Ordnance penetration depths










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Determination Of Penetration Depth At High

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Ballistic model for the prediction of penetration depth

Second, depth of penetration decreases as first-layer thickness increases when soil resistance of the first layer is greater than the second layer soil resistance, and penetration depth is greater than the half-space penetration depth. The two-layer scenarios are combinations of sand, silt, and clay with different first layer thicknesses. From Wikipedia, the free encyclopedia. MR Objective Technology Results Implementation Objectives of the Demonstration A reliable and acceptable method readily available to the unexploded ordnance UXO community for modeling projectile penetration is needed to help support planning munitions response efforts. Electromagnetic radiation Scattering, absorption and radiative transfer optics. For m, a higher exponent decreases the penetration a,c,e. The objective of this project was to demonstrate the functional capabilities of the software UXO-PenDepth for estimating ordnance penetration depths. Depth penetration range DPR plots are generated that provide a summary of projectile penetration depth curves over a range of impact velocities and impact angles. Fractal heterogeneities in sonic logs and low-frequency scattering attenuation. Schematic representation, including the suggested description of heterogeneities, of the different scattering regimes depending on the ratio between the seismic wavelength and the size of heterogeneities. In either case the penetration depth is found directly from the imaginary part of the material's refractive index as is detailed above. This electromagnetic field interacts with the atoms and electrons inside the material. The soil scenarios include sand, silt, and clay half-spaces with varying soil penetrability indexes that represent dry, moderate, and wet moisture conditions. Although the UXO-PenDepth user has the ability to generate an ordnance input file, some of the information needed to generate the input file requires access to databases that typically are not accessible by the general population. According to Beer-Lambert law , the intensity of an electromagnetic wave inside a material falls off exponentially from the surface as.

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Description: The inclusion of additional ordnance input files would enhance the program and be more useful to regulators and those involved in munitions response efforts. First, depth of penetration increases as first-layer thickness increases when the soil resistance of the first layer is less than the soil resistance of the second layer, and penetration depth is less than or equal to the half-space penetration depth. In either case the penetration depth is found directly from the imaginary part of the material's refractive index as is detailed above. The attenuation constant for an electromagnetic wave at normal incidence on a material is also proportional to the imaginary part of the material's refractive index n. Two primary concerns regarding implementation of UXO-PenDepth involve the acquisition of ordnance parameters, physical characteristics and firing information, and the use of an empirical soil resistance parameter. The scale is for indication only and depends on the frequency band of the survey. Input parameters include munitions type, impact velocity, impact angle, subsurface soil structure layers and thicknesses , and a soil penetrability index SNUM. In situ soil properties would be required, but could be obtained with hand-held cone penetrometers and moisture meters. A reliable and acceptable method readily available to the unexploded ordnance UXO community for modeling projectile penetration is needed to help support planning munitions response efforts. For m, a higher exponent decreases the penetration a,c,e. Electromagnetic radiation Scattering, absorption and radiative transfer optics. Although the input models range in size from 20 mm to a lb bomb, these models do not adequately represent the multitude of ordnance types found on firing ranges. It should also be noted that we are only specifying the decay of the field which may be due to absorption of the electromagnetic energy in a lossy medium or may simply describe the penetration of the field in a medium where no loss occurs or a combination of the two. Implementation Issues Two primary concerns regarding implementation of UXO-PenDepth involve the acquisition of ordnance parameters, physical characteristics and firing information, and the use of an empirical soil resistance parameter.
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