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Safety Grand Challenge: Safe Ship Boarding and Thames Safest River 2030

机译:安全大挑战:安全船舶登船和泰晤士河最安全的2030河流

摘要

This report describes the first Lloyd’s Register Foundation Safety Grand Challenge and details how a collaborative, cross disciplinary design research and teaching methodology can provide a platform for a broad variety of participants to develop projects in a complex design safety environment, encourage collaboration and industrial involvement in design education and contribute to a balance between technological developments and the needs of people in the future.ududThe Royal College of Art, generously supported by the Lloyd’s Register Foundation and working with a group of industry stakeholders, investigated two major areas of risk within the maritime context: Sea Safe transfers from ship to ship, and making the Thames the safest city river by the year 2030. In a four month project, thirty two post graduate participants from eleven disciplines and six researcher-tutors at the Royal College of Art worked together and tackle these complex and wicked design challenges using a number of novel design methods.udWith a focus on finding cutting edge innovative design solution that would reduce risk on the ship to ship transfer and on increasing safety on the River Thames, the research project explored a wide range of approaches that encouraged collaboration, innovation and risk taking in design research practice. The different cultures, practices and knowledge bases led to an array of eight pioneering design solutions, ranging from product-focused innovations through to systemic solutions, material innovations and educational strategies.ududThis report makes a case for the culture of design engaging with risk on water in the context of the wicked problems (Rittel & Webber, 1973; Buchanan, 1992) we identified, the methods and techniques used to tackle these challenges, how cross disciplinary projects can lead to novel insights, and how design education can be used to engage with industry and users to bridge the gap between technological innovation and user needs.ududOur conclusions support the view that this approach can develop implementable new design for safety solutions, incorporate the social, cultural and psychological human factors into safety design and balances users’ needs by engagement through an appropriate use of technology. Furthermore, we uncover insights into training designers for safety critical environments and the implications this has in terms of projects, cross disciplinarity and practices in the role of design thinking in general and relating to the context of risk and safety at sea and on rivers.
机译:本报告描述了首个劳埃德船级社基金会安全大挑战,并详细介绍了跨学科的协作设计研究和教学方法如何为广泛的参与者提供一个平台,以在复杂的设计安全环境中开发项目,鼓励协作和行业参与。设计教育并在未来的技术发展与人们的需求之间取得平衡。 ud ud在劳埃德船级社基金会的大力支持下,并与一群行业利益相关者合作,皇家艺术学院调查了两个主要风险领域在海上环境中:海上安全从船上转移,到2030年使泰晤士河成为最安全的城市河流。在一个为期四个月的项目中,来自英国皇家学院的11名学科的32名研究生和6名研究教师Art通过多种方式共同努力,解决了这些复杂而邪恶的设计难题新颖的设计方法。 ud着眼于寻找可以减少船舰间转运风险并提高泰晤士河安全性的尖端创新设计解决方案,该研究项目探索了各种鼓励合作,创新和风险的方法从事设计研究实践。不同的文化,实践和知识基础导致了八种开创性的设计解决方案,从以产品为中心的创新到系统解决方案,材料创新和教育策略,一应俱全。在严重问题的背景下(Rittel&Webber,1973; Buchanan,1992),我们发现了水的风险,解决这些挑战的方法和技术,跨学科项目如何带来新颖的见解,以及如何进行设计教育 ud ud我们的结论支持以下观点:这种方法可以开发可实施的安全解决方案新设计,并将社会,文化和心理人为因素纳入安全设计中,从而与业界和用户互动。并通过适当使用技术来平衡用户的需求。此外,我们发现了对安全关键环境进行培训的设计师的见解,以及这对项目,跨学科和实践对设计思维的总体作用以及与海上和河流风险与安全相关的影响。

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