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Aran Kamil-Thomas - BA (Hons) Architecture Portfolio 2022

Page 1

Aran Kamil-Thomas 2022 Portfolio

BA(Hons) Architecture Liverpool School of Art and Design


Contents About me

1

BA Year 3 Semester 2: Comprehensive Design Project

2

BA Year 3 Semester 1: Weather of Not

7

BA Year 2 Semester 2: Experimental Project

12

BA Year 2 Semester 1: Urban Design Project

16

BA Year 1 Semester 2: A Place for Crafting

21


About Me. I am a forward thinking, hardworking and passionate architecture student at Liverpool John Moores University’s School of Art and Design. My passion for art and design started at a young age, from my mother teaching me how to draw, inheriting her studies and passion for the arts as a professional in fine art. Throughout my teenage years I studied and took passion in various subjects in secondary school, especially Art, Technology & Design and Business Studies. These core subjects combined with many trips overseas in the various summer holidays to see new and wonderful cultures birthed my love and desire to study architecture. Thus, I took to Liverpool John Moores University to pursue my passion as a creative outlet. Throughout his three years of studies I learned and developed valuable skills such as technical drawing, model making, and various C.A.D packages to further the quality and output of my projects. Which will prove to be a set of invaluable skills once leaving university in search of work. The final project of his undergraduate studies explores the history of north-south divide of England and how that has affected the political scene of today. A potential design for The Northern Powerhouse Assembly is proposed to reconnect the north and south politically. Unity.


BOUNDLESS

CONNECTIN

COMMUNICATION

UNITY


First Floor Plan

Ground Floor Plan

Eaves to Glazing Connection Detail

Floor Plate to Glazing Connection Detail

1. TAR DYED OAK CLADDING FACSIA (RELATING TO THE COAL MINE HERIATGE OF THE NORTH OF ENGLAND) 2. VAPOUR BARRIER (BITCHUMEN) 3. COLD FORMED METAL FRAMING 4. STEEL ANGLE 5. STIFFNER PLATE 6. SHEEPS WOOL INSULATION 7. TAR DYED OAK CLADDING SOFFIT (RELATING TO THE COAL MINING HERITAGE OF THE NORTH). 8. STEEL I - BEAM 9. STEEL COLUMN 10. GLAZED FACADE (RELATING TO THE DOCK WORKS HERITAGE OF LIVERPOOL). 11. INTERIOR LIGHTING FIXTURE 12. CONCRETE FLOOR PLATE 13. UPSTAND 14. INSULATION COVERING BEAM TO PROTECT FROM THERMAL BRIDGE. 15. TAR DYED OAK CEILING PANNEL CONTINUING EXTERIOR SOFFIT AND FASCIA TO INTERIOR

16. GLAZED FACADE 17. SCREED TOPPING 100MM 18. CONCRETE INSITU ON METAL DECK 19. TAR DYED OAK CLADDING FACSIA (RELATING TO THE COAL MINE HERIATGE OF THE NORTH) 20. TAR DYED OAK CLADDING SOFFIT (RELATING TO THE COAL MINE HERIATGE OF THE NORTH) 21. STIFFINER PLATE 22. STEEL ANGLE 23. STEEL I BEAM 24. SHEEPS WOOL INSULATION 25. SHEATHING

Axonometric of Structural Formation


STEPPING STONES ARAN KAMIL-THOMAS 6121ARC BA Year 3 Semester 1: Weather of Not


The Building will use a Water Reclamation System to retain water from rainfall which lands on the srea of the roof of the building. This water will be harvested via gutter drainage leading to a filtration system to be cleaned and filter out any unwated content. This clean water will then proceed through the system into the tank, which size has been calculated to minimise the risk of any overflow. The water stored in the tank will be used as Grey water, meaning it will be used for purposes such as toilet flushing and not for ingestion. Rainfall Harvesting Forumla Roof area x annual rainfall x run off coefficient x filter coefficient 1,026m2 * 1,407mm * 0.8 * 0.9 = 1,039,379 Litres per annum 1,039,379 Litres * 0.05 = 51,968 Litre Tank Size Miinimum This formula helps determine what size tank to pair with the system and for it to be the neccessary size to collect the amount of rainfall expected.

The heating strategy for this building will be to use a Ground Source Heat Pump, paired with an underfloor heating system, The use of coiled heat recovery pipes allows for the neccessary length of the pipes to be installed in a much smalled area yet yeilding the same results. The use of a underfloor heating system will allow the whole building to be heated and benefits from this as it is a single floor building. The building ventilates naturally with a vary of opening windows in the main spaces to allow fresh air to pass trhough the building from river. The natural ventilation will also help carry with warm air around various areas of the building creating a constant and stable temperature within the building. Exhaused air will be allowed to escape via the upstand glazed windows in the main pasage of the building. These windows will be controlled automatically when the building reaches a certain hight temperature or on a timed basis. The system will be powered a summer and winter energy strategy. In the summer the use of Photovoltaic glass will be used on the east facade of the building. Exposed to the most sunlight it will export the solar power into various areas of the building the heat pump beimg one of them. In the winter where the succsess of solar power is less prominent, the use of a Hydro Generator located in the river will provide power throughout the colder months where the river Leven’s levels are at its highest and most rapid. The use of LED lights can also bee seen in this section


RIVER MERSEY RESEARCH LABORITORY ARAN KAMIL-THOMAS 5124AR BA Year 2 Semester 2: Experimental Project


INDIVIDUAL DETAILED SPACIAL DESIGN ARAN KAMIL-THOMAS 5122AR BA Year 2 Semester 1: Urban Design Project


A PLACE FOR CRAFTING: COBBLING SHOP ARAN KAMIL-THOMAS 4123AR BA Year 1 Semester 2: A Place for Crafting


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