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TR

PASSIVE SOLAR CONTROL

Course
ARCH310 - PASSIVE SOLAR CONTROL
Department
Architecture - English - Undergraduate
Course Type
Course
Status
Required
Language
English
Credit
3
ECTS
5
T+P+L
2 + 2 + 0
Course Coordinator(s)
-
Prerequisite
-
Keywords

Course Description

Environmentally-conscious design techniques in the field of architecture. The concepts of sustainability, ecological design, green building design and passive solar building design. Reducing the requirement for active heating and cooling systems. Key passive solar building concepts. The solar path in passive design. Passive solar thermodynamic principles. Passive solar control in the vernacular architecture. Passive Houses in Europe. The course is conducted in two parts. The first, the lecture part, deals with the theories and practical applications of the issues. In the second part the students' work will be evaluated. Students of architecture are expected to set a group and select a building and a research subject. Each group is expected to apply passive solar system solutions on a selected project.

PASSIVE SOLAR CONTROL

Evaluation Tools (Active Term)

No evaluation items have been defined.

Course outcomes

  1. 01 1. Design a passive solar house by utilizing basic passive solar design concepts and relevant technical knowledge in the organization of buildings and sites. (5)
  2. 02 2. Develop knowledge gathered on vernacular and contemporary models so that innovative design solutions responsive to diverse cultures and contexts can be applied to buildings and sites. (5)
  3. 03 3. Ability to develop understanding on renewable energy systems and environmental issues as well as climate on macro and micro scale, thermal comfort and thermal performance of buildings. (5)
  4. 04 4. Capability to design energy conscious buildings where climatic parameters such as sun and wind are controlled to provide maximum comfort for buildings. (5)
  5. 05 5. Produce a group work in collaboration with other students as members of a design team, as well as gaining proficiency to work in an interdisciplinary medium. (5)

Course Syllabus

Week Topic
Week 1 Introduction
Week 2 Sustainable Design, Sustainable Design Issues, Climate Change, The Ozone Hole, Energy Sources
Week 3 Passive solar heating: Direct Gain, Trombe wall, Water wall
Week 4 Passive solar heating: Sunspace, Convective air loop
Week 5 Passive solar cooling: Window placement, cross ventilation, Effect of overhang, Stack effect
Week 6 Passive solar cooling: Evaporative cooling, Cool towers, Earth Cooling, Radiant cooling
Week 7 MID-TERM EXAM WEEK
Week 8 MID-TERM EXAM WEEK
Week 9 Solar Geometry and Shading Strategies
Week 10 Solar Geometry and Shading Strategies: Shading design for North, South, East & West windows)
Week 11 Passive solar lighting : Light shelves,Top lighting, Skylight
Week 12 Passive solar lighting: Clerestories, Monitors and Light scoops, Special daylighting techniques
Week 13 TERM project
Week 14 TERM project
Week 15 -

Reference Books & Course Materials

  1. 01 Francis D. K. Ching, Ian M. Shapiro, (2014) . Green Building Illustrated, John Wiley & Sons , USA.
  2. 02 Brown, G. Z., & DeKay, M. (2014). Sun, wind, and light: architectural design strategies.
  3. 03 Omidreza Saadatian, K. Sopian, C.H. Lim, Nilofar Asim, M.Y. Sulaiman, (2012).Trombe walls: A review of opportunities and challenges in research and development, Renewable and Sustainable Energy Reviews 16 (2012) 6340–6351
  4. 04 LECHNER, Norbert. (2015). Heating, Cooling, Lighting: Sustainable Design Methods for Architects, John Wiley & Sons.

Learning Outcomes

  1. L01 1. Design a passive solar house by utilizing basic passive solar design concepts and relevant technical knowledge in the organization of buildings and sites. (5)
  2. L02 2. Develop knowledge gathered on vernacular and contemporary models so that innovative design solutions responsive to diverse cultures and contexts can be applied to buildings and sites. (5)
  3. L03 3. Ability to develop understanding on renewable energy systems and environmental issues as well as climate on macro and micro scale, thermal comfort and thermal performance of buildings. (5)
  4. L04 4. Capability to design energy conscious buildings where climatic parameters such as sun and wind are controlled to provide maximum comfort for buildings. (5)
  5. L05 5. Produce a group work in collaboration with other students as members of a design team, as well as gaining proficiency to work in an interdisciplinary medium. (5)

Program Outcomes

  1. PO1 — History, Theory and Critical Inquiry PO1.1 Historiography and Theoretical Frameworks Demonstrate the ability to investigate, interpret, and critically evaluate architectural history and theoretical frameworks, recognizing their influence on architectural ideas, practices, and design approaches.
  2. PO1 — History, Theory and Critical Inquiry PO1.2 Socio-Cultural Context and Society Analyze the relationships between architecture, society, culture, and social change and evaluate their influence on spatial practices.
  3. PO1 — History, Theory and Critical Inquiry PO1.3 Critical Inquiry and Evidence-Based Evaluation Formulate critical inquiries and evaluate architectural ideas, processes, and outcomes using relevant evidence and analytical methods.
  4. PO1 — History, Theory and Critical Inquiry PO1.4 Mediterranean and Island Regionalism Analyze the architectural, environmental, cultural, and socio-spatial characteristics of Mediterranean and island contexts and integrate regional knowledge into architectural design.
  5. PO2 — Design Thinking, Research and Innovation PO2.1 Analytical Design Thinking and Ideation Apply analytical and creative design thinking processes to identify architectural problems and generate alternative design concepts.
  6. PO2 — Design Thinking, Research and Innovation PO2.2 Research-by-Design Methodologies Apply research-by-design methodologies through systematic inquiry, experimentation, and iterative design development.
  7. PO2 — Design Thinking, Research and Innovation PO2.3 Advanced Design Synthesis and Problem Solving Synthesize contextual, functional, technical, environmental, and user requirements to resolve complex architectural problems.
  8. PO2 — Design Thinking, Research and Innovation PO2.4 Innovation and Speculative Experimentation Develop innovative and speculative architectural propositions through experimentation with emerging concepts, technologies, materials, and processes.
  9. PO3 — Representation and Communication PO3.1 Analog and Graphic Representation Apply appropriate analog and graphic representation techniques to communicate architectural ideas, spatial relationships, and technical information.
  10. PO3 — Representation and Communication PO3.2 Digital Media and Computation Apply digital modeling, computational, and visualization tools to develop, analyze, and communicate architectural designs.
  11. PO3 — Representation and Communication PO3.3 Rhetorical Communication (Verbal, Written and Visual) Communicate architectural concepts, design arguments, research findings, and professional proposals clearly and effectively.
  12. PO3 — Representation and Communication PO3.4 AI-Assisted Visualization and Emerging Media Apply AI and emerging media technologies to enhance architectural visualization, representation, communication, and design exploration.
  13. PO4 — Context, Site and Human-Centred Design PO4.1 Comprehensive Site and Climatic Analysis Analyze physical, environmental, climatic, topographical, and infrastructural site conditions and translate findings into architectural design decisions.
  14. PO4 — Context, Site and Human-Centred Design PO4.2 Socio-Cultural Contextualization Evaluate socio-cultural, historical, and spatial characteristics of a context and incorporate contextual knowledge into design strategies.
  15. PO4 — Context, Site and Human-Centred Design PO4.3 Human-Centred Design and Behavioral Mapping Apply human-centred design and behavioral analysis to develop environments responsive to user needs and spatial experience.
  16. PO5 — Environmental Responsibility and Inclusive Design PO5.1 Climate Resilience and Environmental Stewardship Evaluate climatic risks and environmental conditions and develop strategies that enhance climate resilience and environmental performance.
  17. PO5 — Environmental Responsibility and Inclusive Design PO5.2 Inclusive Design and Universal Accessibility Apply inclusive and universal design principles to create accessible and equitable architectural environments.
  18. PO5 — Environmental Responsibility and Inclusive Design PO5.3 Sustainable Development Goals (SDG) Integration Integrate relevant Sustainable Development Goals into architectural design, evaluation, and decision-making processes.
  19. PO6 — Building Technology and Performance PO6.1 Tectonic Materials and Assembly Evaluate the properties, performance, and application of building materials and tectonic assemblies in relation to architectural design and construction.
  20. PO6 — Building Technology and Performance PO6.2 Structural Systems Logic Analyze and integrate structural principles, load paths, material behaviour, and structural systems within architectural design solutions.
  21. PO6 — Building Technology and Performance PO6.3 Advanced Envelope Systems and Building Physics Evaluate advanced building envelope systems and building physics principles to improve environmental and energy performance.
  22. PO6 — Building Technology and Performance PO6.4 AI-Supported and Simulation-Based Performance Analysis Apply simulation, computational analysis, and AI tools to evaluate and optimize building performance.
  23. PO7 — Health, Safety and Resilience PO7.1Life and Fire Safety Engineering Apply life-safety and fire-safety principles, codes, and strategies to architectural projects.
  24. PO7 — Health, Safety and Resilience PO7.2 Seismic and Disaster Resilience Evaluate seismic and disaster-related risks and integrate resilience strategies into architectural and structural design decisions.
  25. PO7 — Health, Safety and Resilience PO7.3 Environmental Health and Spatial Well-being Evaluate the relationships between indoor environmental quality, occupant health, comfort, and spatial well-being.
  26. PO8 — Programming, Regulation and Feasibility PO8.1 Data-Informed Architectural Programming Analyze user, functional, spatial, and contextual data to formulate architectural programs responding to project requirements.
  27. PO8 — Programming, Regulation and Feasibility PO8.2Regulatory Compliance and Zoning Codes Apply planning regulations, building codes, accessibility requirements, and professional standards to architectural projects.
  28. PO8 — Programming, Regulation and Feasibility PO8.3 Economic Feasibility and Lifecycle Costs Evaluate project feasibility, resource requirements, lifecycle costs, and economic implications in architectural decision-making.
  29. PO9 — Comprehensive Design and Systems Integration PO9.1Multi-System Integration and Synthesis Integrate architectural, structural, environmental, material, building service, envelope, and regulatory systems into comprehensive design solutions.
  30. PO9 — Comprehensive Design and Systems Integration PO9.2 Performance-Based Design Development Develop and evaluate architectural solutions based on environmental, technical, functional, and user-centred performance criteria.
  31. PO10 — Heritage, Conservation and Community PO10.1 Cultural and Vernacular Heritage Awareness Analyze cultural, historical, and vernacular architectural heritage and evaluate its significance within contemporary contexts.
  32. PO10 — Heritage, Conservation and Community PO10.2 Conservation Theory and Adaptive Reuse Apply conservation principles and adaptive reuse strategies to existing buildings and environments.
  33. PO10 — Heritage, Conservation and Community PO10.3 Community Impact and Participatory Design Integrate community needs, stakeholder perspectives, and participatory processes into architectural design and decision-making.
  34. PO11 — Professional Practice, Ethics and Innovation PO11.1 Legal and Contractual Frameworks Apply legal, contractual, regulatory, and professional requirements to architectural practice and project delivery.
  35. PO11 — Professional Practice, Ethics and Innovation PO11.2 Ethical Advocacy and Professional Codes Evaluate ethical responsibilities, professional codes, public interest, and stakeholder rights within architectural practice.
  36. PO11 — Professional Practice, Ethics and Innovation PO11.3 Innovation in Architectural Practice Explain the role of innovation, emerging technologies, and evolving professional practices in contemporary architectural practice.
  37. PO12 — Collaboration, Management and Lifelong Learning PO12.1 Interdisciplinary Collaboration and Leadership Demonstrate effective interdisciplinary collaboration, communication, coordination, and leadership in architectural project environments.
  38. PO12 — Collaboration, Management and Lifelong Learning PO12.2 Project Management and Administration Apply project management, organizational, scheduling, documentation, and administrative principles to architectural projects.
  39. PO12 — Collaboration, Management and Lifelong Learning PO12.3 Lifelong Learning and Digital Co-Working Environments Develop lifelong learning strategies and use digital collaborative environments to support continuous professional development and architectural practice.

Po-Lo Matrix

LO Average
L01 - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
L02 - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
L03 - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
L04 - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
L05 - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -