• CONCEPTUAL DESIGN
Conceptual design in the structural engineering sense is the function of choosing a suitable form or system or framing arrangement to bring the architectural solution into being. The building layout, limits and parameters have often been determined solely by the architect. In such cases, the structural engineer may not be able to select the optimum structural solution. Ideally, conceptual design should result from a team effort, where architect, structural engineer and service engineers contribute to the final solution. Modern architectural practices take this multidisciplinary approach.
The architectural decisions are based on functional, aesthetic, environmental and economic considerations. Any of these factors may control in a given case. For example, for an industrial plant it is the functional requirement, whereas for an exhibition building it is the aesthetic aspect. Financial control is always of paramount importance and cost over-runs lead to many legal and other problems.
• INNOVATION
Novelty and innovation are always desirable and we seem to strive after these goals. Architects, engineers and builders always push existing forms of construction to the limits possible with materials available and within the state of knowledge at the time. Structural failures determine when limits are reached and so modifications are made and new ideas developed. Often it is not a new solution that is required, but the correct choice and use of a well-proven existing structural system that gives the best answer. The engineer continually seeks new and improved methods of analysis, design
and construction, and the materials scientist continually seeks to improve material properties and protection systems through research and development. These advances lead to safer and more economical structures. Much of recent structural research has centred on the use of computers in all aspects of the work from architectural and structural modelling and design for construction and building finishing control.
The following are instances of recent structural engineering innovation:
1. Analysis – Elastic matrix and finite element analysis, second order analysis, cable net analysis, plastic analysis;
2. Design – Plastic design, limit state design, computer-aided design, structural optimization and neural network systems;
3. Construction – Space decks, geodesic domes, tension structures, box girder bridges, high-rise tube buildings, etc.