SRM UNIVERSITY FACULTY OF ENGINEERING AND TECHNOLOGY SCHOOL OF ARCHITECTURE AND INTERIOR DESIGN
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1 SRM UNIVERSITY FACULTY OF ENGINEERING AND TECHNOLOGY SCHOOL OF ARCHITECTURE AND INTERIOR DESIGN DEPARTMENT OF ARCHITECTURE & INTERIOR DESIGN: Course Code : ARE0201 Course Title : CLIMATOLOGY Branch : B.Tech Architectural Engineering Year & Semester : III Semester Curriculum : Course duration : Odd Semester (July October 2011) Location : Department of Architecture Faculty Details: Name of the Staff Year Office Office Hours Mail ID Deepthi Peshkar II year Arch. Dept deepthipeshkar@gmail.com TEXTBOOKS: 1. O.H. Koenigsberger, Manual of Tropical housing and building Climatic Design, Orient Longman, Chennai, REFERENCE BOOKS: 1. M.Evans Housing, Climate & Comfort, Architectural Press, London,1980.
2 2. E.Schild & M.Finbow Environmental Physics in construction & its application in Architectural Design, granadar, london, B.Givoni - Man, Climate & Architecture, Applied Science, Essex Donald Watson & Kenneth labs Climatic Design Mcgraw hill NewYork A.Konya- Design Primer for Hot Climates, Architectural Press, London, Prerequisite: Students have to carry sketch book and required media with them always. Lecture Hours shall be held in Smart class room of the department (Projection equipment shall be provided) Tentative test dates Cycle Test-I Cycle Test-II Model Examination : As intimated by the Controller Of Examinations : Assessment will be through assignments during the semester : As intimated by the Controller Of Examinations Test Portions Cycle Test I Cycle Test-II Model Examination : Unit I & Unit II ( PARTLY) : Assignments : All five Units Assessment details (TOTAL 50 M) : Cycle Test I - 10 marks Assignment - 10 marks Seminar - 10 marks
3 Model Exam - 10 marks Design exercise 10 marks Syllabus as per Curriculum: ARE0201 CLIMATOLOGY L T P C PURPOSE This subject area also known by the term building science in earlier times, enlightens the students to the processes by which building and entire habitats can be designed to respond to nature, with climate as the basic parameter of design. INSTRUCTIONAL OBJECTIVES In order to equip the students with the scientific background required to design climate responsive buildings, a clear understanding of the various climate elements. - radiation, air temperature, humidity and wind speed as tools of design is intended. It also includes the articulation of the building into its various components in response to the above mentioned climatic elements. UNIT I CLIMATE &THERMAL COMFORT 7 Global climatic factors, elements of climate, classification & characteristics of tropical climates, site climate. Thermal balance of the human body, Thermal comfort indices Effective temperature, CET, comfort zone & calculation of overheated &under heated periods. UNIT II PRINCIPLES OF THERMAL DESIGN IN BUILDINGS 6 Thermal quantities heat flow rate, conductivity (k value ) & resistivity, conductance through a multi-layered body, surface conductance, transmittance calculation of U- value convection, radiation, concept of sol-air temperature & solar gain factor exercises in heat loss & heat gain in building assuming steady state assumption (thermal balance equation ).Periodic heat flow in building time lag & decrement factor & its application in selection of appropriate
4 materials for walls & roof. Effect of Insulation & cavity on time lag & its practical use.exercises on achieving the required indoor temperature by varying the components of composite materials according to the U values. UNIT - III VENTILATION & DAY LIGHTING 5 Functions of ventilation stack effect due to the thermal forces, wind velocity wind rose diagram, wind pressure. Air movement through building &around buildings factors affecting indoor air flow, wind shadow etc. The nature of light, its transmission, reflection colored light, the munsell system photometric quantities illumination, day lighting prediction the daylight design graph. UNIT IV SOLAR GEOMETRY &DESIGN OF SUNSHADING DEVICES 6 Apparent movement of the sun, sun path diagrams (solar chart) solar angles, Shadow angles, solar shading masks. Etc Exercises on plotting isopleths, transfer of isopleths to solar chart, fitting a shading mask over the overheated period & design of sun shading devices for different orientations. UNIT - V DESIGN FOR CLIMATIC TYPES 6 Building design & lay out planning consideration for warm humid, hot dry, composite & tropical upland climates, climatic data sets analysis climate graph the Mahoney tables & its recommended specification. Exercises on design of small buildings for various climates. Detailed Session plan: TOTAL 30 Lecture No Topic UNIT I: CLIMATE &THERMAL COMFORT 7 Lecture Hours
5 1,2 Global climatic factors, elements of climate 3-4 Classification & characteristics of tropical climates, site climate. 5-7 Thermal balance of the human body. Thermal comfort indices Effective temperature, CET, comfort zone & calculation of over heated &under heated periods UNIT II: PRINCIPLES OF THERMAL DESIGN IN BUILDINGS 6 Lecture Hours 8-10 Thermal quantities heat flow rate, conductivity (k value ) & resistivity, conductance through a multi-layered body, surface conductance, transmittance calculation of U- value convection, radiation, concept of sol-air temperature & solar gain factor exercises in heat loss & heat gain in building assuming steady state assumption (thermal balance equation ). 11 Periodic heat flow in building time lag & decrement factor & its application in selection of appropriate materials for walls & roof Effect of Insulation & cavity on time lag & its practical use.exercises on achieving the required indoor temperature by varying the components of composite materials according to the U values. UNIT III: VENTILATION & DAY LIGHTING 5 Lecture Hours Functions of ventilation stack effect due to the thermal forces, wind velocity wind rose diagram, wind pressure. 16 Air movement through building &around buildings factors affecting indoor air flow, wind shadow etc.
6 17-18 The nature of light, its transmission, reflection colored light, the Munsell system photometric quantities illumination, day lighting prediction the daylight design graph. UNIT IV: SOLAR GEOMETRY &DESIGN OF SUNSHADING DEVICES 6 Lecture Hours Apparent movement of the sun, sun path diagrams (solar chart) Solar angles, Shadow angles, solar shading masks. Etc Exercises on plotting isopleths transfer of isopleths to solar chart, fitting a shading mask over the overheated period & design of sun shading devices for different orientations. UNIT V: DESIGN FOR CLIMATIC TYPES 6 Lecture Hours Building design & lay out planning consideration for warm humid, hot dry, composite & tropical upland climates, climatic data sets analysis climate graph the Mahoney tables & its recommended specification Exercises on design of small buildings for various climates. Class in charge - Deepthi Peshkar Head of the Dept M.Thirumeni
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