CumInCAD is a Cumulative Index about publications in Computer Aided Architectural Design
supported by the sibling associations ACADIA, CAADRIA, eCAADe, SIGraDi, ASCAAD and CAAD futures

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_id ea89
authors Brown, John L.
year 1987
title Integrating Computers into the Design Studio - A Critical Evaluation
source Integrating Computers into the Architectural Curriculum [ACADIA Conference Proceedings] Raleigh (North Carolina / USA) 1987, pp. 29-38
doi https://doi.org/10.52842/conf.acadia.1987.029
summary This paper presents a critical evaluation of two years of experience in using computer aided design as the primary graphic tool in an architectural design studio. In addition to significant benefits being realized, it was found that in a number of circumstances the graphic tool seemed to place unnecessary or inappropriate constraints on the designer. A critical examination of this tendency revealed that there may be a discrepancy between the theoretical framework in which computer aided design systems are developed and used, and the conceptual framework of contemporary architectural thought. These issues arising from the studio experience, are discussed and placed within the context of current theoretical concerns in architecture.

series ACADIA
email
last changed 2022/06/07 07:54

_id 0518
authors Degelman, Larry O. and Miranda, Valerian
year 1987
title Development of Interfaces for CAD Processing in Architecture
source Integrating Computers into the Architectural Curriculum [ACADIA Conference Proceedings] Raleigh (North Carolina / USA) 1987, pp. 95-104
doi https://doi.org/10.52842/conf.acadia.1987.095
summary Substantial efforts within Europe and Japan, as well as the U.S., have been placed on automating construction processes within the building industry, while lesser efforts have been focused on computer integration in the design processes. This paper addresses the design end of the design/build spectrum and how this subject is approached in the educational and research programs at Texas A&M University. The problems of fragmentation and incompatibility of existing software data bases for building design are recognized as being the major drawbacks to significant progress in Computer-Aided Design. This is followed by a description of proposed models for future interfaces and communications linkages necessary for successful computer integration in the building design process.

Efforts in the area of CAD development are undertaken within the "computers in architecture" emphasis area in the PhD program at this university and are targeted at resolution of the CAD interface problems. This happens in both the teaching and research programs. Initially, the communication problems between the building design team and the building systems software are being approached through a PhD-level course in software development for building design problems. In this context, the non-graphical aspects of CAD are being addressed through the development of user friendly, tutorial- type software. Longer range research objectives are directed at the special three-way interfaces between the (1) Design Team, (2) Graphics Handler, and (3) Analytical Engine, and the linkages of these to the Common Data Base.

series ACADIA
email
last changed 2022/06/07 07:55

_id cd8d
authors Herbert, Daniel M.
year 1987
title Study Drawings in Architectural Design: Applications for CAD Systems
source Integrating Computers into the Architectural Curriculum [ACADIA Conference Proceedings] Raleigh (North Carolina / USA) 1987, pp. 157-168
doi https://doi.org/10.52842/conf.acadia.1987.157
summary To guide their future development, research and teaching in computer-aided design must look beyond the technical capabilities of computer systems to establish a theoretical foundation based on known processes in design. This paper suggests that such a theoretical foundation can be derived by analyzing architectural study drawings -- defined as the rough drawings that architects make in the exploratory stages of design -- to determine their epistemelogical properties. The analysis brings forward concepts from a number of disciplines related to the structure of human knowledge to identify five properties of study drawings. Based on these properties, the paper proposes strategies for application to the next generation of research and teaching in CAD systems.
series ACADIA
last changed 2022/06/07 07:49

_id afd5
authors Jog, Bharati
year 1987
title An Interface Between CAD and Energy Analysis System
source Integrating Computers into the Architectural Curriculum [ACADIA Conference Proceedings] Raleigh (North Carolina / USA) 1987, pp. 87-94
doi https://doi.org/10.52842/conf.acadia.1987.087
summary During the architectural design process it is helpful to get the energy analysis at various steps. Using the knowledge obtained from energy analysis programs, a design can be improved during the next step. Today Computer-Aided Drafting packages are popular as drafting tools in the architecture profession and schools. Many software packages for energy analysis are also available. To promote such analytical design process, there is a need to develop interfaces between energy analysis systems and Computer- Aided Drafting packages to get the energy analysis using the drawing files. This paper describes the use of the interface between Computer-Aided Drafting system and energy analysis program as an analytical tool in the Computer-Aided Design process. Then it presents an interface developed between AutoCAD, a popular Computer-Aided Drafting tool, and CALPAS3, an energy analysis program.

series ACADIA
last changed 2022/06/07 07:52

_id af13
authors Kennedy, Michael
year 1987
title The Initial Start: Beginning CAADD for the Brand New Student
source Integrating Computers into the Architectural Curriculum [ACADIA Conference Proceedings] Raleigh (North Carolina / USA) 1987, pp. 65-76
doi https://doi.org/10.52842/conf.acadia.1987.065
summary Described is a teaching system presently being used during the first five weeks of a first course in Computer Aided Architectural Design and Drafting (After these five weeks students spend eleven weeks actively using a 2-D drafting package and a 3-D surface modeling package).

It is the view of the author that a student can obtain much more from her or his first course in CAADD if some fundamental concepts are covered specifically and dramatically, rather than assumed or conveyed by osmosis. On the other hand, one does not want to significantly delay the teaching of he principal objective: how to use a computer as a partner in design and production. The answer to meeting these two divergent objectives is two-fold: (1) careful organization with computer based tutorials, and (2) integration of architectonic lessons during the introduction.

The objectives of he initial five weeks are (1) to demystify computers, (2) teach the fundamental concepts of computer systems relating to hardware (disks, cpu, memory, display), and software (programs, data, files), (3) illustrate programming and program design, and (4) convey the concept of discrete symbol manipulation and its relation to graphics and text.

series ACADIA
last changed 2022/06/07 07:52

_id a158
authors Turner, James A.
year 1987
title Graphic Standards: IGES and PDES in an AEC Environment
source Integrating Computers into the Architectural Curriculum [ACADIA Conference Proceedings] Raleigh (North Carolina / USA) 1987, pp. 195-
doi https://doi.org/10.52842/conf.acadia.1987.x.v4s
summary The idea made a lot of sense: many diverse CAD systems communicating a common project data-base through a neutral format translator. The "Initial Graphics Exchange Specification", kindly known as IGES (pronounced "I guess" by its proponents, and "I guess not" by its opponents) was the the initial effort, and is either loved or hated; there is no "neutral" ground. Has it succeeded? Has it failed? Is there a future in this neutral format business? Was CAD meant to be "design" or "drafting"? Does industry support it? What does it mean for architecture? Is a "one-to-many" translator a wonderful idea, but impossible to implement? Is a complete set of "one-to-one" translators a better idea?

This paper will give a short history of IGES, discuss its reason for being, list its strengths and weaknesses, examine its inner workings, and introduce the current effort of the IGES committee: a total "Product Design Exchange Specification", PDES (and internationally as STEP). It will also discuss the techniques used by the PDES application committees to model their various products, and give a case study of the effort of the AEC committee in modeling an architectural "product".

The paper will conclude with the opinions on the future of IGES by the author (a four year member of the IGES/PDES organization).

series ACADIA
email
last changed 2022/06/07 07:49

_id 8c73
authors Van Wyk, C.G. Skip
year 1987
title CAAD Usage: Now and When At OSU
source Integrating Computers into the Architectural Curriculum [ACADIA Conference Proceedings] Raleigh (North Carolina / USA) 1987, pp. 121-134
doi https://doi.org/10.52842/conf.acadia.1987.121
summary In February of this year the Department of Architecture at The Ohio State University began a study to determine existing and long-term needs and expectations regarding the use of computers in teaching, research, administration, and service. The results of the study are to aid in two broad planning objectives: (1) facility, hardware, and software acquisition; and (2) curriculum enhancement, faculty and staff development, and support services (i.e., consultants, lab monitors, etc.).

An interview technique was developed to address three main concerns: (1) how computers are and should be utilized in areas--i.e., research, course preparation, lecture delivery, computer-aided instruction, grading and monitoring, and student exercises; (2) what kinds of applications are and should be utilized--i.e., word processing, statistics, graphics, drafting, modeling, audio-visual, database, etc.; and (3) what problems or concerns stand in the way of achieving the desired levels of computer usage.

The twenty-three full-time faculty surveyed (96% participation) represent 65 curriculum courses varying in format from design studio and labs to lecture. This paper outlines the methods of the study and presents the findings via graphs of current and desired computer usage by both area and application along with a graphic summary of statistics and trends. Also presented are a summary of root problems and concerns noted during the interview process and conclusions and limitations of study.

series ACADIA
email
last changed 2022/06/07 07:58

_id 696c
authors Beheshti, M. and Monroy, M.
year 1988
title Requirements for Developing an Information System for Architecture
source CAAD futures ‘87 [Conference Proceedings / ISBN 0-444-42916-6] Eindhoven (The Netherlands), 20-22 May 1987, pp. 149-170
summary This paper discusses possibilities of developing new tools for architectural design. It argues that architects should meet the challenge of information technology and computer-based design techniques. One such attempt has been the first phase of the development of an architectural design information system (ADIS), also an architectural design decision support system. The system should benefit from the developments of the artificial intelligence to enable the architect to have access to information required to carry out design work. In other words: the system functions as a huge on-line electronic library of architecture, containing up-to-date architectural design information, literature, documents, etc. At the same time, the system offers necessary design aids such as computer programs for design process, drawing programs, evaluation programs, cost calculation programs, etc. The system also provides data communication between the architect and members of the design coalition team. This is found to be of vital importance in the architectural design process, because it can enable the architect to fit in changes, brought about in the project by different parties. Furthermore, they will be able, to oversee promptly the consequences of changes or decisions in a comprehensive manner. The system will offer advantages over the more commonly applied microcomputer based CAAD and IGDM (integrated graphics database management) systems, or even larger systems available to an architect. Computer programs as well as hardware change rapidly and become obsolete. Therefore, unrelenting investment pressure to up-date both software and hardware exists. The financial burden of this is heavy, in particular for smaller architectural practices (for instance an architect working for himself or herself and usually with few or no permanent staff). ADIS, as an on-line architectural design aid, is constantly up-dated by its own organisation. This task will be co-ordinated by the ADIS data- base administrator (DBA). The processing possibilities of the system are faster, therefore more complex processing tasks can be handled. Complicated large graphic data files, can be easily retrieved and manipulated by ADIS, a large system. In addition, the cost of an on-line system will be much less than any other system. The system is based on one model of the architectural design process, but will eventually contain a variety of design models, as it develops. The development of the system will be an evolutionary process, making use of its users' feed-back system. ADIS is seen as a step towards full automation of architectural design practices. Apart from being an architectural design support system, ADIS will assist the architect in his/her administrative and organisational activities.
series CAAD Futures
last changed 2003/11/21 15:16

_id 8385
authors Holtz, Neal M. and Rasdorf, William J.
year 1988
title An Evaluation of Programming Languages and Language Features for Engineering Software Development
source International Journal of Engineering with Computers. Springer-Verlag, 1988. vol. 3: pp. 183-199
summary Also published as 'Procedural Programming Languages for the Development of CAD and CAE Systems Software,' in the proceedings of ASME International Conference on Computers in Engineering (1987 : New York, NY). The scope of engineering software has increased dramatically in the past decade. In its early years, most engineering applications were concerned solely with solving difficult numerical problems, and little attention was paid to man- machine interaction, to data management, or to integrated software systems. Now computers solve a much wider variety of problems, including those in which numerical computations are less predominant. In addition, completely new areas of engineering applications such as artificial intelligence have recently emerged. It is well recognized that the particular programming language used to develop an engineering application can dramatically affect the development cost, operating cost. reliability, and usability of the resulting software. With the increase in the variety, functionality, and complexity of engineering software, with its more widespread use, and with its increasing importance, more attention must be paid to programming language suitability so that rational decisions regarding language selection may be made. It is important that professional engineers be aware of the issues addressed in this paper, for it is they who must design, acquire, and use applications software, as well as occasionally develop or manage its development. This paper addresses the need for engineers to possess a working knowledge of the fundamentals of computer programming languages. In pursuit of this, the paper briefly reviews the history of four well known programming languages. It then attempts to identify and to look critically at the attributes of programming languages that significantly affect the production of engineering software. The four procedural programming languages chosen for review are those intended for scientific and general purpose programming, FORTRAN 77, C, Pascal, and Modula-2. These languages are compared and some general observations are made. As it is felt important that professional engineers should be able to make informed decisions about programming language selection, the emphasis throughout this paper is on a methodology of evaluation of programming languages. Choosing an appropriate language can be a complex task and many factors must be considered. Consequently, fundamentals are stressed
keywords programming, engineering, languages, software, management, evaluation, FORTRAN, C, PASCAL, MODULA-2, CAD, CAE
series CADline
last changed 2003/06/02 13:58

_id e41f
authors Port, S.
year 1988
title Computer-drafting - State of the Art
source CAAD futures ‘87 [Conference Proceedings / ISBN 0-444-42916-6] Eindhoven (The Netherlands), 20-22 May 1987, pp. 15-22
summary This paper briefly reviews the state of the art in computer drafting. It moves on to consider some of the limitations of computer drafting systems today. It poses a number of questions regarding the trends and future development of the subject, and suggests some points which should be addressed by the vendors and user organisations alike. The paper concentrates on marketing and management matters rather than on purely technical issues.
series CAAD Futures
last changed 1999/04/03 17:58

_id 4910
authors Rasdorf, William J. and Watson, Bruce R.
year 1987
title A Knowledge-Based Approach to Engineering Information Retrieval and Management
source London, UK: Chapman and Hall Ltd., 1987. pp. 267-295
summary Building design, construction, operation, maintenance, and control are all processes that have achieved various levels of computer use. Although the degree of computerization varies significantly, one common aspect of the computing needs of each process is an abundance of data in the form of tables, standards, project definition information, catalogs, etc. In most cases this data is stored in files which are independently used for input to stand-alone single-process application programs, such as a structural analysis application. The utility of these independent files is therefore limited to a single application. As concepts of integration of engineering applications evolved, the use of databases and database management systems (DBMS) increased. A number of issues of significant concern emerged. First, there is a need to retrieve data from many independent, possibly widely distributed databases. Second, there is a need for a uniform means of doing so. Third, such databases routinely undergo dynamic change. Changes in a database schema commonly result from the evolution of a design, from changes in the design process itself, and from changes in other subsequent downstream processes. Such continuing changes must be reflected in the database schemas and they subsequently require that application programs be updated and that online users be educated on a continuing basis. This chapter describes a knowledge-based expert system that provides access to and integration of the many underlying databases needed to support the building design/construction process. The unique aspect of the expert system presented in this chapter is its capture of the knowledge that an experienced human user incorporates in his search for data in a database, i.e., it seeks to identify and use the generic knowledge needed to operate a DBMS to retrieve data. This knowledge is used by the interface to enable both the online users and the application programs to request data without knowing the data's location or precisely how to ask for it. Further, the interface makes use of mechanisms that allow the user to request data without knowing the exact name by which it is stored in the database. In doing so it formalizes the levels of complexity of that knowledge and points out the multidisciplinary applications of the research results
keywords civil engineering, knowledge base, database, expert systems
series CADline
last changed 2003/06/02 10:24

_id 8331
authors Rasdorf, William J., Ulberg, Karen J. and Baugh, John W. Jr.
year 1987
title A Structure-Based Model of Semantic Integrity Constraints for Relational Databases
source International Journal of Engineering with Computers. Springer-Verlag, Spring, 1987. vol. 2: pp. 31- 39
summary Database management systems (DBMSs) are in widespread use because of the ease and flexibility with which they enable users to access large volumes of data. The use of DBMSs has spread from its origin in business applications to scientific and engineering applications as well. As engineers rely more and more on the computer for data storage, our ability to manually keep track of relationships between data and to ensure data accuracy is severely limited. The inherent fluctuations in engineering design data as well as its large volume, increase the difficulty of doing so. Ensuring data accuracy through the use of integrity constraints which limit or constrain the values of the data is a central aspect of DBMS use. Enforcing constraints (to the extend possible) is a job for the DBMS. This alleviates some of the burden placed on the user and database administrator to maintain the integrity of the database. In addition, it enables integrity constraints to be conceptually centralized and made available for inspection and modification instead of being scattered among application programs. Despite their importance, however, capabilities for handling integrity constraints in commercial DBMSs are limited and they lack adequate integrity maintenance support. In addition, a comprehensive theoretical basis for such support-the role of a constraint classification, representation, invocation, and use methodology-has yet to be developed. This paper presents a formalism that classifies semantic integrity constraints based on the structure of the relational database model. Integrity constraints are characterized by the portion of the database structure they access, whether one or more relations, attributes, or tuples. Thus, the model is completely general, allowing the identification, definition, and arbitrary specification of any constraint on a relational database. It also provides a basis for the implementation of a database integrity subsystem. Examples of each type of constraint are illustrated using a small engineering database, and various implementation issues are discussed
keywords civil engineering, relational database, constraints management
series CADline
last changed 2003/06/02 13:58

_id ee8f
authors Rasdorf, William J.
year 1987
title Extending Database Management Systems for Engineering Applications
source Computers in Mechanical Engineering (CIME). American Society of Mechanical Engineers, March, 1987. vol. 5: pp. 62-69
summary During the design of a manufactured component, large amounts of information pertaining to all aspects of the design must be stored, accessed, and operated upon. A database management system (DBMS), composed of a central repository of data and the associated software for controlling accesses to it and operations on it, provides one way to uniformly store, manage, and use this information. This paper presents a framework for an extension to relational database management systems that combines a set of engineering constraints with a database of engineering data items. The representation requires a database that is able to store all of the data normally associated with engineering design as well as the constraints imposed upon the engineering design process. A powerful and flexible constraint processing system is needed to adequately ensure that engineering data conforms to the limitations imposed upon it by the design process. Such a system must be capable of allowing constraints to be invoked at a variety of times, and provide numerous options for the user when violations are detected. This paper introduces a concept called structured constraints that integrates state- of-the-art advances in DBMSs and current research in engineering constraint processing to further enhance CAD system capabilities. It discusses the extensions to relational database theory that are needed to achieve such a constraint handling capability for mechanical engineering applications. The goal sought is a managed repository of data supporting interfaces to a wide variety of application programs and supporting processing capabilities for maintaining data integrity by incorporating engineering constraints. The Structured Constraint model is a general method for classifying semantic integrity constraints. It is based on the structure of the relational model and is therefore independent of any particular query language. In addition, it is a formalism that possesses conceptual clarity and generality which make it useful for representing and communicating arbitrary constraints. The key contribution of this formalism is its basis for a completely definable implementation of an engineering integrity system
keywords civil engineering, relational database, constraints management, management, DBMS
series CADline
last changed 2003/06/02 10:24

_id 0e42
authors Rouse, W., Geddes, N. and Curry, R.
year 1998
title An Architecture for Intelligent Interfaces: Outline of an Approach to Supporting Operators of Complex Systems Articles
source Human-Computer Interaction 1987-1988 v.3 n.2 pp. 87-122
summary The conceptual design of a comprehensive support system for operators of complex systems is presented. Key functions within the support system architecture include information management, error monitoring, and adaptive aiding. One of the central knowledge sources underlying this functionality is an operator model that involves a combination of algorithmic and symbolic models for assessing and predicting an operator's activities, awareness, intentions, resources, and performance. Functional block diagrams are presented for the overall architecture as well as the key elements within this architecture. A variety of difficult design issues are discussed, and ongoing efforts aimed at resolving these issues are noted.
series other
last changed 2002/07/07 16:01

_id 8e25
authors Smeltzer, Geert T.A.
year 1987
title Implications of Expert Systems, Data Management and Data Communication for Architectural Education
source Architectural Education and the Information Explosion [eCAADe Conference Proceedings] Zurich (Switzerland) 5-7 September 1987.
doi https://doi.org/10.52842/conf.ecaade.1987.x.u7w
summary The availability of computersystems for processing, managing and communicating data and expertise, does not mean that the results of these processes, will improve automatically. It also shows to much optimism if you expect that the use of process management and communication tools will enlarge the possibilities of the processes themselves. First of all we will have to face the limitations and we will have to accept them, at the cost of the traditional or ordinary architectural education. Mainly we will have to settle for less and worse design results in the beginning of the use of the new tools. In later stages, however, we will have to be able to deal with higher design quality for more aspects at the same time, in stead of the average quality, for mainly only the visual aspect. To meet the limitations of tools like computersystems, we will have to limit and structure the data and expertise, until we will have reached an absolute minimum quantity and a maximum quality of data and expertise. In fact we should strive, at first, for an “implosion” of data and expertise. Then, by adding more and more expertise and necessary data of the same quality, we can control an information explosion.

series eCAADe
last changed 2022/06/07 07:50

_id eb5f
authors Al-Sallal, Khaled A. and Degelman, Larry 0.
year 1994
title A Hypermedia Model for Supporting Energy Design in Buildings
source Reconnecting [ACADIA Conference Proceedings / ISBN 1-880250-03-9] Washington University (Saint Louis / USA) 1994, pp. 39-49
doi https://doi.org/10.52842/conf.acadia.1994.039
summary Several studies have discussed the limitations of the available CAAD tools and have proposed solutions [Brown and Novitski 1987, Brown 1990, Degelman and Kim 1988, Schuman et al 1988]. The lack of integration between the different tasks that these programs address and the design process is a major problem. Schuman et al [1988] argued that in architectural design many issues must be considered simultaneously before the synthesis of a final product can take place. Studies by Brown and Novitski [1987] and Brown [1990] discussed the difficulties involved with integrating technical considerations in the creative architectural process. One aspect of the problem is the neglect of technical factors during the initial phase of the design that, as the authors argued, results from changing the work environment and the laborious nature of the design process. Many of the current programs require the user to input a great deal of numerical values that are needed for the energy analysis. Although there are some programs that attempt to assist the user by setting default values, these programs distract the user with their extensive arrays of data. The appropriate design tool is the one that helps the user to easily view the principal components of the building design and specify their behaviors and interactions. Data abstraction and information parsimony are the key concepts in developing a successful design tool. Three different approaches for developing an appropriate CAAD tool were found in the literature. Although there are several similarities among them, each is unique in solving certain aspects of the problem. Brown and Novitski [1987] emphasize the learning factor of the tool as well as its highly graphical user interface. Degelman and Kim [1988] emphasize knowledge acquisition and the provision of simulation modules. The Windows and Daylighting Group of Lawrence Berkeley Laboratory (LBL) emphasizes the dynamic structuring of information, the intelligent linking of data, the integrity of the different issues of design and the design process, and the extensive use of images [Schuman et al 19881, these attributes incidentally define the word hypermedia. The LBL model, which uses hypermedia, seems to be the more promising direction for this type of research. However, there is still a need to establish a new model that integrates all aspects of the problem. The areas in which the present research departs from the LBL model can be listed as follows: it acknowledges the necessity of regarding the user as the center of the CAAD tool design, it develops a model that is based on one of the high level theories of human-computer interaction, and it develops a prototype tool that conforms to the model.

series ACADIA
email
last changed 2022/06/07 07:54

_id c89d
authors Bancroft, Pamela J.
year 1987
title The Integration of Computing into Architectural Education Through Computer Literate Faculty
source Integrating Computers into the Architectural Curriculum [ACADIA Conference Proceedings] Raleigh (North Carolina / USA) 1987, pp. 109-120
doi https://doi.org/10.52842/conf.acadia.1987.109
summary This paper discusses the apparent correlation between faculty computer literacy and the success of integrating computing into architectural education. Relevant questions of a 1985 national survey which was conducted to study the historical development of faculty computer utilization are analyzed and interpreted. The survey results are then used as the basis for a series of recommendations given for increasing computer literacy among faculty in architectural schools, thus increasing the integration of computing.

series ACADIA
last changed 2022/06/07 07:54

_id 43a9
authors Goldman, Glenn and Zdepski, Stephen
year 1987
title Form, Color & Movement
source Integrating Computers into the Architectural Curriculum [ACADIA Conference Proceedings] Raleigh (North Carolina / USA) 1987, pp. 39-50
doi https://doi.org/10.52842/conf.acadia.1987.039
summary Computer generated three dimensional architectural modeling is a fundamental transformation of the traditional architectural design process.

Viewing a three dimensional computer model from many vantage points and through animation sequences, presents buildings and their surrounding environments as a sequence of spaces and events, rather than as static objects or graphic abstractions. Three dimensional modeling at the earliest stages of design tends to increase the spatial and formal properties of early building design studies, and diminishes the dominance of plan as the form giver.

The following paper is based upon the work of second, third and fifth year architectural students who have engaged in architectural design through the use of microcomputer graphics. In each case they entered the architectural studio with virtually no computer experience. Although the assigned architectural projects were identical to those of other "conventional" architectural studios, their design work was accomplished, almost solely, using four different types of graphic software: Computer-Aided Drafting, 3-Dimensional Modeling, Painting and Animation programs. Information presented is based upon student surveys, semester logs, interviews, impressions of external design critics, and the comparison of computer based and conventional studio final presentations.

series ACADIA
email
last changed 2022/06/07 07:51

_id 6f4d
authors Hall, Theodore W.
year 1987
title Space Stations, Computers and Architectural Design
source Integrating Computers into the Architectural Curriculum [ACADIA Conference Proceedings] Raleigh (North Carolina / USA) 1987, pp. 7-18
doi https://doi.org/10.52842/conf.acadia.1987.007
summary In the winter semester of 1987, I had the opportunity to work with a group of aerospace engineering students on the design of an artificial-gravity rotating space habitat. This was an interesting project in its own right, but of particular relevance to ACADIA was the role of the computer in the design process. Because of its unusual nature, this project forced me to reconsider several issues. This paper addresses the following: (-) The computer as a medium for communication. (-) The need for special tools for special tasks. (-) The pros and cons of computer models vs. cardboard models. (-) The designer's reliance on technology and technocrats. (-) The role of the guru. // Since it was the experience with the space habitat design project that raised these issues, the discussion starts there. The paper then looks for similar experiences in other, more "typical" studio projects. The conclusions are personal opinions about software design, computer literacy, and the teaching of CAD skills to non-programmers.

series ACADIA
email
last changed 2022/06/07 07:50

_id 0740
authors Herman, M. Jackson, N. and Pomerenke, S.
year 1987
title Four-D Architectural Exploration Through CAD: Applications of the Computer to Architectural History
source Integrating Computers into the Architectural Curriculum [ACADIA Conference Proceedings] Raleigh (North Carolina / USA) 1987, pp. 55-64
doi https://doi.org/10.52842/conf.acadia.1987.055
summary This paper, which is based on ongoing research, demonstrates methods of utilizing Computer-Aided Design (CAD) to explore objects of architectural significance in relation to time and space. The paper shows how the use of animated walk-through allows these objects to be experienced with the realism of built form which no other means of recording can achieve.

The paper argues that, through the use of the computer, the whole nature of Architectural History, as it is currently taught in schools of architecture, will need to be changed and that a more pragmatic, hands- on approach to the subject will have to be adopted. Thus we advocate that the computer, the tool of today and the future, will allow students to experience architecture in the way they did in the past, from the Grand Tour to the architectural apprenticeship, aU before the introduction of architectural academies.

series ACADIA
type normal paper
last changed 2022/06/07 07:51

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