869 resultados para Building Design Process


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Theprocess of manufacturing system design frequently includes modeling, and usually, this means applying a technique such as discrete event simulation (DES). However, the computer tools currently available to apply this technique enable only a superficial representation of the people that operate within the systems. This is a serious limitation because the performance of people remains central to the competitiveness of many manufacturing enterprises. Therefore, this paper explores the use of probability density functions to represent the variation of worker activity times within DES models.

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A RET network consists of a network of photo-active molecules called chromophores that can participate in inter-molecular energy transfer called resonance energy transfer (RET). RET networks are used in a variety of applications including cryptographic devices, storage systems, light harvesting complexes, biological sensors, and molecular rulers. In this dissertation, we focus on creating a RET device called closed-diffusive exciton valve (C-DEV) in which the input to output transfer function is controlled by an external energy source, similar to a semiconductor transistor like the MOSFET. Due to their biocompatibility, molecular devices like the C-DEVs can be used to introduce computing power in biological, organic, and aqueous environments such as living cells. Furthermore, the underlying physics in RET devices are stochastic in nature, making them suitable for stochastic computing in which true random distribution generation is critical.

In order to determine a valid configuration of chromophores for the C-DEV, we developed a systematic process based on user-guided design space pruning techniques and built-in simulation tools. We show that our C-DEV is 15x better than C-DEVs designed using ad hoc methods that rely on limited data from prior experiments. We also show ways in which the C-DEV can be improved further and how different varieties of C-DEVs can be combined to form more complex logic circuits. Moreover, the systematic design process can be used to search for valid chromophore network configurations for a variety of RET applications.

We also describe a feasibility study for a technique used to control the orientation of chromophores attached to DNA. Being able to control the orientation can expand the design space for RET networks because it provides another parameter to tune their collective behavior. While results showed limited control over orientation, the analysis required the development of a mathematical model that can be used to determine the distribution of dipoles in a given sample of chromophore constructs. The model can be used to evaluate the feasibility of other potential orientation control techniques.

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It has become increasingly common for tasks traditionally carried out by engineers to be undertaken by technicians and technologist with access to sophisticated computers and software that can often perform complex calculations that were previously the responsibility of engineers. Not surprisingly, this development raises serious questions about the future role of engineers and the education needed to address these changes in technology as well as emerging priorities from societal to environmental challenges. In response to these challenges, a new design module was created for undergraduate engineering students to design and build temporary shelters for a wide variety of end users from refugees, to the homeless and children. Even though the module provided guidance on principles of design thinking and methods for observing users needs through field studies, the students found it difficult to respond to needs of specific end users but instead focused more on purely technical issues.

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Thesis (Master's)--University of Washington, 2016-08

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Transdisciplinarity gained importance in the 1970s, with the initial signs of weakness of both multi- and interdisciplinary approaches. This weakness was felt due to the increased complexity in the social and technological landscapes. Generally, discussion over the transdisciplinary topic is centred in social and health sciences. Therefore, the major challenge in this research is to adapt design research to the emerging transdisciplinary discussion. Based on a comparative and critical review of several engineering and design models for the design process, we advocate the importance of collaboration and conceptualisation for these disciplines. Therefore, a transdisciplinary and conceptual cooperation between engineering and industrial design disciplines is considered as decisive to create breakthroughs. Furthermore, a synthesis is proposed, in order to foster the cooperation between engineering and industrial design.

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Työn tavoitteena on tuottaa kehitysehdotuksia kohdeyrityksen perustajarakennuttamisprosessiin. Toiminnan tarkastelun painopiste on taloushallinnossa ja tietojärjestelmissä. Prosessin analysoimisessa hyödynnetään liiketoimintaprosessikuvausta, jossa eritellään yksilöiden sekä järjestelmien toimintaa. Työn teoriaosuudessa tarkastellaan prosesseja ja niiden kuvaamista, talousohjausta sekä rakennuttamisliiketoimintaa yleisesti. Synteesiosuudessa prosessin kulku analysoidaan. Prosessin tarkastelussa keskitytään prosessin sopimusvaiheeseen sekä taloushallinnon ja tietojärjestelmien toteutukseen. Analyysin perusteella esitetään toiminnan keskeiset ongelmakohdat. Toiminnan ongelmat jakautuvat kolmelle tasolle: operatiiviseen toimintaan, taloushallinnon toteutukseen sekä tietojärjestelmäratkaisuihin. Operatiivisella tasolla ongelmat liittyvät yksilöiden toimintaan ja taloushallinnossa etenkin kustannusten kohdistamiseen. Tietojärjestelmien avulla yhdistetään operatiivinen ja taloushallinnollinen taso toisiinsa. Työssä esitettyjen ratkaisuehdotusten avulla kohdeyritys voi kehittää prosessia kokonaisuutena.

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The paper is an investigation of the exchange of ideas and information between an architect and building users in the early stages of the building design process before the design brief or any drawings have been produced. The purpose of the research is to gain insight into the type of information users exchange with architects in early design conversations and to better understand the influence the format of design interactions and interactional behaviours have on the exchange of information. We report an empirical study of pre-briefing conversations in which the overwhelming majority of the exchanges were about the functional or structural attributes of space, discussion that touched on the phenomenological, perceptual and the symbolic meanings of space were rare. We explore the contextual features of meetings and the conversational strategies taken by the architect to prompt the users for information and the influence these had on the information provided. Recommendations are made on the format and structure of pre-briefing conversations and on designers' strategies for raising the level of information provided by the user beyond the functional or structural attributes of space.

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Designing for indoor thermal environmental conditions is one of the key elements in the energy efficient building design process. This paper introduces a development of the Chinese national Evaluation Standard for indoor thermal environments (Evaluation Standard). International standards including the ASHRAE55, ISO7730, DIN EN, and CIBSE Guide-A have been reviewed and referenced for the development of the Evaluation Standard. In addition, over 28,000 subjects participated in the field study from different climate zones in China and over 500 subjects have been involved in laboratory studies. The research findings reveal that there is a need to update the Chinese thermal comfort standard based on local climates and people's habitats. This paper introduces in detail the requirements for the thermal environment for heated and cooled buildings and free-running buildings in China.

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This thesis aims to describe and demonstrate the developed concept to facilitate the use of thermal simulation tools during the building design process. Despite the impact of architectural elements on the performance of buildings, some influential decisions are frequently based solely on qualitative information. Even though such design support is adequate for most decisions, the designer will eventually have doubts concerning the performance of some design decisions. These situations will require some kind of additional knowledge to be properly approached. The concept of designerly ways of simulating focuses on the formulation and solution of design dilemmas, which are doubts about the design that cannot be fully understood nor solved without using quantitative information. The concept intends to combine the power of analysis from computer simulation tools with the capacity of synthesis from architects. Three types of simulation tools are considered: solar analysis, thermal/energy simulation and CFD. Design dilemmas are formulated and framed according to the architect s reflection process about performance aspects. Throughout the thesis, the problem is investigated in three fields: professional, technical and theoretical fields. This approach on distinct parts of the problem aimed to i) characterize different professional categories with regards to their design practice and use of tools, ii) investigate preceding researchers on the use of simulation tools and iii) draw analogies between the proposed concept, and some concepts developed or described in previous works about design theory. The proposed concept was tested in eight design dilemmas extracted from three case studies in the Netherlands. The three investigated processes are houses designed by Dutch architectural firms. Relevant information and criteria from each case study were obtained through interviews and conversations with the involved architects. The practical application, despite its success in the research context, allowed the identification of some applicability limitations of the concept, concerning the architects need to have technical knowledge and the actual evolution stage of simulation tools

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O presente trabalho procurou identificar as competências necessárias, no processo de formação profissional do Arquiteto e urbanista, durante a graduação, tendo como foco a sua atuação como coordenador do processo de Projeto de edificações. A pesquisa utilizou uma metodologia qualitativa com enfoque exploratório e descritivo, envolvendo coleta de dados através de pesquisa de opinião. Foram analisados dados como: Resoluções do MEC e CONFEA/CREA, grades curriculares das Faculdades de Arquitetura e Urbanismo da Região Metropolitana de Belém-PA e a percepção de alunos e arquitetos (docentes e profissionais liberais) através de entrevistas, tendo como principal resultado uma proposta de reformulação curricular na formação do arquiteto e urbanista, através da inclusão de conhecimentos sobre coordenação do processo de projeto de edificações, com o objetivo de atender as necessidades deste profissional no campo de trabalho. O principal resultado obtido, foi uma proposta para o desenvolvimento de competências que procura trabalhar através de conhecimentos, habilidades e atitudes relacionados aos conteúdos, experiências de aprendizagem e formas de avaliação, a melhor forma de contribuir de forma efetiva com a formação do arquiteto e urbanista, com o objetivo possibilitar que este profissional possa atuar como coordenador do processo de projeto de edificações.