Analogies and Generalizations of Phenomena Accepted When Solving Reliability Problems

Аналогии и обобщения явлений, принимаемых при решении задач надежности
A. V. Ragutkin, I. N. Kravchenko, M. E. Stavrovsky, I. M. Sidorov, E. S. Postnikova
2026-05-29

critical phenomenadesign quality assurancegeneralization of phenomenaphysical analogiesreliability problems
In matters of design quality assurance, special attention is paid to the reliable operation of products under various operating conditions, ensuring the operability of the material property relationships. The article examines approaches to studying the patterns of processes and phenomena and formalized procedures for making changes to their mathematical description. The necessity of testing physical concepts and representations that are geometric, statistical, and then thermodynamic analogies (integral or averaged) is shown. The problems of generalization are considered using the example of critical phenomena of different nature.
1
Generalization problems are analyzed via examples of critical phenomena of different natures, illustrating cross-domain applicability of analogies.
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Reliable product operation across varied conditions requires ensuring consistency of material property relationships in design quality assurance.
3
Testing of physical concepts should proceed through geometric, statistical, and thermodynamic (integral/averaged) analogies to validate representations.
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The paper examines approaches to study patterns of processes and phenomena and formalized procedures for modifying their mathematical descriptions.

Patterns of processes and phenomena relevant to reliability of product operation (including geometric, statistical, and thermodynamic analogies)

Approaches and formalized procedures for studying, testing, generalizing, and modifying mathematical descriptions of those process/phenomenon patterns — including testing physical concepts and integral/averaged analogies and analysis via examples of critical phenomena

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2026-05-29
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A. V. Ragutkin
I. N. Kravchenko
M. E. Stavrovsky
I. M. Sidorov
E. S. Postnikova
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