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Safety Parts of Body to Respiration with Breathing Apparatus in Dangerous Zone
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作者 Aleksandar Majstorovic 《Journal of Mechanics Engineering and Automation》 2012年第2期132-136,共5页
People are witnesses of life imperilling and working background too, as today, even during the evolution. People's life interface is disturbed with different shapes of contamination: natural disasters (floods, eart... People are witnesses of life imperilling and working background too, as today, even during the evolution. People's life interface is disturbed with different shapes of contamination: natural disasters (floods, earthquakes, volcanic eruptions and the other); on purpose or accidentally-different shapes like: wars, fires, chemical fates, using of dangerous materials in production processes and everyday life... In these mentioned specific conditions, breathing is imperiled, like the vital function of men's life and working interfaces. With the technical-technology progress, it is enclosed the development equipment for protection and safety of the respiratory parts of body, faces and eyes, regard to breathing apparatus. Applying the breathing apparatus, the total protection of the respiratory parts of the body, faces and eyes to aggressive materials, smoke and warmth is enabled. Today in the world there are many producers of breathing apparatus with similar technical-technological solutions, of which should be mentioned the main ones: MSA Auer, Dr/iger and Interspiro. Using of the breathing apparatus in practice, continual performation of different activities without consequences for the health and life of the user is enabled, what firstly depends on the user's education, regular using, controlling examination and maintenance/servicing. 展开更多
关键词 Contamination safety of respiratory parts of the body faces and eyes breathing apparatus education maintenance/servicing.
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Safety Analysis of Flow Parameters in a Rotor-stator Cavity 被引量:3
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作者 ZHANG Gong DING Shuiting 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2012年第6期831-838,共8页
In order to ensure the safety of engine life limited parts (ELLP) according to airworthiness regulations, a numerical approach integrating one-way fluid structure interaction (FSI) and probabilistic risk assessme... In order to ensure the safety of engine life limited parts (ELLP) according to airworthiness regulations, a numerical approach integrating one-way fluid structure interaction (FSI) and probabilistic risk assessment (PRA) is developed, by which the variation of flow parameters in a rotor-stator cavity on the safety of gas turbine disks is investigated. The results indicate that the flow parameters affect the probability of fracture of a gas turbine disk since they can change the distribution of stress and temperature of the disk. The failure probability of the disk rises with increasing rotation Reynolds number and Chebyshev number, but descends with increasing inlet Reynolds number. In addition, a sampling based sensitivity analysis with finite difference method is conducted to determine the sensitivities of the safety with respect to the flow parameters. The sensitivity estimates show that the rotation Reynolds number is the dominant variable in safety analysis of a rotor-stator cavity among the flow parameters. 展开更多
关键词 airworthiness aircraft engines engine life limited parts safety analysis rotor-stator cavity risk assessment
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