Demonstrating the feasibility of designing sustainable buildings using evolutionary systems. The design approach proposed in this research will result in two key areas of national benefit. First, the research will enable Australian built environment design professions to become more competitive in both domestic and international markets. There is a growing demand for environmentally-friendly buildings and the proposed design approach will enable Australian firms to be at the cutting edge of sust ....Demonstrating the feasibility of designing sustainable buildings using evolutionary systems. The design approach proposed in this research will result in two key areas of national benefit. First, the research will enable Australian built environment design professions to become more competitive in both domestic and international markets. There is a growing demand for environmentally-friendly buildings and the proposed design approach will enable Australian firms to be at the cutting edge of sustainable design. Second, the research will enable the Australian built environment to become more sustainable. The proposed approach will enable buildings to be designed that perform well, that are cost effective and that minimise their environmental impact. Read moreRead less
Unified analysis of steel and composite frame structures subjected to static, thermal, earthquake and blast loading. Understanding the science of extreme loading on engineering structures is essential for their design, and increasingly with terrorism threats there is a need for assessment and strengthening of identified vulnerable critical infrastructure. Rational design paradigms have not yet matured for extreme load scenarios, and they are much-needed to protect life, limb and amenity. Austral ....Unified analysis of steel and composite frame structures subjected to static, thermal, earthquake and blast loading. Understanding the science of extreme loading on engineering structures is essential for their design, and increasingly with terrorism threats there is a need for assessment and strengthening of identified vulnerable critical infrastructure. Rational design paradigms have not yet matured for extreme load scenarios, and they are much-needed to protect life, limb and amenity. Australian research is at the forefront in steel and composite structures, and this project will strengthen Australia's positioning in the discipline by developing transparent design and assessment procedures from an efficient algorithm that delivers hands-on guidance for engineering practitioners.Read moreRead less
Technological Advances in Large-scale Roman Concrete Buildings during the 2nd and 1st centuries BC. How were the Romans able to build monuments which are still standing after 2,000 years? Skills to achieve this were clearly not developed overnight. A multidisciplinary team from the University of Melbourne has identified the 1st century BC as a time of tremendous technological change in Roman architecture. Was it that the Romans used a technologically advanced type of concerete? Was it that they ....Technological Advances in Large-scale Roman Concrete Buildings during the 2nd and 1st centuries BC. How were the Romans able to build monuments which are still standing after 2,000 years? Skills to achieve this were clearly not developed overnight. A multidisciplinary team from the University of Melbourne has identified the 1st century BC as a time of tremendous technological change in Roman architecture. Was it that the Romans used a technologically advanced type of concerete? Was it that they had perfected the structural design of vaults and domes? Was it simply their organisational ability or the enormous wealth which flowed from their vast Empire? A team of experienced archaeologists,architects and engineers seeks to answer these questions by survey and material analysis of a number of key Roman monuments.Read moreRead less