An article published in the August/September 2015 issue of BRANZ Build magazine. It summarises SCIRT's approach to innovation management and suggests some areas for improvement.
This thesis describes the management process of innovation through construction infrastructure projects. This research focuses on the innovation management process at the project level from four views. These are categorised into the separate yet related areas of: “innovation definition”, “Project time”, “project team motivation” and “Project temporary organisation”. A practical knowledge is developed for each of these research areas that enables project practitioners to make the best decision for the right type of innovation at the right phase of projects, through a capable project organisation. The research developed a holistic view on both innovation and the construction infrastructure project as two complex phenomena. An infrastructure project is a long-term capital investment, highly risky and an uncertain. Infrastructure projects can play a key role in innovation and performance improvement throughout the construction industry. The delivery of an infrastructure project is affected in most cases by critical issues of budget constraint, programme delays and safety Where the business climate is characterized by uncertainty, risk and a high level of technological change, construction infrastructure projects are unable to cope with the requirement to develop innovation. Innovation in infrastructure projects, as one of the key performance indicators (KPI) has been identified as a critical capability for performance improvement through the industry. However, in spite of the importance of infrastructure projects in improving innovation, there are a few research efforts that have developed a comprehensive view on the project context and its drivers and inhibitors for innovation in the construction industry. Two main reasons are given as the inhibitors through the process of comprehensive research on innovation management in construction. The first reason is the absence of an understanding of innovation itself. The second is a bias towards research at a firm and individual level, so a comprehensive assessment of project-related factors and their effects on innovation in infrastructure projects has not been undertaken. This study overcomes these issues by adopting as a case study approach of a successful infrastructure project. This research examines more than 500 construction innovations generated by a unique infrastructure alliance. SCIRT (Stronger Christchurch Infrastructure Rebuild Team) is a temporary alliancing organisation that was created to rebuild and recover the damaged infrastructure after the Christchurch 2011 earthquake. Researchers were given full access to the innovation project information and innovation systems under a contract with SCIRT Learning Legacy, provided the research with material which is critical for understanding innovations in large, complex alliancing infrastructure organisation. In this research, an innovation classification model was first constructed. Clear definitions have been developed for six types of construction innovation with a variety of level of novelties and benefits. The innovation classification model was applied on the SCIRT innovation database and the resultant trends and behaviours of different types of innovation are presented. The trends and behaviours through different types of SCIRT innovations developed a unique opportunity to research the projectrelated factors and their effect on the behaviour of different classified types of innovation throughout the project’s lifecycle. The result was the identification of specific characteristics of an infrastructure project that affect the innovation management process at the project level. These were categorised in four separate chapters. The first study presents the relationship between six classified types of innovation, the level of novelty and the benefit they come up with, by applying the innovation classification model on SCIRT innovation database. The second study focused on the innovation potential and limitations in different project lifecycle phases by using a logic relationship between the six classified types of innovation and the three classified phases of the SCIRT project. The third study result develops a holistic view of different elements of the SCIRT motivation system and results in a relationship between the maturity level of definition developed for innovation as one of the KPIs and a desire though the SCIRT innovation incentive system to motivate more important innovations throughout the project. The fourth study is about the role of the project’s temporary organisation that finally results in a multiple-view innovation model being developed for project organisation capability assessment in the construction industry. The result of this thesis provides practical and instrumental knowledge to be used by a project practitioner. Benefits of the current thesis could be categorized in four groups. The first group is the innovation classification model that provides a clear definition for six classified types of innovation with four levels of novelty and specifically defined outcomes and the relationship between the innovation types, novelty and benefit. The second is the ability that is provided for the project practitioner to make the best decision for the right type of innovation at the right phases of a project’s lifecycle. The third is an optimisation that is applied on the SCIRT innovation motivation system that enables the project practitioner to incentivize the right type of innovation with the right level of financial gain. This drives the project teams to develop a more important innovation instead of a simple problemsolving one. Finally, the last and probably more important benefit is the recommended multiple-view innovation model. This is a tool that could be used by a project practitioner in order to empower the project team to support innovation throughout the project.
A report created by the University of Canterbury Quake Centre and the University of Auckland, funded by the Building Research Levy. It shows how an innovation process was initiated and managed throughout the rebuilding of the horizontal infrastructure after the Canterbury earthquakes.
The Canterbury earthquakes destroyed the Christchurch CBD and caused massive disruption to business across the region. There was an urgent need to support business survival and foster economic recovery. Recover Canterbury is a hub providing seamless support for businesses affected by the earthquakes, giving them easy access to government and commercial expertise in a one-stop shop.
A page banner promoting an article titled, "Epic achievement: hi-tech innovation centre opens".
A photograph of the EPIC Innovation Centre under construction on the corner of St Asaph Street and Manchester Street.
A photograph of the EPIC Innovation Centre under construction on the corner of St Asaph Street and Manchester Street.
A photograph of the EPIC Innovation Centre under construction on the corner of St Asaph Street and Manchester Street.
A photograph of the EPIC Innovation Centre under construction on the corner of St Asaph Street and Manchester Street.
A photograph of the EPIC Innovation Centre under construction on the corner of St Asaph Street and Manchester Street.
A document containing examples of the technical update newsletter which detailed SCIRT innovations. The newsletters in the document were produced between 1 July 2013 and 1 May 2014.
A graphic showing plans for the proposed EPIC Innovation Centre.
A copy of the minutes from a meeting between the Ministry of Business, Innovation and Employment (MBIE), and several Christchurch residents' groups, held on 20 June 2013.
A copy of the transcript of a meeting between the Ministry of Business, Innovation and Employment (MBIE), and several Christchurch residents' groups, held on 20 June 2013.
An audio recording of a meeting between the Ministry of Business, Innovation and Employment (MBIE), and several Christchurch residents' groups, held on 20 June 2013.
A paper delivered at Building a Better New Zealand (BBNZ 2014) Conference. The paper examines the relationship between innovation and productivity improvement in the construction industry.
An incomplete graphic showing plans for the proposed EPIC Innovation Centre.
A pdf copy of a presentation delivered at Building a Better New Zealand (BBNZ 2014) Conference. The presentation examines the relationship between innovation and productivity improvement in the construction industry.
A video of an address by Russell Stanners, CEO of Vodafone, at the 2015 Seismics and the City forum. This talk focuses on smart buildings and new ways of working.
A video of an address by Corrine Haines, Managing Director of Trimble, at the 2015 Seismics and the City forum. This talk focuses on smart buildings and new ways of working.
A video of an address by Kevin Lynn, General Manager of Commercial Operations at Schneider Electric NZ, at the 2015 Seismics and the City forum. This talk focuses on smart buildings and new ways of working.
The new EPIC Innovation Centre on the corner of Tuam and Manchester Streets.
A video of an address by Andre Lovatt, CEO of the Arts Centre, at the 2014 Seismics and the City forum. This talk was part of the Building Innovation section.
A video of an address by Mike Underhill, Chief Executive of Energy Efficiency Conservation Authority (EECA), at the 2014 Seismics and the City forum. This talk was part of the Building Innovation section.
A video of an address by Dr. Rod Carr, Vice Chancellor of the University of Canterbury, at the 2014 Seismics and the City forum. This talk was part of the Building Innovation section.
A video of an address by David Freeman-Greene, General Manager for Commercial at Orion, at the 2014 Seismics and the City forum. This talk was part of the Building Innovation section.
A video of an address by Dr. Andrew West, Vice Chancellor of Lincoln University, at the 2014 Seismics and the City forum. This talk was part of the Building Innovation section.
Jessica Peterson, from Research and Innovation and has now taken on the role as the Earthquake Research Coordinator.
A pdf copy of a PowerPoint presentation which illustrates the locations where Duncan Gibb presented his Brunel lecture.
A document made available to people attending Duncan Gibb's Brunel lecture.