인문학
사회과학
자연과학
공학
의약학
농수해양학
예술체육학
복합학
개인구독
소속 기관이 없으신 경우, 개인 정기구독을 하시면 저렴하게
논문을 무제한 열람 이용할 수 있어요.
지원사업
학술연구/단체지원/교육 등 연구자 활동을 지속하도록 DBpia가 지원하고 있어요.
커뮤니티
연구자들이 자신의 연구와 전문성을 널리 알리고, 새로운 협력의 기회를 만들 수 있는 네트워킹 공간이에요.
논문 기본 정보
- 저자정보
초록·키워드
The swirling flowunder the part-load (PL) operation of hydraulic turbines causes the formation of a rotating vortex rope (RVR) inside the draft tube. The RVR precession induces pressure fluctuations and periodic loadings that can jeopardize the hydraulic machine"s structure and performance. The behavior of these fluctuations is closely related to the characteristics of the RVR, which can vary for different PL conditions. A series of experiments have been performed to characterize the periodic behavior and stability of the RVR under various PL operating conditions. For this purpose, wall pressure measurements were conducted at two sections along the draft tube axis of a scaled-down model of the U9 Kaplan turbine. Spectral analyses were performed, and the periodic stability of the RVR was investigated based on the statistical analyses of the amplitude and frequency of the pressure oscillations. The results showed that the amplitude of the pressure oscillations increases with the decrease of the discharge while the stability of the RVR decreases. Upstream, the behavior and stability of the RVR asynchronous mode pressure oscillations are highly dependent on the flow conditions at the draft tube entrance. However, due to the downstream RVR dissipation, the effects imposed by the elbow become the dominant factor in the RVR behavior close to the elbow. The statistical method proposed in this study provided an in-depth view of the RVR instantaneous behavior, allowing a more accurate characterization of the phenomenon than only studying its spectral content.
본문·목차
인공지능 문자 인식 모델을 통해 추출된 텍스트로, 일부 오타나 오류가 포함될 수 있으나 지속적으로 개선 중입니다.
오류를 발견하셨다면 해당 부분을 드래그한 후 ' 를 통해 신고해주세요.
오류를 발견하셨다면 해당 부분을 드래그한 후 ' 를 통해 신고해주세요.
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UCI(KEPA) : I410-ECN-0102-2023-554-001742099