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USGA 공법으로 조성된 그린의 토앙물리성과 Bentgrass의 생육
권동영,이정호,이동익,주영규,Kweon Dong-Young,Lee Jeong-Ho,Lee Dong-lk,Joo Young-Kyoo 한국잔디학회 2005 한국잔디학회지 Vol.19 No.2
USGA green specification is currently accepted in construction method of Korea. This study was carried out to find the factors influencing growth of turfgrass associated with soil physical properties of soil root-zone on golf green constructed with USGA method. Three putting greens in poor turfgrass and one in good turfgrass condition were selected for investigation on one golf course site at mid-South Korean peninsula. Soil hardness, moisture content, root length, and turf density were measured on-site greens, and soil physical properties and soil chemical properties also analyzed in laboratory. As a result of on-site surveys and soil physical tests in laboratory, soil physical properties were most important factors which influenced on turfgrass growth at tested greens. The results of soil particle analysis on green No. 2, in good turf condition, matched USGA sand particle recommendations. But those greens such as Nos. 1, 11 and 16, in poor putting greens, showed high soil compaction and improper soil particle distribution. Those factors created low leaf density, poor root depth, and higher moisture content compared with lower part of topsoil. Such phenomena caused inadequate turfgrass growth with soil hardening associated with poor drainage. Therefore, declines of soil physical properties associated with improper particle distribution caused a major factor influencing on turfgrass growth in golf green. Adequate test of soil particle analysis by USGA specification and proper construction method followed by adequate turf maintenance should be performed to obtain optimal turf quality on putting green.
권동영(Dong-Young Kwon),정옥철(Ok-Chul Jung),김희섭(HeeSub Kim) 한국항공우주연구원 2012 항공우주기술 Vol.11 No.2
저궤도위성은 궤도에 진입한 이후에는 탑재 소프트웨어에 의해 임무를 수행하게 된다. 탑재소프트웨어에 의한 위성의 임무 수행은 많은 부분이 내부 논리에 의해 자동으로 수행되고 있다. 그러나 발사 후 초기 운용이나 정상 운용의 임무 명령 생성, 궤도 조정, 건강 상태 확인 및 조치 등의 경우는 위성 운용 인원 및 위성 개발자의 판단 및 제어가 필요하다. 이를 위해 위성의 텔레메트리를 수신 및 원격 명령을 위성에 전송하여 탑재 소프트웨어를 상황에 맞게 제어할 수 있도록 위성과 지상국 간의 무선 통신 접속이 필요하다. 위성과 지상국 간의 접속 검증 시험을 종단 시험(End-to-End test)이라고 하며, 이 논문에서는 저궤도위성 개발의 전체 기간 중 수행한 2 차례의 종단 시험에 대하여 시험 형상 및 시험 설계에 대해 서술하고 이에 따른 시험결과에 대해 정리하였다. LEO Satellite performs the operations and missions by FSW(Flight Software) after separation from a launch vehicle. Many of the operations by FSW are automatically conducted by the algorithms of FSW. In the case of the IAC(Initial Activation and Checkout) operations, a mission scheduling, an orbit transition, etc, however, a decision and a control of the satellite operators or manufacturers are required in order to operate the satellite safely. For this, the wireless communication channel between a satellite and a ground station should be prepared to receive telemetries and to transmit tele-commands for controlling FSW properly. Therefore, the verification of the interface between KOMPSAT-3 and a ground station is essential. This verification test is named the satellite end-to-end test. In this paper, we show the design process of the satellite end-to-end test and test results.
USGA 공법으로 조성된 그린의 토양물리성과 Bentgrass의 생육
권동영(Dong Young Kweon),이정호(Jeong Ho Lee),이동익(Dong Ik Lee),주영규(Young Kyoo Joo) 한국잡초학회·한국잔디학회 2005 Weed & Turfgrass Science Vol.19 No.2
USGA green specification is currently accepted in construction method of Korea. This study was carried out to find the factors influencing growth of turfgrass associated with soil physical properties of soil root-zone on golf green constructed with USGA method. Three putting greens in poor turfgrass and one in good turfgrass condition were selected for investigation on one golf course site at mid-South Korean peninsula. Soil hardness, moisture content, root length, and turf density were measured on-site greens, and soil physical properties and soil chemical properties also analyzed in laboratory. <br/> As a result of on-site surveys and soil physical tests in laboratory, soil physical properties were most important factors which influenced on turfgrass growth at tested greens. The results of soil particle analysis on green No. 2, in good turf condition, matched USGA sand particle recommendations. But those greens such as Nos. 1, 11 and 16, in poor putting greens, showed high soil compaction and improper soil particle distribution. Those factors created low leaf density, poor root depth, and higher moisture content compared with lower part of topsoil. Such phenomena caused inadequate turfgrass growth with soil hardening associated with poor drainage. Therefore, declines of soil physical properties associated with improper particle distribution caused a major factor influencing on turfgrass growth in golf green. Adequate test of soil particle analysis by USGA specification and proper construction method followed by adequate turf maintenance should be performed to obtain optimal turf quality on putting green.