船舶力学
船舶力學
선박역학
JOURNAL OF SHIP MECHANICS
2015年
6期
629-640
,共12页
船-船闸水动力相互作用%浅水%粘性流%数值模拟
船-船閘水動力相互作用%淺水%粘性流%數值模擬
선-선갑수동력상호작용%천수%점성류%수치모의
ship-lock hydrodynamic interaction%shallow water%viscous flow%numerical simulation
文章通过应用CFD方法数值模拟在浅水条件下通过船闸的船舶粘性绕流,对船舶通过船闸时的水动力性能进行了数值预报研究。通过UDF编程定义船舶的运动,使用动网格方法和滑移交界面技术进行船舶运动过程中的网格更新,计算作用在船体上的水动力,并由计算得到的水动力求得船体下沉和纵倾。为了验证所采用的数值方法,以一艘通过比利时泽布吕赫Pierre Vandamme船闸的船舶为例,在模型尺度下进行了计算,并将计算结果和佛兰德水利研究所的模型试验基准数据进行了比较。通过分析不同船速、偏心距和水深条件下的数值结果,给出了这些因素对船舶通过船闸时的水动力性能的影响。该文研究结果可为浅水条件下船舶通过船闸时的安全操纵和控制提供一定的指导。
文章通過應用CFD方法數值模擬在淺水條件下通過船閘的船舶粘性繞流,對船舶通過船閘時的水動力性能進行瞭數值預報研究。通過UDF編程定義船舶的運動,使用動網格方法和滑移交界麵技術進行船舶運動過程中的網格更新,計算作用在船體上的水動力,併由計算得到的水動力求得船體下沉和縱傾。為瞭驗證所採用的數值方法,以一艘通過比利時澤佈呂赫Pierre Vandamme船閘的船舶為例,在模型呎度下進行瞭計算,併將計算結果和彿蘭德水利研究所的模型試驗基準數據進行瞭比較。通過分析不同船速、偏心距和水深條件下的數值結果,給齣瞭這些因素對船舶通過船閘時的水動力性能的影響。該文研究結果可為淺水條件下船舶通過船閘時的安全操縱和控製提供一定的指導。
문장통과응용CFD방법수치모의재천수조건하통과선갑적선박점성요류,대선박통과선갑시적수동력성능진행료수치예보연구。통과UDF편정정의선박적운동,사용동망격방법화활이교계면기술진행선박운동과정중적망격경신,계산작용재선체상적수동력,병유계산득도적수동력구득선체하침화종경。위료험증소채용적수치방법,이일소통과비리시택포려혁Pierre Vandamme선갑적선박위례,재모형척도하진행료계산,병장계산결과화불란덕수리연구소적모형시험기준수거진행료비교。통과분석불동선속、편심거화수심조건하적수치결과,급출료저사인소대선박통과선갑시적수동력성능적영향。해문연구결과가위천수조건하선박통과선갑시적안전조종화공제제공일정적지도。
By using the CFD method to simulate the viscous flow about a ship passing through a lock in shallow water, the hydrodynamic behaviors of the ship are numerically studied. UDF (User-defined function) is compiled to define the ship motion. Grid regeneration is implemented by using the dy-namic mesh method and sliding interface technique. The hydrodynamic forces on the ship are calcu-lated and the squat and trim of the ship are determined from the calculated hydrodynamic forces. Nu-merical results are obtained at model scale for a ship transiting in the Pierre Vandamme Lock in Zee-brugge and compared with the benchmark data of model tests at Flanders Hydraulics Research, Belgium to verify the numerical method. By analyzing the numerical results obtained at different ship speed, eccentricity and water depth, the influences of ship speed, eccentricity and water depth on the hydrodynamic behaviors of a ship passing through a lock are demonstrated. This study can provide some guidance on safe maneuvering and control of ships passing through a lock in shallow water.