Research of the Destruction of Ice Under Shock and Explosive Loads : chap. / M. Yu. Orlov, Yu. N. Orlova
Язык: английский.Серия: Advanced Structured MaterialsРезюме или реферат: A theoretical and experimental research of the behavior of ice destruction under shock and explosive loads was carried out. Full-scale underwater explosive experiments and laboratory impact experiments were performed. Especially to study the properties of ice with explosive loads, a mobile laboratory “Explosive Destruction of Natural Materials” was organized. The results of the full-scale experiment of the current year are given. Post-penetration analysis of destruction of three-layer ice targets with a low-velocity impact is presented. Briefly, the mathematical model of ice destruction under dynamic loads is described. The numerical method contains a new way for isolating discontinuity surfaces of materials. The impact of an ice cylinder on a rigid wall is modeled, which is considered as a quantitative test. The penetration of a metal container into thick ice is quantitatively described..Примечания о наличии в документе библиографии/указателя: [References: 29 tit.].Аудитория: .Тематика: электронный ресурс | труды учёных ТПУ | ice destruction | shock and explosive loads | full-scale underwater explosive experiments | rigid wall | three-layer ice target | projectile | fracture | разрушение пластов | лед | ударные нагрузки | взрывные нагрузки | снаряды Ресурсы он-лайн:Щелкните здесь для доступа в онлайнTitle screen
[References: 29 tit.]
A theoretical and experimental research of the behavior of ice destruction under shock and explosive loads was carried out. Full-scale underwater explosive experiments and laboratory impact experiments were performed. Especially to study the properties of ice with explosive loads, a mobile laboratory “Explosive Destruction of Natural Materials” was organized. The results of the full-scale experiment of the current year are given. Post-penetration analysis of destruction of three-layer ice targets with a low-velocity impact is presented. Briefly, the mathematical model of ice destruction under dynamic loads is described. The numerical method contains a new way for isolating discontinuity surfaces of materials. The impact of an ice cylinder on a rigid wall is modeled, which is considered as a quantitative test. The penetration of a metal container into thick ice is quantitatively described.
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