Principles of forming modular structures of systems for regeneration and recirculation of process fluids.
Authors
Dariia Zelinska

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The article examines the need for systemic modification and optimization of the ideological, computational, and technological foundations of collaboration between idea generators, technical innovators, and commercialization specialists. Emphasis is placed on the role of the inventor in understanding the unique features and potential of their invention, and on adapting the theory of inventive problem solving (TRIZ) to modern conditions of standardization, unification, and globalization.
Special attention is given to the innovative concepts developed by Vladyslav Drapii, particularly in intelligent technologies, artificial intelligence integration, and recirculatory water treatment systems. The article presents a multifunctional technological solution for electrochemical regeneration of water containing heavy metals, based on prior inventions and experimental developments. It also highlights the lack of a systematic theoretical framework for commercialization and stresses the importance of considering market requirements at early stages of idea generation, where modularization and component-level unification can improve adaptability and economic viability.
The article further explores the complexity of modern integrated technical systems and the need for methodologies to evaluate their commercial value. A systems approach is emphasized as a key foundation, including concepts such as structure, functions, subsystems, and contradictions, with particular attention to technical and physical contradictions within the TRIZ framework. The author concludes that a holistic, system-oriented approach can enhance innovation efficiency and support inventors in globalized markets.
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Authors
Dariia Zelinska

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References:
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