Cramér–von Mises criterion: Difference between revisions

From formulasearchengine
Jump to navigation Jump to search
en>Dicklyon
dash fixes
 
→‎References: remove extra period creating a syntax error
Line 1: Line 1:
Ed is what individuals contact me and my wife doesn't like it at all. To play lacross is the factor I psychic love readings ([http://conniecolin.com/xe/community/24580 http://conniecolin.com/xe/community/24580]) most of all. Since I was eighteen I've been working as a bookkeeper but quickly my spouse and I will start our own business. My spouse and I reside in Mississippi and I adore each working day living here.
{{underlinked|date=November 2012}}
 
'''Shock factor''' is a commonly used figure of merit for estimating the amount of shock experienced by a naval target from an [[underwater explosion]] as a function of  explosive charge weight, [[slant range]], and depression angle (between vessel and charge).
 
<math>SF = {\sqrt (W) \over  R} {{(1+sin \phi)} \over 2}</math>
 
* ''R'' is the slant range in feet
* ''W'' is the equivalent [[TNT]] charge weight in pounds = charge weight (lbs) · [[Relative effectiveness|Relative effectiveness factor]]
* <math>\phi</math> is the depression angle between the hull and [[warhead]].
 
The application scenario for Equation 1 is illustrated by Figure 1.
 
{|
!width="20"|
!width="200"|
|-
|
|[[Image:ShockFactor.png|noframe]]
|-
|
|align="center"|'''Figure 1: Shock Factor Application Scenario.'''
|}
 
The numeric result from computing the shock factor has no physical meaning, but it does provide a value that can be used to estimate the effect of an underwater blast on a vessel. Table 2 describes the effect of an explosion on a vessel for a range of shock factors.<ref name="sf_exp">{{cite book | first= Terrence| last= Nawara|date=September 2003| title= Exploratory Analysis Of Submarine Tactics For Mine Detection And Avoidance| publisher= Naval Postgraduate School| location= Monterey, CA | accessdate=2006-06-10 | url= http://library.nps.navy.mil/uhtbin/hyperion/03sep%5FNawara.pdf }}</ref>
 
::{| class="wikitable"
|+''' <span style="color:blue;"> Table 1: Shock Factor Table of Effects </span>'''
|-
! Shock Factor !! Damage
|-
! < 0.1
| Very limited damage. Generally considered insignificant.
|-
! 0.1 - 0.15
| Lighting failures; electrical failures; some pipe leaks; pipe ruptures possible.
|-
! 0.15 - 0.20
| Increase in occurrence of damage above;Pipe rupture likely; machinery failures;
|-
! 0.2
| General machinery damage
|-
! ≥ 0.5
| Usually considered lethal to a ship
|}
 
==Background==
 
The idea behind the shock factor is that an explosion close to a ship generates a shock wave that can impart sudden vertical motions to a ship's hull and internal systems. Many of the internal mechanical systems (e.g. engine coupling to prop) require precise alignment in order to operate. These vibrations upset these critical alignments and render these systems inoperative. The vibrations can also destroy lighting and electrical components, such as relays.
 
The explosion also generates a gas bubble that undergoes expansion and contraction cycles. These cycles can introduce violent vibrations into a hull, generating structural damage, even to the point of breaking the ship's [[keel]]. In fact, this is a goal of many undersea weapon systems.<ref name = "MK48">{{cite web | title=MK 48 Torpedo Firing| work=Jane's Information Group| url=http://www.janes.com/defence/naval_forces/gallery/slideshow_010202.shtml| accessdate=2006-06-11 |archiveurl = http://web.archive.org/web/20060427035918/http://www.janes.com/defence/naval_forces/gallery/slideshow_010202.shtml <!-- Bot retrieved archive --> |archivedate = 2006-04-27}}</ref> The magnitude of an explosion's effects have been shown through empirical and theoretical analyses to be related to the size of the explosive charge, the distance of the charge from the target, and the angular relationship of the hull to the shock wave.<ref name="wep_eff">{{cite book| editor=Naval Sea Systems Command|title= Introduction to Weapon Effects for Ships (Metric)| url= http://www.combatindex.com/mil_docs/pdf/hdbk/0200/MIL-HDBK-297.pdf| accessdate=2006-06-10 | publisher= US Department of Defense| location= Washington, DC| id= MIL-HDBK-297(SH)|format=PDF}}</ref>
 
==References==
{{Reflist}}
 
{{DEFAULTSORT:Shock Factor}}
[[Category:Explosives]]

Revision as of 02:51, 2 September 2013

Template:Underlinked

Shock factor is a commonly used figure of merit for estimating the amount of shock experienced by a naval target from an underwater explosion as a function of explosive charge weight, slant range, and depression angle (between vessel and charge).

The application scenario for Equation 1 is illustrated by Figure 1.

noframe
Figure 1: Shock Factor Application Scenario.

The numeric result from computing the shock factor has no physical meaning, but it does provide a value that can be used to estimate the effect of an underwater blast on a vessel. Table 2 describes the effect of an explosion on a vessel for a range of shock factors.[1]

Table 1: Shock Factor Table of Effects
Shock Factor Damage
< 0.1 Very limited damage. Generally considered insignificant.
0.1 - 0.15 Lighting failures; electrical failures; some pipe leaks; pipe ruptures possible.
0.15 - 0.20 Increase in occurrence of damage above;Pipe rupture likely; machinery failures;
0.2 General machinery damage
≥ 0.5 Usually considered lethal to a ship

Background

The idea behind the shock factor is that an explosion close to a ship generates a shock wave that can impart sudden vertical motions to a ship's hull and internal systems. Many of the internal mechanical systems (e.g. engine coupling to prop) require precise alignment in order to operate. These vibrations upset these critical alignments and render these systems inoperative. The vibrations can also destroy lighting and electrical components, such as relays.

The explosion also generates a gas bubble that undergoes expansion and contraction cycles. These cycles can introduce violent vibrations into a hull, generating structural damage, even to the point of breaking the ship's keel. In fact, this is a goal of many undersea weapon systems.[2] The magnitude of an explosion's effects have been shown through empirical and theoretical analyses to be related to the size of the explosive charge, the distance of the charge from the target, and the angular relationship of the hull to the shock wave.[3]

References

43 year old Petroleum Engineer Harry from Deep River, usually spends time with hobbies and interests like renting movies, property developers in singapore new condominium and vehicle racing. Constantly enjoys going to destinations like Camino Real de Tierra Adentro.

  1. 20 year-old Real Estate Agent Rusty from Saint-Paul, has hobbies and interests which includes monopoly, property developers in singapore and poker. Will soon undertake a contiki trip that may include going to the Lower Valley of the Omo.

    My blog: http://www.primaboinca.com/view_profile.php?userid=5889534
  2. Template:Cite web
  3. 20 year-old Real Estate Agent Rusty from Saint-Paul, has hobbies and interests which includes monopoly, property developers in singapore and poker. Will soon undertake a contiki trip that may include going to the Lower Valley of the Omo.

    My blog: http://www.primaboinca.com/view_profile.php?userid=5889534