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1)  rebounding-off blasting
蓄能爆破
1.
Study on the rebounding hypothesis of blasting mechanism and rebounding-off blasting;
爆破机理的回弹假说与蓄能爆破技术研究
2)  Pushing-wall blasting
协能爆破
3)  shaped charge
聚能爆破
1.
It is stated by authors that the multiple drilling technology of shaped charge and normal drilling methods can be applied in practice of large diameter drilling in hard rock after analyzing the merits and defects of normal drilling methods in large diameter drilling in hard rock and discussion of the principle and influential factors of shaped charge.
通过对大直径硬岩钻进中常用钻进方法优缺点的分析,结合对聚能爆破原理和影响因素的探讨,提出在大直径硬岩钻进中采用聚能爆破和普通钻进方法相结合的复合钻进工艺,指出了聚能爆破在大直径硬岩钻进中具有广阔的应用前
4)  energizing blasting
聚能爆破
1.
In this paper the method combined with energizing blasting and hydrochloric acid well washing and its principle in elevating outflow of limestone well are discussed.
论述了聚能爆破与盐酸联合洗井提高石灰岩水井出水量的原理及方法。
2.
In this paper the effect method of energizing blasting is proposed to clean the ashsendimentary layers in the ash transport pipelines.
本文提出了聚能爆破清除输灰管内灰垢的有效方法。
5)  accumulative blasting
聚能爆破
1.
Study and application of accumulative blasting in open-pit mine;
聚能爆破在某露天矿的应用与研究
2.
The viewpoint that accumulative blasting is a feasible technology of improving current presplit blasting, and it can realize a meticulous excavation blasting, because the accumulative blasting is not based on experience design but fracture mechanics.
本文通过分析及试验提出聚能爆破技术是目前预裂爆破技术改进完善的可行道路 ,有助于“精雕细刻”开挖爆破技术的实现。
6)  cumulative blasting
聚能爆破
1.
Study on spliting mechanism of coal bed deep-hole cumulative blasting to improve permeability;
煤层深孔聚能爆破致裂增透机理研究
2.
Research on splitting technical of coal bed deep-hole cumulative blasting to improve permeability
煤层深孔聚能爆破致裂增透工艺研究
3.
It describes the blasting methods and technology,and practicable cumulative blasting technology according to the features of ever\|frost ground.
介绍了青藏高原多年冻土地带铁路试验工程中有关爆破方面的研究成果 ,针对多年冻土的特征 ,重点论述了爆破方法与工艺及先进实用的聚能爆破技
补充资料:巴斯康蒂抽水蓄能电站
巴斯康蒂抽水蓄能电站
Bath County Pumped Storage Power Station

    位于美国弗吉尼亚州西北部,20世纪80年代是世界上装机容量最大的抽水蓄能电站。装机容量210万千瓦。厂房为半地下式,发电设计水头329米,抽水设计扬程335米,抽水最大流量 116米3/秒。上水库土石坝最大坝高140米 ,坝顶长731米。总库容4400万米3。下水库土石坝最大坝高41米,坝顶长690米,总库容3760万米 3。引水系统包括岸坡式取水口、引水平洞、竖井、压力隧洞、压力钢管和调压井等 。工程于1975年开工,1985年投产。
    
   

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