in Sevilla. Sustainability, 10, Article 3352.
  4. Ardavani, O., Zerefos, S., & Doulos, L. T. (2020). Redesigning exterior lighting as part of the urban landscape: The role of transgenic bioluminescent plants in Mediterranean urban and suburban lighting environments. Journal of Cleaner Production, 242, 1–17.
  5. Ayatollahi Tabatabaei, Z. S., & Safavi, S. A. (2020). The impact of new technologies on the quality of lighting in valuable historical and cultural areas: The case of Si-e Tir Street, Tehran. Naqsh-e Jahan: Basic Studies and New Technologies of Architecture and Planning, 9(4), 1–12. [In Persian]
  6. Belany, P., Hrabovsky, P., & Kolkova, Z. (2021). Combination of lighting retrofit and life cycle cost analysis for energy efficiency improvement in buildings. Energy Reports, 7, 2470–2483.
  7. Boyce, P. R. (2014). Human factors in lighting (3rd ed.). CRC Press.
  8. Boyce, P. R., Veitch, J. A., Newsham, G. R., Jones, C. C., Heerwagen, J., Myer, M., & Hunter, C. M. (2006). Lighting quality and office work: Two field simulation experiments. Lighting Research & Technology, 38(3), 191–223.
  9. Bulut, Z., & Yilmaz, H. (2008). Determination of landscape beauties through visual quality assessment method: A case study of Kemaliye, Erzincan, Turkey. Environmental Monitoring and Assessment, 141, 121–129.
  10. Bustan-Gaona, D., Ayala-Chauvin, M., Buele, J., Jara-Garzon, P., & Riba-Sanmarti, G. (2023). Natural lighting performance of vernacular architecture: A case study of the old town of Pasa, Ecuador. Energy Conversion and Management: X, 20, 1–20.
  11. Casamayor, J. L., Su, D., & Ren, Z. (2018). Comparative life cycle assessment of LED lighting products. Lighting Research & Technology, 50, 801–826.
  12. Feng, Y. J., & Liu, Y. (2015). Fractal dimension as an indicator for quantifying the effects of changing spatial scales on landscape metrics. Ecological Indicators, 53, 18–27.
  13. Gardner, C., & Molony, R. (2013). An evolution in the use of lighting: Retelling architecture (A. Stepanian & F. Helforosh, Trans.). Daneshparvar Publications & Nourpardazan Ideh Company. [In Persian]
  14. Górczewska, M. (2011). Some aspects of architectural lighting of historical buildings. WIT Transactions on the Built Environment, 121, 107–116.
  15. Houser, K., Boyce, P., Zeitzer, J., & Herf, M. (2021). Human-centric lighting: Myth, magic, or metaphor? Lighting Research & Technology, 53(2), 97–118.
  16. Inkoom, J. N., Frank, S., Greve, K., Walz, U., & Fürst, C. (2018). Suitability of different landscape metrics for the assessment of patchy landscapes in West Africa. Ecological Indicators, 85, 117–127.
  17. Jagerbrand, A. K. (2015). A new framework of sustainable indicators for outdoor LED and solid-state lighting. Sustainability, 7, 1028–1063.
  18. Jakubiec, J. A., Quek, G., & Srisamranrungruang, T. (2020). Long-term visual quality evaluations correlate with climate-based daylighting metrics in tropical offices: A field study. Lighting Research & Technology, 53(1), 1–13.
  19. Kamyab, J. (2012). Lighting of valuable buildings. Honar-e Memari-ye Qarn Publications. [In Persian]
  20. Licht. (2002). Urban image lighting (Booklet No. 16, Information on Lighting Applications). Fördergemeinschaft Gutes Licht.
  21. Liu, Y. L., Wei, X. J., Li, P. L., & Li, Q. L. (2016). Sensitivity of the correlation structure of class- and landscape-level metrics in three diverse regions. Ecological Indicators, 64, 9–19.
  22. Lustig, A., Stouffer, D. B., Roigé, M., & Worner, S. P. (2015). Towards more predictable and consistent landscape metrics across spatial scales. Ecological Indicators, 57, 11–21.
  23. Mahdavinejad, M. J., & Nikoudel, F. (2015). The interaction between visual beauty and new lighting technologies in the nocturnal architecture of buildings. Armanshahr Architecture & Urban Development, 8(15), 131–143. [In Persian]
  24. Mendez, A., Prieto, B., Aguirre i Font, J. M., & Sanmartin, P. (2024). Better, not more, lighting: Policies in urban areas toward environmentally sound illumination of historical stone buildings that also halts biological colonization. Science of the Total Environment, 906, 1–10.
  25. Mostafavi, A., Xu, T. B., & Kalantari, S. (2024). Effects of illuminance and correlated color temperature on emotional responses and lighting adjustment behaviors. Journal of Building Engineering, 86, 1–19.
  26. Nasri, K., Habib, F., Ansari, M., & Laghayi, H. A. (2011). Lighting techniques in landscape design. Human & Environment, 9(27), 73–82. [In Persian]
  27. Poirier, G., Demers, C. M., & Potvin, A. (2017). Experiencing wooden ambiences with Nordic light: Scale-model comparative studies under real skies. BioResources, 12(1), 1924–1942.
  28. Salvadori, G., Maccheroni, D., & Tambellini, G. (2020). Sustainable lighting for cultural heritage: A pilot study for evaluating the display of exhibits inside historical buildings. IOP Conference Series: Materials Science and Engineering, 949, Article 012019.
  29. Santen, C. van. (2006). Light zone city: Light planning in the urban context. Birkhäuser.
  30. Schwarz, N. (2010). Urban morphology revisited: Selecting indices for characterizing European cities. Landscape and Urban Planning, 96(1), 29–47.
  31. Seitinger, S. (2014). Vienna. In S. Isenstadt et al. (Eds.), Cities of light: Two centuries of urban illumination (pp. 130–136). Routledge.
  32. Sheikh Ahmadi, S. A. (2014). Principles and design of interior and exterior lighting. Modir Fallah Publications. [In Persian]
  33. Tehran Municipality Beautification Organization. (2008). Tehran lighting master plan. [In Persian]
  34. Veitch, J. A. (2001). Psychological processes influencing lighting quality. Journal of the Illuminating Engineering Society, 30(1), 124–140.
  35. Waterman, T. (2017). The fundamentals of landscape architecture (N. Yashmi et al., Trans.). Tehran Municipality Beautification Organization. [In Persian]
  36. Yusoff, S. M., Yusof, F., & Arshad, A. F. (2016). Effectiveness of the form and content of the local plan as a tool for quality of life in urban areas. Procedia—Social and Behavioral Sciences, 222, 897–906.
  37. Zak, P., & Vodrackova, S. (2016, September 13–16). Conception of public lighting. In Proceedings of the IEEE Lighting Conference of the Visegrad Countries. Karpacz, Poland.
  38. Zakariaa, S. A., & Bahauddin, A. (2015). Light art for historical buildings: A case study of heritage buildings in George Town, Penang Island. Procedia—Social and Behavioral Sciences, 184, 345–350.
  39. Zalesińska, M., & Wandachowicz, K. (2021). On the quality of street lighting at pedestrian crossings. Energies, 14(21), 1–23.

Articles in Press, Corrected Proof
Available Online from 22 September 2025

  • Receive Date 20 April 2024
  • Revise Date 18 July 2024
  • Accept Date 10 September 2024