岩石力学与工程学报
巖石力學與工程學報
암석역학여공정학보
CHINESE JOURNAL OF ROCK MECHANICS AND ENGINEERING
2014年
9期
1925-1931
,共7页
岳松林%邱艳宇%范鹏贤%王德荣%张宁%王源
嶽鬆林%邱豔宇%範鵬賢%王德榮%張寧%王源
악송림%구염우%범붕현%왕덕영%장저%왕원
岩石力学%爆破%爆炸成坑机制%敏感性分析%重力加速度%相似规律%离心机
巖石力學%爆破%爆炸成坑機製%敏感性分析%重力加速度%相似規律%離心機
암석역학%폭파%폭작성갱궤제%민감성분석%중력가속도%상사규률%리심궤
rock mechanics%blasting%mechanism of cratering explosion%sensitivity analysis%gravitational acceleration%similitude law%centrifugal machine
基于相似理论,推得爆炸成坑相似规律,建立爆破漏斗坑因变量与自变量之间的量纲一化的方程。阐述离心机试验系统和真空室试验系统模拟岩石中爆炸成坑的试验原理,通过参数敏感性分析,揭示2种试验系统各自的特点。离心机模型试验系统中吊篮尺寸与比例埋深、模型装药量成正比;离心加速度与原型装药量、模型装药量成正比;对模型材料、外部气压环境、爆源无特殊要求;因而离心机模型试验系统模拟小当量、浅埋深的爆炸试验具有明显的优势,不能用于模拟大规模的爆炸试验。真空室模型试验方法具有可控性强、无需提供额外加速度和适用范围广的特点,模拟大规模爆炸成坑现象时具有明显的优势;但其物理模型不包括岩石在爆炸作用下的动力破碎过程,不能模拟爆炸空腔形成过程和地冲击效应。
基于相似理論,推得爆炸成坑相似規律,建立爆破漏鬥坑因變量與自變量之間的量綱一化的方程。闡述離心機試驗繫統和真空室試驗繫統模擬巖石中爆炸成坑的試驗原理,通過參數敏感性分析,揭示2種試驗繫統各自的特點。離心機模型試驗繫統中弔籃呎吋與比例埋深、模型裝藥量成正比;離心加速度與原型裝藥量、模型裝藥量成正比;對模型材料、外部氣壓環境、爆源無特殊要求;因而離心機模型試驗繫統模擬小噹量、淺埋深的爆炸試驗具有明顯的優勢,不能用于模擬大規模的爆炸試驗。真空室模型試驗方法具有可控性彊、無需提供額外加速度和適用範圍廣的特點,模擬大規模爆炸成坑現象時具有明顯的優勢;但其物理模型不包括巖石在爆炸作用下的動力破碎過程,不能模擬爆炸空腔形成過程和地遲擊效應。
기우상사이론,추득폭작성갱상사규률,건립폭파루두갱인변량여자변량지간적량강일화적방정。천술리심궤시험계통화진공실시험계통모의암석중폭작성갱적시험원리,통과삼수민감성분석,게시2충시험계통각자적특점。리심궤모형시험계통중조람척촌여비례매심、모형장약량성정비;리심가속도여원형장약량、모형장약량성정비;대모형재료、외부기압배경、폭원무특수요구;인이리심궤모형시험계통모의소당량、천매심적폭작시험구유명현적우세,불능용우모의대규모적폭작시험。진공실모형시험방법구유가공성강、무수제공액외가속도화괄용범위엄적특점,모의대규모폭작성갱현상시구유명현적우세;단기물리모형불포괄암석재폭작작용하적동력파쇄과정,불능모의폭작공강형성과정화지충격효응。
The similitude law and the dimensionless equations of cratering explosions were derived. Some basic principles essential to the centrifugal modeling system and the vacuum chamber modeling system were described according to the similitude law of cratering explosions. Some characteristics of the two kind modeling systems were revealed through the parametrical sensitivity analyses. The sizes of centrifugal modeling box are proportional to both the scaled depth-of-burial(SDOB) and the scaled explosive weight,and the centrifugal acceleration is proportional to both the prototype explosive weight and scaled explosive weight. There are no special requirements about the modeling materials,the external pressures and the explosion source. Generally,the centrifugal modeling system has clear advantages in simulating the small-scale and shallow-depth explosions;while it can not simulate the large-scale explosions. Actually,the vacuum chamber modeling system is more controllable and variable as there is no need to provide additional acceleration. Therefore,the vacuum chamber modeling system has superiorities in simulating the large-scale cratering explosions;but it does not consider the physical process of rock crushing and can not simulate the cavity formations and the impact effects.