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A process for the seismic sea bottom necessary in addition to conventional devices for the carrying out the method

机译:除了执行该方法的常规设备外,还必须进行地震海底的处理

摘要

1,248,431. Seismic cartridges. HERCULES Inc. 8 Oct., 1968 [9 Oct., 1967 ; 29 April 1968], No. 47697/68. Heading F3A. [Also in Division H4] Seismic energy is generated underwater by feeding a percussion-initiated explosive charge to a submerged firing device, and initiating the charge in the device. The towed firing device of Fig. 1 comprises housing 10 having a muzzle 18 to which explosive cartridges (shown dotted) are fed one at a time from a ship-borne water-pressure-actuated loader via a conduit and inlet 99. The cartridges are detained in muzzle 18 by a ridge or groove on the cartridge abutting a corresponding shoulder 37 or sprung member on the muzzle. An assembly 19 comprising three coaxial pistons 21, 22, 23 is actuated by a ship-borne hydraulic pump and air compressor system operated in synchronism with the cartridge loader such that (a) when a cartridge has been loaded into muzzle 18, piston 22 is advanced hydraulically until its head member 44 (carrying retracted firing pin 85) engages the cartridge to hold it steady in the muzzle, (b) piston 23 is then advanced by air pressure to drive the firing pin 85 forward and so percussion-initiate the cartridge (which incorporates a detonation-delay device), (c) piston 21 advances shortly after piston 23 and drives piston 23 further forward to punch the cartridge through muzzle 18 so that it detonates outside the firing device and (d) the pistons are then retracted. Air pressure may be used to eject any water from housing 10 via valves connected at 107, 108. The firing unit may be maintained at a given depth by paravanes, and a hydrophone streamer may also be depth-controlled. The uniformity of the generated seismic energy pulses permits computer processing of recorded hydrophone signals to eliminate " bubble pulse " effects. Details are given of various alternative firing devices in which (a) a modified cartridgedetaining and ejecting arrangement is used or no such arrangement is used (the cartridge initiation and ejection being concurrent), (b) assembly 19 comprises two pistons only, or a single piston (which may be spring driven), or (c) no pistons are used and the cartridges are fed from the loader down a conduit from which they emerge, to impact a plate, thus initiating the charge, and then fall away from the plate. The cartridge of Fig. 5 comprises a metal shell 112SP11/SP containing main charge 122SP11/SP and closed by a recessed cap 117SP1/SP with a well which supports a primer assembly 127SP1/SP. The main charge is a mixture of an inorganic oxidizer salt, a fuel and a sensitizer. The oxidizer salt is one or more of the alkali metal or alkaline earth metal nitrates or perchlorates, or ammonium nitrate or perchlorate; the fuel is fuel oil, ground coal, granular aluminium or a mixture thereof; the sensitizer is DNT oil, DNT solids, particulate aluminium (partly in flake form) or mixtures thereof and may also include powdered coal, fuel oil, ferrosilicon or ferrophosphorous. The primer assembly 127SP1/SP comprises a percussionignitable charge in head portion 131aSP1/SP (e.g. a rim-fired or centre-fired empty primed rifle cartridge), a delay fuse (optional) 143SP1/SP (giving a ¢ to 1¢ second delay), a primer charge 137aSP1/SP, 137cSP1/SP, and a base charge 128SP1/SP. Flame from the percussion ignitable charge ignites the delay fuse which burns and in turn detonates the primer charge to cause detonation of the base charge. The percussion-ignitable charge comprises potassium perchlorate, lead styphnate, mercury fulminate, antimony sulphide, lead azide or mixtures thereof. The delay fuse 143SP1/SP comprises mixtures of lead oxide/boron, red lead/ boron, barium peroxide/tellurium/selenium, barium peroxide/selenium, or barium peroxide/tellurium. The primer charge comprises lead azide, mercury fulminate or diazodinitrophenol; a preferred primer is a wafer 137aSP1/SP of compressed diazodinitrophenol which is ignited by flame from the delay fuse and which detonates a capsule of loose diazodinitrophenol 137cSP1/SP. The base charge 128SP1/SP comprises PETN, pentolite, cyclonite, tetryl, RDX or cyclotol. Bead 124SP1/SP or a rim on the cap 117SP1/SP serves to detain the cartridge in the firing device. In a modification, cap 117SP1/SP is not recessed. Numerical examples are given for cartridge dimensions and quantities of the contents.
机译:1,248,431。地震药筒。 HERCULES Inc.,1968年10月8日[1967年10月9日; 1968年4月29日],第47697/68号。标题F3A。 [也在H4分区中]通过将由撞击产生的爆炸装药馈入水下发射装置并在装置中引发装药,在水下产生地震能。图1的拖曳式射击装置包括具有枪口18的壳体10,枪口一次由船载水压致动的装载器通过导管和入口99一次供给炸药盒(图中虚线所示)。通过弹药筒上的脊或凹槽抵靠在枪口18中的相应肩部37或弹力构件而将其保持在枪口18中。包括三个同轴活塞21、22、23的组件19由船载液压泵和空气压缩机系统致动,该系统与药筒装载器同步运行,使得(a)当药筒已装入枪口18时,活塞22液压推动其前进,直到其头部44(携带缩回的撞针85)与药筒接合,以将其稳定地保持在枪口中,(b)然后通过气压推动活塞23向前推动撞针85,从而以冲击方式启动药筒(装有爆震延迟装置),(c)活塞21在活塞23之后不久前进,并进一步推动活塞23向前穿过炮口18打药筒,使药筒在发射装置外引爆,然后(d)活塞缩回。可以使用气压通过连接在107、108处的阀门将水从壳体10排出。点火单元可以通过导流罩保持在给定的深度,并且水听器拖缆也可以进行深度控制。产生的地震能量脉冲的均匀性允许对记录的水听器信号进行计算机处理,以消除“气泡脉冲”效应。给出了各种可选的发射装置的细节,其中(a)使用了改进的弹药筒保持和弹出装置,或者不使用这种装置(弹药筒启动和弹出是同时进行的),(b)组件19仅包括两个活塞,或单个活塞(可能是弹簧驱动的),或者(c)不使用活塞,并且将弹药筒从装载机向下输送到弹药筒,从弹药筒撞击板,从而开始装药,然后从板跌落。图5的弹药筒包括金属壳112 11 ,其包含主装药122 11 ,并由具有孔的凹入式盖117 1 封闭。支撑底漆组件127 1 。主电荷是无机氧化剂盐,燃料和敏化剂的混合物。氧化剂盐是碱金属或碱土金属的硝酸盐或高氯酸盐中的一种或多种,​​或硝酸铵或高氯酸盐中的一种或多种;燃料是燃料油,磨煤,颗粒状铝或其混合物;敏化剂是DNT油,DNT固体,颗粒状铝(部分呈薄片状)或它们的混合物,还可以包括粉状煤,燃料油,硅铁或磷铁。底漆组件127 1 在头部131a 1 中包含可敲击的炸药(例如,边缘点火或中心点火的空底注药步枪弹药筒),延时保险丝(可选) 143 1 (延迟时间为¢到1¢),引物电荷137a 1 ,137c 1 和基本电荷128 1 。敲击式可燃炸药的火焰点燃延时保险丝,该保险丝燃烧,继而引爆引爆药,引爆基础炸药。可敲击的可燃炸药包括高氯酸钾,苯甲酸铅,富铝酸汞,硫化锑,叠氮化铅或它们的混合物。延迟熔断器143 1 包括氧化铅/硼,红铅/硼,过氧化钡/碲/硒,过氧化钡/硒或过氧化钡/碲的混合物。底漆装料包括叠氮化铅,叶酸汞或重氮二硝基苯酚。优选的底漆是压缩的重氮二硝基苯酚的晶片137a 1 ,其由延迟保险丝的火焰点燃,并引爆松散的重氮二硝基苯酚137c 1 的胶囊。基本装料128 1 包括PETN,膨润土,盘旋石,石,RDX或环酚。珠子124 1 或盖117 1 上的边缘用于将子弹保留在发射装置中。在一个变型中,盖117 1 没有凹进。给出了数值示例,说明墨盒的尺寸和所装物品的数量。

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