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ALBC3 합금의 쇼트피닝 분사거리에 따른 해수 내 캐비테이션 손상 평가
한민수· ( Min Su Han ),장석기 ( Seok Ki Jang ),김종신 ( Jong Sin Kim ),김성종 ( Seong Jong Kim ) 한국부식방식학회(구 한국부식학회) 2013 Corrosion Science and Technology Vol.12 No.5
Marine equipment exposed to harsh environments requires not only excellent corrosion resistance but also improvement of physical characteristics against natural material degradation. With growing interests in ocean energy resources, the higher reliability for marine equipment has become more important in terms of material characteristics. ALBC3 alloy represents excellent corrosion resistance and is widely used in corrosive environments. However, cavitation damage occurs frequently due to its poor durability in high flow rate of marine environment. In this research, shot peening technology was employed as a surface modification with shot peening stand-off distance to mitigate cavitation damage. The effects of shot peening on extent of cavitation damage and weight loss were evaluated for both shot peened and non-peened specimens. The results revealed that the application of shot peeing decreased cavitation damage for all experimental conditions in comparison with the non-peened specimens. The optimum stand-off distance was determined to be 10 cm, since more than 35 % of cavitation damage reduction was observed.
블라인드 디컨볼루션 및 time of arrival 기법을 이용한 수중 표적 거리 추정 성능 향상 기법
한민수,최재용,손권,이필호,Han, Min Su,Choi, Jea Young,Son, Kweon,Lee, Phil Ho 한국음향학회 2017 韓國音響學會誌 Vol.36 No.6
Accurate distance measurement between maneuver target in underwater and measuring devices is required to perform quantitative test evaluation in marine weapons system R&D process. In general, the target distance is measured using a one-way ToA (Time of Arrival) method that calculates the time difference between transmitted and received signals from the two accurately synchronized devices. However, the distance estimation performance is degraded because of the multi-path environments. In this paper, the time-variant transfer function of complex underwater environment is estimated from each received data frame using RBD (Ray-based Blind Deconvolution), and the estimated time-variant transfer function is then used to get rid of the effect about complex underwater environment and to recover the data signal using PTRM (Passive Time Reversal Mirror). The result from the simulation and experimental data show that the suggested method improve the distance estimation performance when comparing with the conventional ToA method. 해양무기체계 연구개발 과정에 있어서 정량적 시험평가를 수행하기 위해 수중에서 기동하는 표적과 계측 장비간의 거리측정이 요구된다. 일반적으로 정확하게 동기화된 송 수신기 사이의 전송 시간차를 측정하는 단방향 ToA(Time of Arrival) 기법을 이용하여 목표물의 거리를 측정한다. 하지만 수신된 신호는 다중경로의 영향으로 왜곡되어 거리 추정 성능을 저하시킨다. 본 논문에서는 음선 기반의 블라인드 디컨볼루션 기법을 사용하여 수신된 각 데이터 프레임으로부터 시변하는 복합 수중 채널 함수를 추정하고 추정된 시변 전달 함수를 시역전하여 다중경로 현상을 제거한다. 제안된 기법으로 시뮬레이션 및 해상실험을 진행하였을 때, 기존의 ToA 기법보다 거리 추정 성능이 향상되는 결과를 확인하였다.