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FROM WORKSHOP TO SITE

SEPTEMBER 2020

From Workshop to Site

At Millimetre’s workshop in Brighton, a tremendous steel skeleton has been rapidly emerging. It will form the delicate superstructure of a garden pavilion-cum-guesthouse destined for the Isle of Wight. In the main hangar, a healthy collection of gently oxidizing off-the-shelf steel sections and staggeringly sharp, bespoke milled elements is set back from a row of socially-distanced workspaces. Millimetre’s metal workers have been working around the clock (and in the excessive summer heat) to cut, weld and grind the heap in front of them into the many precise modular components that will form the pavilion’s columns, floor and roof. An assembly line has been formed to increase the efficiency of fabrication, with a station each for repetitive rotary welding tasks, rotary grinding, welding using custom jigs and more complicated non-linear welds. As the steel passes through the workshop, glistening segments come to form elaborate sculptures. Adjacent to the metalworking bays is a six-axis robot arm programmed to cut high density foam into jigs for the most intricate welding alignments. This will be essential to the success of the central roof truss node, where nine tubular sections converge. More on this will follow at a later date.

The pavilion will be lifted off the ground by cantilevering trusses held from the main columns, which are formed of four tubular sections tied together by intermittent thin plates along their height. The lower portions of these columns, which sit beneath the floor build-up, are amicably referred to as the daleks. These stub columns are the first pieces to be finalized, quickly assembled in tandem to confirm tolerances, and sent away to be painted for corrosion protection before arriving to site.

On the northeast coast of the Isle of Wight, the site falls to overlook a protected marshland with tidal flows fed by the Solent. A shallow depression with raking banks at the bottom of the hill will conceal the feet of the pavilion superstructure; the baseplates of the stub columns now erected atop the long strip foundations and adjoined to form the triangulated support for the floor and deck above. Located to capture rainwater dropping from the overhanging roof eaves, the perimeter gravel drain will also mark the boundary between building and landscape, with tall, wild grasses merging with the wetland beyond..

As the pavilion envelope will be formed largely of full-width glass spans closely abutting the columns, erecting the steel frame precisely is critical. Despite a remarkable installation tolerance of +/- 3mm diagonally across each 5 x 5m bay, the stub columns must be shimmed to ensure exact alignment and verticality. Between them, the galvanised (and thus silvery) internal floor beams are distinguishable from the external floor beams, which are coated to resist corrosion and painted to achieve a warm metallic finish. With the cantilevering terrace beams installed additionally, a datum is formed approximately 180mm below the intended finished floor level from which the remainder of the pavilion will rise..

Back in Brighton, the columns which will stand on the shoulders of the stubs now installed on site are laid out one by one. Their height and slenderness astound – a true feat for the structural engineers, Smith & Wallwork. It is through, not around these columns that the thermal envelope will run, with tall and narrow glazing centred on each column between the four vertical tubes. The next test-build will involve hoisting up these columns, narrowly missing the suspended lights of the workshop, to bolt on the roof trusses via the halving joints rigidly reaching out to receive them. That dramatic and exciting update will have to follow.

THE FURTHEST FROM THE FLOOR

NOVEMBER 2014

The Furthest From The Floor

Imagine a room without a roof, where the sky can be seen and the seasons read. This room holds the capacity to frame dazzling colour and scaleless formation, silent motion and subtle evolution.

What if a roof challenged these things, and set out to generate a drama quite of its own?

Often we witness the world at eye-level alone. Much of our urban landscape positively encourages us to do so. Yet it is sad if, on the occasion we raise our eyes to the ceiling, we are not enamoured with what we find. It is often height that offers the best opportunity for expression. With height comes volume and the potential to present the greatest manifestation of depth and structure.

Our practice explores the roof and the complexity of a soffit as an ongoing theme. The notion of the exposed rafters in a barn has influenced the design of the soffit in our gallery at Auckland Castle. We are developing an array of rafters that create density yet delicacy in their mass when tightly multiplied. Though the roof is low, its lowest point occurs just higher than your fingertips, creating a definitive datum between the world of rafters and the world of exhibitions. This effect is further enhanced by the muted nature of the walls to increase the feeling of overhead awareness.

As contrast to this, your gaze is directed by the vertical piers that surround you as you move through Bishop Edward King Chapel in Oxford. Slowly they rise, higher and higher, until they meet the ceiling, at which point orientation is adjusted and the piers fuse with the weave of rafters. It is pleasurable to witness something simple become something complicated. Height offers the opportunity for elements in the space to take you on a journey. They “pick you up” at eye-level and carry you up to the roof, where often the brightest or darkest environments exist.

The requirement to defend from rain leaves the roof little choice but to protect, as efficiently and simply as possible, granting the interior more freedom for expression. And why not, when you consider where most building users will stand? However, as our towns and cities become denser, the roof, as seen from its surroundings, becomes an increasingly important issue to address.

The two examples I have given construct varying degrees of interest, leading me to suggest that it is possible for a roof to respond to that drama in the sky with a drama of its very own.

 

Katherine received a BSc Degree from the Bartlett in 2008.  In 2007, she was awarded The Henry Herbert Bartlett Travel Scholarship and the UCL Expeditions & Travel Grant to conduct a construction project in Kampala.  She joined Niall McLaughlin Architects in 2012 and has worked on London Academy of Music and Dramatic Art, St Cross College in Oxford, the T1 Argent Building in London and Jesus College in Cambridge.