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    탄도 및 지형 특성을 고려한 포병 표적지 크기 결정 방안 연구 = Research on Artillery Target Size Determination Method Considering Ballistic and Terrain Characteristics

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    https://www.riss.kr/link?id=A109064124

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    This study proposes a method for determining the optimal target size for an artillery range considering ballisticsand environmental conditions. To this end, the size of the probable error of each type of ammunition and chargedetermined during shooting were considered, and the effect of the firing position and target terrain characteristicson the target size was analyzed. In conclusion, the size of the target increased as the range increased, and a largertarget size was required for the DPICM than for the general high explosive. Accordingly, the optimal target sizemust be determined by considering various factors such as topographical characteristics, shooting position location,and shooting range safety standards.
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    This study proposes a method for determining the optimal target size for an artillery range considering ballisticsand environmental conditions. To this end, the size of the probable error of each type of ammunition and chargedetermined during shooting...

    This study proposes a method for determining the optimal target size for an artillery range considering ballisticsand environmental conditions. To this end, the size of the probable error of each type of ammunition and chargedetermined during shooting were considered, and the effect of the firing position and target terrain characteristicson the target size was analyzed. In conclusion, the size of the target increased as the range increased, and a largertarget size was required for the DPICM than for the general high explosive. Accordingly, the optimal target sizemust be determined by considering various factors such as topographical characteristics, shooting position location,and shooting range safety standards.

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    참고문헌 (Reference)

    1 Korea Army Headquarters, "Standard training ground Installation Criteria" Korea army headquarters 105-, 2019

    2 Korea army headquarters, "Research on establishment of criteria for standard training grounds in 2022" Korea Institute for Crisis management Analysis 6-17, 2022

    3 U. S. Arm, "Regulation 385-63-Policy and Procedures for Firing Ammunition for Training, Target, Practice and Combat" Department of the Army and Navy 1983

    4 D. S. Jo, "Know and understand right away of Ammunition Stockpile Reliability Program(ASRP)" (6) : 60-65, 2001

    5 J. W. Lee, "Know and understand right away of Ammunition Stockpile Reliability Program(ASRP)" (6) : 102-107, 2010

    6 Defense Agency for Technology and Quality, "Feasibility Study of 000 Ammunition Test Site Construction Project" 2022

    7 S. Y. Yoon, "Distribution Simulation Method Using Flight Test Data of Scattered Submunitions" Chung Nam University 2016

    8 강재구 ; 최준규 ; 조공장 ; 주용준 ; 한명수, "Development significance and achievements of 155 mm drag-reducing dual-purpose high explosive bomb" 16 (16): 495-502, 2007

    9 Defense T&E Research Institute in Agency for Defense Development, "Detailed standards for test safety control" 1994

    10 이준식 ; 최봉완 ; 오현승, "A study on the effective method to producing data for the ROKA live fire training range safety" 38 (38): 64-77, 2015

    1 Korea Army Headquarters, "Standard training ground Installation Criteria" Korea army headquarters 105-, 2019

    2 Korea army headquarters, "Research on establishment of criteria for standard training grounds in 2022" Korea Institute for Crisis management Analysis 6-17, 2022

    3 U. S. Arm, "Regulation 385-63-Policy and Procedures for Firing Ammunition for Training, Target, Practice and Combat" Department of the Army and Navy 1983

    4 D. S. Jo, "Know and understand right away of Ammunition Stockpile Reliability Program(ASRP)" (6) : 60-65, 2001

    5 J. W. Lee, "Know and understand right away of Ammunition Stockpile Reliability Program(ASRP)" (6) : 102-107, 2010

    6 Defense Agency for Technology and Quality, "Feasibility Study of 000 Ammunition Test Site Construction Project" 2022

    7 S. Y. Yoon, "Distribution Simulation Method Using Flight Test Data of Scattered Submunitions" Chung Nam University 2016

    8 강재구 ; 최준규 ; 조공장 ; 주용준 ; 한명수, "Development significance and achievements of 155 mm drag-reducing dual-purpose high explosive bomb" 16 (16): 495-502, 2007

    9 Defense T&E Research Institute in Agency for Defense Development, "Detailed standards for test safety control" 1994

    10 이준식 ; 최봉완 ; 오현승, "A study on the effective method to producing data for the ROKA live fire training range safety" 38 (38): 64-77, 2015

    11 김주희 ; 성기은, "A Study on Safety Standards for the Interior of an Artillery Firing Range Considering Probable Error" 26 (26): 139-148, 2023

    12 Korea army headquarters, "155 mm Howitzer Basic Resignation 32-0" Korea army headquarters 2013

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