무인잠수정 추진기에 사용되는 고부하 유체동압베어링의 최적설계

Optimal Design of Fluid Dynamic Bearings with High Load Capacity Applied to a Propulsor of an Unmanned Underwater Vehicle
  • 김교봉
  • 장건희
  • 이지훈
  • 이민호
  • 최상규
  • 외 1명

초록

This paper proposes an optimal design of fluid dynamic bearings (FDBs) applied to a propulsor of an Unmanned Underwater Vehicle (UUV) to improve static and dynamic performances. The FDBs in the propulsor is to support radial and axial load of the rotating part of the UUV by using sea water as lubricant. The load capacity and friction torque are determined by solving the Reynolds equation. And the stiffness and damping coefficients are determined by solving the perturbed equations of the Eeynolds equation. Optimization problem was formulated by introducing the multi-objective function of radial and axial load, and the constraint equations of stiffness and damping coefficients. Eleven major design variables of the FDBs were chosen for this optimization problem. Finally, this research proposed the optimal design of the FDBs with high load capacity for the UV propulsor.

키워드

Fluid dynamic bearing유체동압베어링Finite element method유한요소법Reynolds equation레이놀즈 방정식Propulsor추진기Load capacity부하용량Unmanned underwater vehicle무인잠수정
제목
무인잠수정 추진기에 사용되는 고부하 유체동압베어링의 최적설계
제목 (타언어)
Optimal Design of Fluid Dynamic Bearings with High Load Capacity Applied to a Propulsor of an Unmanned Underwater Vehicle
저자
김교봉장건희이지훈이민호최상규박철훈
발행일
2015-04
유형
Proceeding
저널명
한국소음진동공학회 2015년도 춘계학술대회 논문집
페이지
969 ~ 976