• Title/Summary/Keyword: K2 Rifle

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The Measurement of Firing Noise of K2 Rifle at Close Distance (근접 측정에 의한 K2 소총 사격음의 측정)

  • 이윤
    • Transactions of the Korean Society for Noise and Vibration Engineering
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    • v.14 no.11
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    • pp.1123-1128
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    • 2004
  • An experimental study on firing noise of K2 rifle was performed. Firing noises of K2 rifle were measured at close distance to rifle. Firing noise of K2 rifle which made in Korea, has not measured before. The measurement of firing noise at close distance is not simple, because the amplitude of firing noise is much bigger than the measuring limit of ordinary sound level meter even though it uses a signal attenuator. The measurement of firing noise at close distance is necessary for noise source positioning and for obtaining the sound power of K2 rifle. By this experimental study, the firing noise levels of K2 rifle at different positions are obtained and these data can be used to Predict the sound pressure level at any distance from muzzle of the rifle. Also these data can be used to calculate the threshold shift of gunner's ear.

A Study on K2 Rifle Recoil Measurement and Analysis for Virtual Reality Marksmanship (가상현실 사격훈련을 위한 탄종별 K2 소화기의 주퇴산출 및 분석 연구)

  • Kim, Jong-Hwan;Jin, Youngho;Kwak, Yunki
    • Journal of Korean Society for Quality Management
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    • v.48 no.1
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    • pp.13-27
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    • 2020
  • Purpose: The purpose of this study is to present a recoil measurement and analysis of K2 rifle for the development of a virtual reality marksmanship training in the Republic of Korea Army. Methods: For the recoil measurement, a test-bed is built by a barrel that has exact dimensions of K2 rifle and three piezoelectric pressure sensors mounted on the barrel. Data of over 200 rounds of 5.56mm M193 and K100 bullets are collected and analyzed from live fire experiments. For the recoil analysis, both the free recoil method and the gas exhaust aftereffect method are used to calculate a recoil velocity, momentum and kinetic energy of K2 rifle by applying the law of conservation of momentum. In addition, a new method is proposed that uses the third law of motion and the chamber pressure model for the recoil measurement Results: The results show how different between the previous and proposed methods with respect to M193 and K100 bullets of K2 rifle. In M193, the free recoil method demonstrates 1.113, 4.197, and 2.335, the gas exhaust aftereffect method computes 1.698, 6.407, and 5.441, and the proposed method calculates 0.990, 3.734, and 1.848 in recoil velocity, momentum and kinetic energy, respectively. In K100, the free recoil method demonstrates 1.190, 4.487, and 2.669, the gas exhaust aftereffect method computes 1.776, 6.699, and 5.949, and the proposed method calculates 1.060, 3.998, and 2.119 in recoil velocity, momentum and kinetic energy, respectively. Conclusion: This study implements live fire experiments to provide recoil velocity, momentum, and kinetic energy of K2 rifle using both M193 and K100 bullets. For the development of the army virtual reality marksmanship, the results in this paper would be useful to design and produce a gun and/or a rifle of virtual reality.

An Experimental Study on Shielding Apparatus for the Impulse Noise of K2 Rifle (K2소총의 사격음 차폐장치에 관한 실험적 연구)

  • Lee, Jin-Ho
    • Journal of the Korea Institute of Military Science and Technology
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    • v.13 no.3
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    • pp.486-492
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    • 2010
  • This paper studies an experimental analysis of the impulse noise of K2 rifle when its bullet passes through the large tube(length 1.84m, outer diameter 50cm, glass wool & steel). In experiment, the characteristics of the sound of shooting were different according to the way of shooting; the results of the experiment are given below. First of all, the shooting sound was lower in single-shot shooting, when compared to 3rds burst-shot shooting, difference averaging 2.8dB, 4.0dB at maximum. In short, the difference is minuscule. Secondly, the sound of the K2 rifle was diminished when shot in a tube, ranging from 2.7dB to 15.4dB, averaging 8.2dB. Thirdly, the shooting sound of the K2 rifle was diminished as the insertion depth deepened with formulas given in Fig. 5, 6. Fourthly, basic data for excluding sound of the shooting were presented. Lastly, the characteristics of the shooting sound could be equally used as a basic material for developing marksmanship and sharp-shooting detection device.

Daytime and Night-time Noise Exposure Assessment for Soldiers at a Military Rifle Range (군대 소총사격장에서 군인들의 주야간 소음노출평가)

  • Hwang, Sung Ho;Park, Jae Bum
    • Journal of Environmental Health Sciences
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    • v.39 no.4
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    • pp.354-359
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    • 2013
  • Objectives: The purpose of this study was to investigate exposure levels to K2 rifle noise at a military rifle range among soldiers in training, the left and right ears of shooters, and control managers in the day and night times. Methods: For this study, we visited military rifle ranges and measured the noise of a K2 rifle with a sound level meter (3M Quest SoundPro$^{TM}$) at four different locations with values of Peak (dB(A)) and Max (dB(A)). Results: The highest peak value of impulse noise level averaged 150.4 dB(A), ranging from 149.7 to 150.5 dB(A) at the left-ear side. Impulse noise levels in the daytime were also recorded as higher than during the night. This result was significantly different between daytime and nighttime locations, such as soldier training, right ear of shooter, and control manager (P < 0.001). Conclusion: This study confirmed that there is a need for proper management of impulse noise at military rifle ranges.

Definition and Diagnostic Criteria of Acute Kidney Injury (급성 신손상의 정의와 진단 기준)

  • NamGoong, Mee-Kyung
    • Childhood Kidney Diseases
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    • v.15 no.2
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    • pp.101-106
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    • 2011
  • Acute renal failure means that the word does not contain a mild kidney injury. In addition, the criteria for acute renal failure per researcher are different, and it is difficult in interpreting the results of research on acute renal failure. Therefore, rather than acute renal failure, a new term "acute kidney injury" meaning to include all the levels of injury is introduced. In 2002, to diagnose by means of serum creatinine, glomerular filtration rate and urine output, a detailed classification of acute kidney injury, the RIFLE criteria has been proposed. In 2007, the RIFLE criteria by transforming, AKIN criteria has been proposed. The pediatric RIFLE criteria for children has also been proposed. The author reviews here these criteria by comparing them.

Experiment and Performance Evaluation of RIFLE Algorithm (RIFLE 알고리즘에 대한 실험 및 성능평가)

  • Kim Dong-Hoi;Won Young-Sang;Ko Young-woong;Kim Jin
    • Proceedings of the Korea Information Processing Society Conference
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    • 2004.11a
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    • pp.697-700
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    • 2004
  • 서열의 유사성 검색에 잘 알려진 도구로는 BLAST 와 FASTA 가 있으며 이들 알고리즘은 알려지지 않은 유기체를 sequencing 작업을 통하여 얻어진 염기서열과 유전자 데이터베이스를 대상으로 유사성을 검색한다. 이때 서열의 유사성을 검색하기에 앞서 선행 되어야만 하는 sequencing작업은 시간적인 면에서 상당한 비용을 요구한다. 반면 sequencing 작업을 하기 않고도 간단한 실험에 의해 얻을 수 있는 부분적인 서열정보만을 대상으로 데이터베이스에서 검색 할 수 있는 알고리즘으로 RIFLE가 있다. 본 논문에서는 RIFLE 알고리즘을 구현하고 실험데이터를 생성하여 성능에 대한 분석 평가를 하고자 한다. 성능평가 결과 RIFLE 알고리즘은 시간복잡도 $O(n^2)$으로 빠른 반면 일부 서열에 있어서 실제 유사도에 비해 정확도가 낮게 평가되는 결과가 산출되었다.

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A Study on Human Body Impact Characteristics of the Human-rifle System on Shooting (인체-화기시스템의 인체충격특성에 관한 연구)

  • Lee Young-Shin;Lee Jang-Won;Choi Young-Jin;Chae Je-Wook;Choi Eui-Jung;Kim In-Woo
    • Journal of the Korean Society for Precision Engineering
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    • v.23 no.7 s.184
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    • pp.159-167
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    • 2006
  • The impact time history of human body with K2 rifle on stand shooting posture is analyzed and compared with experimental results. Analysis model is Korean 50% tile of twenties and height, weight is 174 cm, 62 kgf respectively. The muscle and bone human model of Korean man's twenties 50% tile is applied. ADAMS program is used for kinematic analysis and human model is developed by Life Mod program. The effect of the ground support condition, grip position and human weight factor are studied. Maximum impact force of shoulder is 784 N. The horizontal displacement of K2 rifle muzzle is 2.9 cm.

Gaussian Mixture based K2 Rifle Chamber Pressure Modeling of M193 and K100 Bullets (가우시안 혼합모델 기반 탄종별 K2 소화기의 약실압력 모델링)

  • Kim, Jong-Hwan;Lee, Byounghwak;Kim, Kyoungmin;Shin, Kyuyong;Lee, Wonwoo
    • Journal of the Korea Institute of Military Science and Technology
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    • v.22 no.1
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    • pp.27-34
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    • 2019
  • This paper presents a chamber pressure model development of K2 rifle by applying Gaussian mixture model. In order to materialize a real recoil force of a virtual reality shooting rifle in military combat training, the chamber pressure which is one of major components of the recoil force needs to be investigated and modeled. Over 200,000 data of the chamber pressure were collected by implementing live fire experiments with both K100 and M193 of 5.56 mm bullets. Gaussian mixture method was also applied to create a mathematical model that satisfies nonlinear, asymmetry, and deviations of the chamber pressure which is caused by irregular characteristics of propellant combustion. In addition, Polynomial and Fourier Regression were used for comparison of results, and the sum of squared errors, the coefficient of determination and root-mean-square errors were analyzed for performance measurement.

Modality of Heavy Metal Contamination of Soil in Military Rifle Shooting Range (소화기 사격장의 중금속 오염 양상)

  • Lee, Kwang-Lyeol;Hyun, Jae-Hyuk
    • Journal of Soil and Groundwater Environment
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    • v.21 no.3
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    • pp.58-63
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    • 2016
  • The study examined the level of heavy metal contamination by dividing military rifle shooting ranges into the three areas, i.e firing, trajectory, and target. The target area was found to be contaminated at a level higher (Cu 845 mg/kg, Pb 30,487 mg/kg) than the Worrisome Level of Soil Contamination (hereinafter referred to as the “Worrisome Level”) The trajectory area was predicted to be free from contamination, but it did indicate contamination although it was pretty much lower (Cu 23 mg/kg, Pb 99 mg/kg) than Worrisome Level. This is attributed to the contamination spread when rearranging the soil of the target area during the maintenance of the shooting range. The firing area was also predicted to be free from heavy metal contamination, but the results analyzed indicated a contamination higher (Cu 201 mg/kg, Pb 2,286 mg/kg) than Worrisome Level. This is attributed to the fragments of the broken bullet scattering due to the pressure generated as the bullet leaves the muzzle. An examination of heavy metal contamination in the discharge area as well as gutters to prevent the intrusion of rain water from perimeter revealed a high level of contamination (Cu 298 mg/kg, Pb 6,497 mg/kg), which makes it necessary to take measures.

Overview of Pediatric Continuous Renal Replacement Therapy in Acute Kidney Injury (급성 신손상을 가진 소아의 지속적 신대체 요법)

  • Park, Se-Jin;Shin, Jae-Il
    • Childhood Kidney Diseases
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    • v.15 no.2
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    • pp.107-115
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    • 2011
  • Acute kidney injury (AKI) is associated with mortality and may lead to increased medical expense. A modified criteria (pediatric RIFLE [pRIFLE]: Risk, Injury, Failure, Loss, and End-stage renal disease) has been proposed to standardize the definition of AKI. The common causes of AKI are renal ischemia, nephrotoxic medications, and sepsis. A majority of critically ill children develop AKI by the pRIFLE criteria and need to receive intensive care early in the course of AKI. Factors influencing patient survival (pediatric intensive care unit discharge) are known to be low blood pressure at the onset of renal replacement therapy (RRT), the use of vasoactive pressors during RRT, and the degrees of fluid overload at the initiation of RRT. Early intervention of continuous RRT (CRRT) has been introduced to reduce mortality and fluid overload that affects poor prognosis in patients with AKI. Here, we briefly review the practical prescription of pediatric CRRT and literatures on the outcomes of patients with AKI receiving CRRT and associations among AKI, fluid overload, and CRRT. In conclusion, we suggest that an increased emphasis should be placed on the early initiation of CRRT and fluid overload in the management of pediatric AKI.