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UNDERWATER EXPLOSIONS PART 5. MINIMUM WEIGHT OF AN EXPLOSIVE CHARGE FOR THE RELIABLE ENERGY MESUREMENTS

机译:水下爆炸部分5.可靠能量测量的爆炸性收费的最小重量

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When establishing an underwater testing site for the energy measurements of the explosives, the dimensions of the measuring pool have to be measured to find out what is the maximum weight for the test charge. Secondly one has to decide the distance between the pressure gauge and the shooting point. Thirdly the pool has to be calibrated because of the reflections of the explosions by measuring the bubble periods of the calibration charges. The calibration shots can also be used to estimate the minimum weight of the explosive charge for the reliable energy measurements by calculating the shock, gas heave and total energy values and their standard deviations. Before the energy measurements can be started, the test site has to be established. The equipments of the site consist of pressure gauge, cable, measuring unit and the charges. The measuring pool also has to fulfil certain requirements concerning the depth and the free water space of the pond. The length of the measuring cable should be optimized and kept as short as possible because of the potential signal damping which may cause some interference for the shock energy measurements. It is possible to use the signal amplifiers, but if the length of the measuring cable can be optimized, there is no need for the amplifiers and the measuring system can be kept as simple as possible. One also has to make the decision what is the weight of a representative test charge. The weight of the test shots also effects to the selection of the distance between the pressure gauge and the charge. The pool calibration can be carried out by exploding a set of calibration charges, whose weight varies from a few hundred grams to several kilograms covering the whole weight range of the test charges. The test results of the pool calibration can also be used to estimate the minimum weight of an explosive charge for the reliable energy measurements.
机译:在建立爆炸物的能量测量的水下测试站点时,必须测量测量池的尺寸以找出测试电荷的最大重量。其次,必须决定压力表与射击点之间的距离。第三,由于通过测量校准电荷的气泡周期,必须校准游泳池,因此必须通过爆炸的反射。校准镜头还可用于通过计算冲击,气体升降和总能量值及其标准偏差来估计可靠能量测量的爆炸性充电的最小重量。在可以启动能量测量之前,必须建立测试站点。该部位的设备包括压力表,电缆,测量单元和电荷。测量池还必须满足有关池塘的深度和自由水域的某些要求。由于电位信号阻尼,测量电缆的长度应优化并尽可能短地保持短,这可能对冲击能量测量产生一些干扰。可以使用信号放大器,但如果可以优化测量电缆的长度,则不需要放大器,并且测量系统可以保持尽可能简单。人们也必须决定代表性测试费的重量。测试镜头的重量也效果对压力表和电荷之间的距离的选择。池校准可以通过爆炸一组校准电荷来进行,其重量从几百克变化到几公斤覆盖测试电荷的整个重量范围。池校准的测试结果也可用于估计可靠能量测量的爆炸性充电的最小重量。

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