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himmelzimmer

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Location:

Melbourne, Australia

Type:

Educational

Client:

VSBA

Year:

2023

This priority project forms the initial stage of a four stage masterplan, which begins the process of re-organising the school and creating a supportive and exciting learning facility in line with the school’s philosophy. The scope of the project involves the partial demolition of Blocks B and C at the north of the site to allow for a new part single/ part double storey building with arts and technology rooms, a wellbeing centre, student toilets and staff work areas. Delivery of this new building and surrounding landscaping will create high quality learning facilities that will enable the School to build upon its strengths.

This is a progressive school that focuses on flexible, individual approaches to learning. The project is therefore designed to provide flexible modern multipurpose spaces within the new building to support the team teaching pedagogy of the school, and a desire to provide variation between different learning environments to enhance the student experience. The building sets two of the three main building levels which will connect all the future stages together in the masterplan and allow ease of access to all. The connectivity of the new building to that of the existing school facilities has been carefully considered to ensure continued operability between the different functions as the subsequent sequencing stages are undertaken.

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The facades are clad in a combination of white bricks and coloured yellow metal cladding with windows either expressed or recessed depending on the elevation to respond the varying sun angles. The design aesthetic has been developed to create an expressive facade articulation using a relatively simple material palette. Horizontal external shading has been incorporated in the North Eastern elevation and windows facing the Southern facades are generally larger to respond to lower daylight levels in the sky in those directions. Vertical Shading Fins are included to the southeast and southwest elevations to provide additional protection from solar heat gain internally.

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