000780902 000__ 04865cam\a2200541Ii\4500 000780902 001__ 780902 000780902 005__ 20230306143206.0 000780902 006__ m\\\\\o\\d\\\\\\\\ 000780902 007__ cr\nn\nnnunnun 000780902 008__ 170419s2017\\\\si\a\\\\o\\\\\101\0\eng\d 000780902 020__ $$a9789811035210$$q(electronic book) 000780902 020__ $$a9811035210$$q(electronic book) 000780902 020__ $$z9789811035203 000780902 0247_ $$a10.1007/978-981-10-3521-0$$2doi 000780902 035__ $$aSP(OCoLC)ocn982736545 000780902 035__ $$aSP(OCoLC)982736545 000780902 040__ $$aGW5XE$$beng$$erda$$epn$$cGW5XE$$dN$T$$dEBLCP$$dOCLCF$$dYDX$$dUAB 000780902 049__ $$aISEA 000780902 050_4 $$aTS171.A1$$bI58 2017eb 000780902 08204 $$a658.5/752$$223 000780902 1112_ $$aInternational Conference on Research into Design$$n(6th :$$d2017 :$$cGauhati, India) 000780902 24510 $$aResearch into design for communities.$$nVolume 2 :$$bproceedings of ICoRD 2017 /$$cAmaresh Chakrabarti, Debkumar Chakrabarti, editors. 000780902 2463_ $$aICoRD 2017 000780902 264_1 $$aSingapore :$$bSpringer,$$c2017. 000780902 300__ $$a1 online resource (xxx, 1063 pages) :$$billustrations. 000780902 336__ $$atext$$btxt$$2rdacontent 000780902 337__ $$acomputer$$bc$$2rdamedia 000780902 338__ $$aonline resource$$bcr$$2rdacarrier 000780902 4901_ $$aSmart innovation, systems and technologies,$$x2190-3018 ;$$vvolume 66 000780902 500__ $$aInternational conference proceedings. 000780902 500__ $$aIncludes author index. 000780902 5050_ $$aPreface; Conference Organisation; Patron; Steering Committee; Advisory Committee; Conference Chair; Programme Chair; Co-chairs; Workshop Co-chair; International Programme Committee; Conference Secretary; Conference Treasurer; Local Organising Committee; About the Conference; Contents; About the Editors; Eco-design, Sustainable Manufacturing, Design for Sustainability; 1 Supporting Environmentally-Benign Design: Environmental Impact Estimation and Uncertainty Categories with Respect to Life Cycle Assessment in Conceptual Design; Abstract; 1 Introduction; 2 Literature Review 000780902 5058_ $$a2.1 Solution Description and Environmental Impact Propagation in Conceptual Design Stage2.2 Environmental Impact Estimation in Conceptual Design and Relevance of Uncertainty Analysis; 2.3 Uncertainty in Conceptual Design: Categorisation and Definition; 3 'Solution Definition' in Conceptual Design as Evolutionary Precursor to 'Structure Definition' in Embodiment Design; 3.1 Literature Review: Structure-Definition in Embodiment Design; 3.2 Descriptive Study: Mapping 'Structure Defintion' to 'Solution Defintion'; 3.2.1 Analysis of Design Sketches; 3.2.2 Findings from Design Analysis 000780902 5058_ $$a3.2.3 Conclusions from the Design Analysis3.3 Uncertainty Category with Respect to LCA in Conceptual Design; 4 Environmental Impact Estimate in Conceptual Design; 4.1 Uncertainty Association with Environmental Impact Estimate; 4.2 Enabling Pre-emptive, Sound Design-Decisions: Research Value Proposition; 4.2.1 Descriptive Study: Analysis of Design Decisions; 4.2.2 Observations and Findings from the Design Analysis; 4.2.3 Conclusions from the Design Analysis; 5 Conclusions and Future Work; References 000780902 5058_ $$a2 Supporting Sustainable Service-System Design: A Case Study on Green-Roof Design with InDeaTe Template and Tool at Syracuse, New YorkAbstract; 1 Introduction; 2 Case Study: Overview; 2.1 Problem Brief; 2.2 Design Methodology; 2.2.1 Exercise Duration; 2.2.2 Participants; 2.3 Analysis Methodology; 2.3.1 Assessment of Design with Respect to Benchmark; 2.3.2 Analysis of Effectiveness of Tool:; 2.4 Limitations of the Study; 2.5 Key Findings of the Study; 3 Literature Review; 3.1 Relevance and Need for a Holistic Support; 3.2 InDeaTe Tool and Template: A Novel, Holistic Design Support 000780902 5058_ $$a3.3 Green Roofs: A Literature Survey4 Design Exercise; 4.1 Task Clarification Stage; 4.2 Conceptual Design Stage; 5 Key Findings; 5.1 Design Assessment; 5.2 Analysis of Tool; 6 Conclusions; References; 3 'What Ideality Tool' (WIT) for Product Design Briefs; Abstract; 1 Introduction; 2 Nature as a Model, Tutor and Scale; 2.1 'What Ideality Tool' ('WIT') for the Product Design Brief; 2.2 How Was the Model Developed?; 2.3 Transitioning from a Static Flowchart to a Dynamic Automation Tool; 2.4 Research and Test Case Description; 2.5 Results; 2.6 Criteria and Measuring Process; 2.7 Discussion 000780902 506__ $$aAccess limited to authorized users. 000780902 588__ $$aOnline resource; title from PDF title page (SpringerLink, viewed April 17, 2017). 000780902 650_0 $$aIndustrial design$$vCongresses. 000780902 650_0 $$aNew products$$vCongresses. 000780902 650_0 $$aEngineering design$$vCongresses. 000780902 7001_ $$aChakrabarti, Amaresh,$$eeditor. 000780902 7001_ $$aChakrabarti, Debkumar,$$eeditor. 000780902 830_0 $$aSmart innovation, systems, and technologies ;$$v66. 000780902 852__ $$bebk 000780902 85640 $$3SpringerLink$$uhttps://univsouthin.idm.oclc.org/login?url=http://link.springer.com/10.1007/978-981-10-3521-0$$zOnline Access$$91397441.1 000780902 909CO $$ooai:library.usi.edu:780902$$pGLOBAL_SET 000780902 980__ $$aEBOOK 000780902 980__ $$aBIB 000780902 982__ $$aEbook 000780902 983__ $$aOnline 000780902 994__ $$a92$$bISE