RL House / Wiyoga Nurdiansyah

The Wood. The unique wooden A-frame is tucked away in the jungle of Lombok, Indonesia. This project started shortly after Lombok was hit by an earthquake in 2018, leaving many buildings on the island in ruins. While many modern concrete structures in the area crumbled after the earthquake, most simple wood structural buildings would stand still. Wood is known for its unique characteristic that can flex in an earthquake, making it a great choice of material for a house that must withstand Indonesia’s volcanic conditions. In response to this geographical condition, the triangular frame or A-frame structural system is used for its stiff structure.

Perkins & Will Begins Construction on Mass Timber Gateway to University of British Columbia Campus

Perkins & Will has just begun construction on the Gateway Project for the University of British Columbia. The project will serve as the primary entrance point to the campus, as well as the new hub for the Nursing, Kinesiology, Language Science, and the university's health clinics. This project is inspired by the surrounding landscape and is informed by the Musqueam people, who have been occupying these territories for generations.

The Versatility of Wooden Structures in Contemporary Brazilian Projects

From ancestral constructions to the "concrete of the future", terms abound to describe timber. Present in the history and horizon of world architecture, the material demonstrates a sustainable possibility and is associated with the coziness and warmth that it provides in the spatial atmosphere. In Brazil, it is no different. Several contemporary works explore the qualities and benefits of its use, including structural bias.

Is It Possible To Create Lightweight Bricks By Recycling Cigarette Butts?

Students at the School of Engineering, RMIT University recently published a study experimenting with a new form of waste management and recycling. As they note in their research, cigarette butts are the most commonly discarded single waste item in the world, with an estimated 5.7 trillion having been consumed around the globe in 2016. However, the materials in cigarette butts—particularly their cellulose acetate filters—can be extremely harmful to the environment due to poor biodegradability. The RMIT study builds on a previous research study by Mohajerani et. al (2016) that experimented with adding discarded cigarette butts to clay bricks for architectural use. In their research, the RMIT students found that such a measure would reduce the energy consumption of the brick production process and lower the thermal conductivity of the bricks, but that other issues including bacterial contamination would have to be addressed prior to successful implementation. Below, we explore this research in more detail, investigating its relevance to the architecture industry and imagining possible futures of application.

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