• 제목/요약/키워드: Vibration Level

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시계열 신호 통계량 기반 캐비테이션 신호 탐지 (Cavitation signal detection based on time-series signal statistics)

  • 양해상;최하민;이석규;성우제
    • 한국음향학회지
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    • 제43권4호
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    • pp.400-405
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    • 2024
  • 선박 프로펠러 캐비테이션 소음이 발생하면 수중 방사 소음의 수준이 급격히 상승하는데, 특히 함정의 경우에 피탐지 확률이 증가해 치명적인 위협 요인이 될 수 있다. 따라서 함정의 생존성 향상을 위하여 캐비테이션 신호를 정확하고 신속하게 판단하는 것이 매우 중요한데, 종래에는 센서로 계측한 음압/진동 준위가 기준값 이상이면 캐비테이션 발생으로 판단하는 기술과 데몬 기법을 통해 캐비테이션 발생 여부를 판별하는 방법이 주로 수행되었다. 그러나 이와 관련된 기술은 캐비테이션의 발생 현상에 대한 물리적 이해와 사용자의 주관적 기준을 기반으로 수행되며 여러 절차를 거치기 때문에 캐비테이션 신호를 조기에 자동으로 인식하는 기법의 개발이 필요하다. 본 논문에서는 선체에 부착된 음향 센서를 이용하여 계측된 음향 신호로부터 캐비테이션 신호의 특징을 반영한 간단한 통계량 기반 특징을 추출하고 이로부터 캐비테이션 발생 여부를 자동으로 판단하는 알고리즘을 제안한다. 제안된 기법의 성능은 센서 수와 모형 시험 조건에 따라 평가하는데, 단일 센서로 계측된 신호에 캐비테이션의 특징을 충분히 반영하여 훈련하면 캐비테이션 신호의 발생 여부를 판단 가능함을 확인했다.

Progress of Composite Fabrication Technologies with the Use of Machinery

  • Choi, Byung-Keun;Kim, Yun-Hae;Ha, Jin-Cheol;Lee, Jin-Woo;Park, Jun-Mu;Park, Soo-Jeong;Moon, Kyung-Man;Chung, Won-Jee;Kim, Man-Soo
    • International Journal of Ocean System Engineering
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    • 제2권3호
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    • pp.185-194
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    • 2012
  • A Macroscopic combination of two or more distinct materials is commonly referred to as a "Composite Material", having been designed mechanically and chemically superior in function and characteristic than its individual constituent materials. Composite materials are used not only for aerospace and military, but also heavily used in boat/ship building and general composite industries which we are seeing increasingly more. Regardless of the various applications for composite materials, the industry is still limited and requires better fabrication technology and methodology in order to expand and grow. An example of this is that the majority of fabrication facilities nearby still use an antiquated wet lay-up process where fabrication still requires manual hand labor in a 3D environment impeding productivity of composite product design advancement. As an expert in the advanced composites field, I have developed fabrication skills with the use of machinery based on my past composite experience. In autumn 2011, the Korea government confirmed to fund my project. It is the development of a composite sanding machine. I began development of this semi-robotic prototype beginning in 2009. It has possibilities of replacing or augmenting the exhaustive and difficult jobs performed by human hands, such as sanding, grinding, blasting, and polishing in most often, very awkward conditions, and is also will boost productivity, improve surface quality, cut abrasive costs, eliminate vibration injuries, and protect workers from exposure to dust and airborne contamination. Ease of control and operation of the equipment in or outside of the sanding room is a key benefit to end-users. It will prove to be much more economical than normal robotics and minimize errors that commonly occur in factories. The key components and their technologies are a 360 degree rotational shoulder and a wrist that is controlled under PLC controller and joystick manual mode. Development on both of the key modules is complete and are now operational. The Korean government fund boosted my development and I expect to complete full scale development no later than 3rd quarter 2012. Even with the advantages of composite materials, there is still the need to repair or to maintain composite products with a higher level of technology. I have learned many composite repair skills on composite airframe since many composite fabrication skills including repair, requires training for non aerospace applications. The wind energy market is now requiring much larger blades in order to generate more electrical energy for wind farms. One single blade is commonly 50 meters or longer now. When a wind blade becomes damaged from external forces, on-site repair is required on the columns even under strong wind and freezing temperature conditions. In order to correctly obtain polymerization, the repair must be performed on the damaged area within a very limited time. The use of pre-impregnated glass fabric and heating silicone pad and a hot bonder acting precise heating control are surely required.

국내 중환자실내 호흡치료의 현황 (Current Status of Respiratory Care in Korean Intensive Care Units)

  • 박소연;김태형;김은경;심태선;임채만;이상도;김우성;김동순;김원동;고윤석
    • Tuberculosis and Respiratory Diseases
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    • 제49권3호
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    • pp.343-352
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    • 2000
  • 연구배경 : 대부분의 국내 중환자실에서는 간호사들에 의해 호흡 치료가 이루어지고 있으나 그 실태는 잘 알려지지 않았다. 본 연구는 국내 중환자실에서 시행되는 호흡요법의 종류 및 호흡치료사들의 필요성을 알아보고자 하였다. 방법 : 중환자실이 설치된 117개 병원의 수간호사들을 대상으로 설문조사를 실시하였다. 결과 : 117개 병원 중 100개 병원에서 회신하여 회신율은 85%(대학병원 97%, 산하병원 81%, 종합병원 77%) 였다. 대학병원 66단위 중 18단위, 종합병원 58단위 중 35단위에서 통합 중환자실로 운영되고 있었으며 중환자실 전담의사가 있는 병원은 47.1% 였다. 호흡요법 전문치료사가 있는 병원은 없었으며 응답자의 92.8%가 전문치료사의 필요성을 인정하였다. 중환자실에서 제공되는 호흡요법 중 기관지흡인, 자세 변경, 타진법, 기침유발 등은 대부분 시행되고 있었으며 진동마사지, 간헐적 양압환기법 등은 종합병원에서의 시행률이 낮았다. 이러한 호흡요법은 주로 간호사들에 의해 시행되어졌으며 평균 8시간 근무 중 이러한 호흡요법 시행에 소모되는 시간은 1시간 미만에서 4시간까지 다양하였다. 산소공급을 위해 사용하는 장치 중 venturi mask, T-piece 등은 종합병원에서의 사용률이 낮았으며 종합병원은 전통적인 인공환기법에 대한 의존도가 상대적으로 높았다. Swan-Ganz catheter monitoring등의 혈역학적 감시 장비도 병원간의 차이를 보였다. 의료장비의 관리 및 보관에서도 담당 의공학과가 갖추어진 곳이 종합병원은 드물었다. 결론 : 국내 중환자실의 호흡치료는 간호사들에 의해 제공되고 있으며 병원 수준에 따라 제공되는 호흡요법 수준의 차이가 커 전문적 호흡요법의 수행을 위해서는 호흡치료사 제도의 도입이 필요할 것으로 사료된다.

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EndoTwinn과 System B continuous wave of obturation units를 이용한 근단부 근관충전 효율비교 (Comparison of apical sealing ability of continuous wave of obturation technique using EndoTwinn and System B)

  • 신현주;박정길;허복;김현철
    • Restorative Dentistry and Endodontics
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    • 제32권6호
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    • pp.522-529
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    • 2007
  • 최근 continuous wave of obturation technique을 이용한 근관 충전 장비로서 열 적용뿐 만 아니라 초음파 진동의 기능이 부가된 EndoTwinn이라는 기구가 소개되었다. 이 연구의 목적은 일반적으로 널리 사용되는 System B와 새로운 기구인 EndoTwinn을 사용한 근관충전 시 근단 폐쇄 효율을 비교하기 위한 것이다. 직선형 치근을 가진 60개의 발치된 소구치와 상악 절치를 근관장 측정 후, 6% 경사의 엔진 구동형 니켈-타이타늄 파일을 이용하여 #35 파일까지 확대 및 세척하였다. SB군 (n=20)은 System B, ET군 (n=20)은 EndoTwinn을 이용해 충전하고, Obtura II를 이용하여 backfill하였다. 양성 대조군으로서 PC군(n=10)은 근관 형성 후 빈 근관으로 남겨두었다. SB, ET, PC군의 시편은 치근첨 주위 1 mm를 제외한 모든 치근면에 nail varnish을 적용하고 음성 대조군인 NSB군(n=5)과 NET군(n=5)의 시편은 치근첨을 포함한 모든 치근면에 nail varnish를 도포하였다. 각 치아의 치근첨을 메틸렌블루 용액에 2일간 담궈 보관한 후, 치근첨에서 5 mm까지 1 mm간격으로 절단하여 근관벽의 착색 정도를 평가하였고, 각 높이에서의 점수를 합하여 그 시편의 점수로 정하였다. 두 장비 간의 염색제 누출의 유의성 검정을 위해 student t 분석을 시행하였다. 완전히 잘려지지 않고 플러거에 가타퍼챠가 달려나오는 빈도를 비교하기 위해 카이 분석을 시행하였다. PC군은 모든 근관과 상아세관이 착색되었으며, NC군은 착색이 되지 않았다. ET군의 착색 정도가 SB군보다 유의하게 적게 나타났으며(p < 0.05). 플러거에 가타펴챠가 달려나오는 빈도는 유의한 차이가 없었다. 이 실험의 조건하에서, EndoTwinn을 이용해 충전한 경우에 System B를 이용해 충전한 경우보다 근단부 밀폐 정도가 더 좋은 것으로 사료된다.

함정 기관실내 활동의 순환 및 호흡 기능에 대한 영향 (Changes in Circulatory and Respiratory Activities Observed on Men in an Engine Room of a Navy Ship)

  • 현광철;남기용
    • The Korean Journal of Physiology
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    • 제1권2호
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    • pp.199-213
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    • 1967
  • Circulatory and respiratory activities were observed in men exposed to the environment of engine room of a cruising Republic of Korea Navy ship and compared to the control values obtained in an ordinary laboratory room on land. The environment of an engine room of cruising navy ship was presumed to be a multiple stress acting on men. The environment of the engine room included high temperature $(35-42^{\circ}C)$, low relative humidity (20-38% saturation), vibration (about 7 cycles per second), rolling and pitching of ship and noises. Sixteen men were divided into two groups consisted of each 8 subjects. Subjects of sea duty group had experience of continuous on board duty averaging 3.5 years. Men of land duty group had no experience of on board activity. On land observations were made on one day prior to the boarding and leaving the port and four days after landing. In between observations in the engine room were made on the first, 5 th, 9 th, 12 th, and 14 th day of on board activity. The whole experimental period lasted for 20 days. Measurements on circulatory and respiratory parameters were at standing resting state (after 30 minutes standing in the case of on land study and 15 minutes in engine room study) and within one minute after cessation of on the spot running of which rhythm was 30/min. and lasted for 5 minutes. Oxygen consumption and pulmonary function test were done in the period of two minutes from the 3rd to 5th minutes of running. The following results were obtained. 1. Body temperature showed no change regardless of group difference or on land or on board measurements. 2. Pulse rate increased markedly after boarding the ship id both groups. Pulse rate increased from the first day on board at rest and after exercise as compared to the on land control value. This increase in pulse rate was more marked after exercise. Sea duty group showed less increase in pulse rate at rest than the land duty group. Standing and resting pulse rate of sea duty group on lam was 81 and increased to 87 at the 5th day on board and remained smaller than the land duty group throughout the period on board. Control standing and resting pulse rate of land duty group on land was 76 and reached 89 at the 9th day on board and thereafter decreased a little. Pulse rate of land duty group at rest on board remained greater than that of sea duty group throughout the period on board. 3. Systolic blood pressure of sea duty group increased after boarding the ship and remained higher than the control value on land. In the land duty group, however, systolic blood pressure decreased during the period on board the ship. Diastolic blood pressure decreased in both groups. 4. Resting breathing rate of land duty group increased and remained higher than the control value on land. In sea duty group, however, resting breathing rate showed a transient increase on the 1st day on board and decreased thereafter to the control value on land and kept the same level throughout the period of cruise. Absolute value of breathing rate in the sea duty group was greater than the land duty group both at rest and after exercise. 5. There was a lowering of breathing efficiency in both groups. Thus, increases in tidal volume and minute ventilation volume and decreases in maximum breathing capacity, vital capacity, capacity ratio and air velocity Index were observed after boarding the ship. An increase in ventilation equivalent was also observed in both groups. The lowering of breathing efficiency was more marked in the land duty group than the sea duty group. 6. Energy expediture increased in both groups during their stay on the ship and was more marked in the sea duty group. 7, Lactate concentration in venous blood at rest and after exercise increased after boarding the ship and no group difference was observed.

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