The modern market for medical equipment is not only a huge variety of devices of various functions and purposes, but also the presence of a huge number of manufacturers. In such conditions of fierce competition, natural prerequisites are created for the formation of new strategies in the design of new devices. Today, much attention is paid not only to the visible aesthetics of external forms, but to the conceptual approach to the design process, where a significant part of the time is spent not so much on the design itself as on global research and searching for the problems of the system as a whole.
This article outlines the problem of the visual ecology of the urban environment, which is becoming increasingly relevant in connection with global changes relating to the appearance of modern cities. The study revealed that the environment of a modern big city is becoming more aggressive for a person and his perception, which entails a negative impact on his psycho-emotional state. Natural forms that have the opposite effect oppose aggressive urban environments. A possible solution to this problem is the use of the bionic method of morphogenesis. This method involves the interpretation of natural motifs in the shaping of objects of design, architecture, etc. In the framework of this study, the proposed solution to the problem is demonstrated by the example of creating the concept of a recreation zone.
This article discusses the process of creating a unique lamp "Synchrony", taking into account the application of the method of artistic shaping. The main idea of the concept is based on the plastic of bionic forms. In this projected object, the ability to adjust the light was implemented, based on a rotary mechanism located on the top of the lamp. The principle of its operation is based on two rows of slats, one of which is fixed, and the second is movable. The illumination of this lamp was tested in order to predict different light scenarios. Testing was carried out in its different modes - with open slats and closed. For the experiment, the DIALux software environment was used, which serves to design, calculate and visualize lighting. The existing standards regulated by SNiP were also taken into account.
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