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1.
爆破荷载作用下岩体振动特征的数值模拟   总被引:41,自引:2,他引:39  
根据福建牛头山水电站地基岩体爆破开挖监测,运用离散元方法模拟了节理岩体距爆源不同距离处质点的振动速度和频率的变化特征,由此确定岩体质点最大振动速度和振动主频随爆源距离的衰减规律,并得到了距爆源一定距离处质点最大振动速度和振动主频与爆破药量的关系。数值模拟与现场实测的结果表明,用离散元软件UDEC计算得到的岩体振动特征和衰减规律与现场监测结果是基本符合的,误差在工程应用的允许范围之内,因此UDEC用于对岩体动态响应的数值模拟是适合的。  相似文献   

2.
龙滩水电站右岸导流洞开挖中爆破损伤范围研究   总被引:10,自引:0,他引:10  
根据确定岩石爆破中爆源近区的质点峰值震动速度衰减规律的波动方法,导出了岩石爆破中岩体损伤范围的计算式。结合岩体爆破损伤的质点峰值震动速度安全判据,就龙滩水电站右岸导流洞爆破开挖工程中岩体损伤范围进行了计算,并对理论计算结果与围岩损伤范围的声波法检测结果进行了对比与分析。  相似文献   

3.
凹形地貌对爆破振动波传播影响的数值模拟   总被引:6,自引:1,他引:5  
应用UDEC程序模拟了爆破振动波在凹形地貌中的传播特征,并与广东岭澳核电站2期基础爆破开挖现场监测结果进行了对比。对比分析结果表明,数值模拟结果与现场监测结果较为吻合。研究结果还揭示,凹形地貌对爆破振动波具有明显的衰减作用,质点水平向振动速度的衰减幅度大于质点垂直向。同时,衰减系数随凹形地貌深度、宽度的增加而增加,但随宽度增加的幅度较小。另外,爆破振动波的衰减系数随爆源距增加而减小,随最大段药量的增大而增大。  相似文献   

4.
损伤条件下深部岩体巷道光面爆破参数研究   总被引:3,自引:0,他引:3  
付玉华  李夕兵  董陇军 《岩土力学》2010,31(5):1420-1426
岩体条件复杂多变,为了提高光面爆破的适应性、改善光面爆破效果,对损伤条件下深部岩体巷道光面爆破参数进行研究。通过对深部岩体巷道光爆层原岩应力场、光面爆破机制和振动损伤特征进行分析,基于爆炸应力波和爆生气体综合作用理论,考虑高原岩应力和岩石损伤影响,提出了损伤条件下深部岩体巷道光面爆破参数确定的计算方法。研究表明, (1)高原岩应力相当于提高了岩石的抗拉强度,不利于炮孔初始裂纹的形成及贯通,宜减小周边眼间距;(2)岩石损伤后,其他条件不变,光面爆破的炮孔间距和抵抗线值可适当加大;(3)高原岩应力和损伤条件下,光面爆破的炮孔间距较小时,容易造成爆后围岩损伤,降低围岩的稳定性能,因此,提高爆破效果的同时应及时加强支护,以确保施工安全和围岩稳定;(4)本文提出的光面爆破参数计算公式,经现场爆破验证效果良好,适用于复杂多变的岩体环境。  相似文献   

5.
以三峡堤防工程基础开挖为研究对象,对堤防工程基础开挖爆破地震波的振动监测方法和监测物理量的选择进行了研究。通过对爆破振动监测结果的回归分析,确立了爆破振动速度的传播衰减规律。结合工程实际,对基础开挖爆破产生的地震波的振动频率与爆区周围建(构)筑物的自振频率进行了对比分析;经对比分析,此次开挖工程爆破引起的振动频率远大于周围民房结构的自振频率,从而保证了周围建(构)筑物的安全。同时,结合该堤防工程开挖爆破施工,从建(构)筑物的安全振动速度和爆破振动的安全距离两个方面确定了爆破振动安全控制建议标准。研究分析表明,本次爆破工程的振动速度和安全距离都在爆破振动安全控制标准的范围内,从而说明了本次爆破工程圆满安全地完成了施工任务,保证了爆破时周边建(构)筑物的安全;其研究对指导基础开挖爆破施工和保证地面建筑物安全起到了重要作用。  相似文献   

6.
锦屏二级水电站引水隧洞爆破开挖损伤特性研究   总被引:1,自引:0,他引:1  
陈明  胡英国  卢文波  严鹏  周创兵 《岩土力学》2011,32(Z2):172-177
爆破开挖导致的围岩损伤是围岩稳定性的重要影响因素。采用数值分析及现场检测的方法研究了锦屏二级引水隧洞岩体爆破开挖损伤特性。数值模拟结果表明,引水隧洞开挖引起的围岩应力重分布是围岩损伤的主要原因,爆炸荷载和应力重分布的耦合作用将增大引水隧洞围岩损伤区范围,增大的损伤深度可达1.5 m,考虑开挖荷载瞬态卸荷动态损伤效应的损伤区范围最大,较单独考虑围岩地应力准静态重分布所导致的损伤深度可增大1.9 m,平均损伤深度增大近1倍。现场检测成果较好地验证了数值模拟结果,表明爆破开挖可显著增大围岩的损伤范围。锦屏二级水电站引水隧洞开挖过程中,不可忽视爆炸荷载及开挖瞬态卸荷对围岩的损伤作用。  相似文献   

7.
陈明  胡英国  卢文波  严鹏  周创兵 《岩土力学》2011,32(5):1531-1537
爆破开挖扰动是深埋隧洞损伤区孕育及演化的重要影响因素。根据隧洞岩体钻爆开挖过程分析了爆炸荷载及开挖荷载瞬态卸荷对岩体的扰动作用,基于LS-DYNA动力有限元程序,提出了利用施加节点反力模拟待开挖隧洞岩体的约束作用,通过控制节点反力的变化过程以模拟开挖荷载瞬态卸荷,采用爆炸荷载变化曲线模拟爆炸作用过程的爆破开挖扰动数值模拟方法,并利用该方法模拟分析了爆破开挖扰动对围岩的损伤效应,结果表明,应力重分布对围岩损伤最大,隧洞围岩损伤区主要由围岩初始应力重分布所导致,爆炸荷载作用将增大围岩损伤区范围,考虑开挖荷载瞬态卸荷作用的围岩损伤区最大,且地应力越高,开挖荷载瞬态卸荷作用对围岩的损伤效应越显著  相似文献   

8.
锦屏一级水电站大坝为双曲拱坝,设计坝高305m,拱坝建基岩体以Ⅱ、Ⅲ1级岩体为主,开挖过程中岩体质量受爆破开挖影响发生程度不等的损伤。为定量评价岩体质量损伤等级,利用开挖爆破检测成果,采用开挖后岩体松弛深度、松弛岩体开挖前后单孔声波衰减率作为岩体质量损伤分级评价的指标,探索一种快速检测、评价岩体质量损伤等级的划分标准,完成坝基开挖后岩体质量损伤的分级分区评价,提出不同损伤等级处理的建议,并评价处理效果。  相似文献   

9.
隧洞开挖重复爆炸荷载作用下围岩累积损伤特性   总被引:1,自引:0,他引:1  
杨建华  卢文波  胡英国 《岩土力学》2014,299(2):511-518
隧洞毫秒爆破开挖推进过程中,预留岩体在重复爆炸荷载作用下产生不可逆的损伤叠加。而现有的岩体爆破损伤数值模拟基本都是针对单孔装药和单段爆破,很少涉及实际工程中的重复爆炸。基于LS-DYNA程序的用户自定义材料接口,将统计损伤演化模型嵌入到弹塑性本构材料中,模拟圆形隧洞全断面毫秒爆破过程中重复爆炸荷载作用下的岩体累积损伤效应,并考虑地应力对岩体爆破损伤的影响。计算结果表明,围岩损伤范围和损伤程度随重复爆炸荷载次数而增加,在一个爆破进尺内,围岩损伤的临界峰值质点振动速度较单段爆破降低了12%;爆炸荷载作用下,围岩主要表现为拉损伤,围岩地应力对爆破张拉效应起到非常敏感的"抑制"作用,在210 MPa应力水平时,围岩爆破累积损伤范围随着应力增加而明显减小,围岩损伤的临界峰值质点振动速度增加24%10 MPa应力水平时,围岩爆破累积损伤范围随着应力增加而明显减小,围岩损伤的临界峰值质点振动速度增加24%57%。  相似文献   

10.
考虑累积损伤效应的围岩变形特性研究   总被引:1,自引:0,他引:1  
罗忆  李新平  徐鹏程  董千  洪吉松 《岩土力学》2014,35(11):3041-2048
隧道爆破开挖诱发的动力扰动作用范围往往远大于其开挖进尺,同一部位围岩受到循环爆破开挖的多次扰动普遍存在累积损伤。对乌东德水电站左岸导流洞爆破开挖过程中的爆破振动和围岩变形监测进行了监测和数值分析,基于累积损伤理论,通过引入损伤判据及损伤变量,考虑计算中产生的不同程度的损伤区域的岩体参数劣化,并将劣化后的参数引入相应损伤单元进行后续开挖爆破数值模拟计算,从而对岩体爆破开挖累积损伤效应进行模拟。通过比较乌东德水电站导流洞的实测数据以及数值模拟计算结果发现,考虑累积损伤的计算结果无论是爆破振动速度还是围岩变形均更接近于实测值。对爆破开挖的分析模拟中应考虑围岩的多次循环爆破累积损伤效应。  相似文献   

11.
上下交叉隧道爆破振动控制技术研究   总被引:1,自引:0,他引:1  
钻爆法是隧道开挖中一种主要的施工方法,爆破开挖不可避免会对围岩产生扰动。以新建走马岗隧道上穿东深供水走马岗引水隧洞工程为背景,开展上下交叉隧道爆破振动控制技术研究。选取与交叉段岩性一致的爆破施工开挖区域进行爆破振动监测,得到了现场爆破施工方案条件下走马岗隧道爆破振动规律。对实测数据进行回归分析,计算得出走马岗地区爆破质点峰值振动速度(PPV)的Sadovsk公式,反演得到控制爆破振动的最大掏槽药量及安全距离,制定出交叉段施工的安全控制范围以及相应的爆破方案。通过数值模拟进行了验证并付于交叉段现场施工。现场监测数据表明,提出的振速控制标准及爆破方案符合安全要求,保证了在建隧道的顺利开挖以及既有隧道的安全运行。研究成果可为类似工程爆破开挖及振动控制提供参考。  相似文献   

12.
Tunnels are required to be constructed for meeting different human needs such as power generation, transportation, underground storage, sewage etc. The predominant method of excavation, world over, is drilling and blasting owing to its capability to meet changing geo-technical conditions. Irrespective of the purpose for which the tunnels are driven, all are plagued by overbreak problems. Tunnels driven for water conveyance in hydroelectric power projects, in particular, need to be excavated with minimum overbreak to minimise cost of permanent concrete lining. Thus, predicting overbreak assumes significant importance to design site-specific blasts for minimizing rock damage. This paper presents a brief review of existing PPV (Peak Particle Velocity) based blast-induced rock damage estimation criteria and attempts to outline the ground vibration threshold levels for overbreak/rock damage in a tunnel driven through compact basalt. Rock damage manifested as overbreak is measured and correlated with the possible threshold levels of PPV. Also, the PPV levels for crack initiation and widening are proposed. The case pertains to a lake tap horizontal tunnel of Koyna Hydro-electric Power Project, India which is a water feeder tunnel for a fully underground hydroelectric power project. The tunnel was driven under a shallow rock cover of average depth ranging from 20 to 25m beneath a fully charged water body. The parting rock is mainly compact basalt. Blasting was carried out in two rounds in a controlled manner, i.e., by limiting the maximum charge per delay based on ground vibration monitoring. Ground vibration generated with free face (in second round) has been modeled and a new ground vibration propagation equation is proposed for tunnel blasting including the effect of an extra free face. The threshold limits of PPV for different degrees of overbreak/rock damage are proposed from extrapolated vibration predictor equation. The actual overbreak in the tunnel, measured using a Planimeter, varied from 2.45 per cent to 17.75 per cent of the finished tunnel area. The predicted overbreak from extrapolated PPV measurements is compared against the measured overbreak to validate the proposed blast-induced rock damage (BIRD) assessment model. The PPV level for overbreak was found to exceed 2050 mm/s in compact basalt. A linear relationship between the overbreak and maximum charge per delay is also established to design a tunnel blast in similar formations.  相似文献   

13.
隧道开挖施工的爆破振动监测与控制技术   总被引:24,自引:0,他引:24  
以万松岭隧道工程开挖为研究对象,对隧道工程开挖施工爆破地震波的振动监测方法及控制技术进行了研究。通过对爆破振动监测结果的回归分析,建立了隧道工程开挖爆破振动传播的数学模型;确立了其传播衰减规律。结合工程实际,提出了修正后的爆破地震波衰减经验数学公式;经对比分析,所得爆破地震波衰减规律公式预测的质点振动速度具有较高的精度。同时,结合该隧道工程开挖爆破施工,从选择合理爆破时差、最大装药量、微差起爆、掘进进尺、预裂爆破等5个方面提出了爆破振动控制技术措施使该隧道开挖施工爆破中的地面振动速度值控制在了安全范围以内,从而确保了施工段地面建筑群的安全和该隧道工程开挖爆破作业的安全。其研究对指导隧道工程开挖爆破施工和保证地面建筑物安全起到了重要作用。  相似文献   

14.
Ground vibration due to blasting causes damages in the existence of the surface structures nearby the mine. The study of vibration control plays an important role in minimizing environmental effects of blasting in mines. Ground vibration regulations primarily rely on the peak particle velocity (PPV, mm/s). Prediction of maximum charge weight per delay (Q, kg) by distance from blasting face up to vibration monitoring point as well as allowable PPV was proposed in order to perform under control blasting and therefore avoiding damages on structures nearby the mine. Various empirical predictor equations have proposed to determine the PPV and maximum charge per delay. Maximum charge per delay is calculated by using PPV predictors indirectly or Q predictor directly. This paper presents the results of ground vibration measurement induced by bench blasting in Sungun copper mine in Iran. The scope of this study is to evaluate the capability of two different methods in order to predict maximum charge per delay. A comparison between two ways of investigations including empirical equations and artificial neural network (ANN) are presented. It has been shown that the applicability of ANN method is more promising than any under study empirical equations.  相似文献   

15.
Excavation of coal, overburden, and mineral deposits by blasting is dominant over the globe to date, although there are certain undesirable effects of blasting which need to be controlled. Blast-induced vibration is one of the major concerns for blast designers as it may lead to structural damage. The empirical method for prediction of blast-induced vibration has been adopted by many researchers in the form of predictor equations. Predictor equations are site specific and indirectly related to physicomechanical and geological properties of rock mass as blast-induced ground vibration is a function of various controllable and uncontrollable parameters. Rock parameters for blasting face and propagation media for blast vibration waves are uncontrollable parameters, whereas blast design parameters like hole diameter, hole depth, column length of explosive charge, total number of blast holes, burden, spacing, explosive charge per delay, total explosive charge in a blasting round, and initiation system are controllable parameters. Optimization of blast design parameters is based on site condition and availability of equipment. Most of the smaller mines have predesigned blasting parameters except explosive charge per delay, total explosive charge, and distance of blast face from surface structures. However, larger opencast mines have variations in blast design parameters for different benches based on strata condition: Multivariate predictor equation is necessary in such case. This paper deals with a case study to establish multivariate predictor equation for Moher and Moher Amlohri Extension opencast mine of India. The multivariate statistical regression approach to establish linear and logarithmic scale relation between variables to predict peak particle velocity (PPV) has been used for this purpose. Blast design has been proposed based on established multivariate regression equation to optimize blast design parameters keeping PPV within legislative limits.  相似文献   

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