船舶力学
船舶力學
선박역학
JOURNAL OF SHIP MECHANICS
2013年
8期
866-871
,共6页
船舶能效设计指数(EEDI)%海洋气象因子fw%绕射增阻%船型设计
船舶能效設計指數(EEDI)%海洋氣象因子fw%繞射增阻%船型設計
선박능효설계지수(EEDI)%해양기상인자fw%요사증조%선형설계
EEDI (Energy-Efficiency Design Index)%weather factor fw%added resistance due to short wave diffraction%ship hull design
文章主要研究近两年国际海事组织(IMO)海上环境保护委员会(MEPC)所讨论的新船能效设计指数EEDI计算公式中的海洋气象因子fw,认为计算fw时计算船舶的波浪增阻是必需的。文中重点针对EEDI公式中船舶短波绕射增阻的计算方法进行研究。根据三维势流理论计算了集装箱船以及三种简化的集装箱船的波浪漂移力,以分析船体形状对短波绕射增阻的影响,并将结果与日本学者的近似方法做了比较。发现船首的形状对绕射增阻的影响相对较大,船尾次之。文中的研究成果对指导船型设计有一定的参考价值,对完善绕射增阻的计算方法有一定的帮助。
文章主要研究近兩年國際海事組織(IMO)海上環境保護委員會(MEPC)所討論的新船能效設計指數EEDI計算公式中的海洋氣象因子fw,認為計算fw時計算船舶的波浪增阻是必需的。文中重點針對EEDI公式中船舶短波繞射增阻的計算方法進行研究。根據三維勢流理論計算瞭集裝箱船以及三種簡化的集裝箱船的波浪漂移力,以分析船體形狀對短波繞射增阻的影響,併將結果與日本學者的近似方法做瞭比較。髮現船首的形狀對繞射增阻的影響相對較大,船尾次之。文中的研究成果對指導船型設計有一定的參攷價值,對完善繞射增阻的計算方法有一定的幫助。
문장주요연구근량년국제해사조직(IMO)해상배경보호위원회(MEPC)소토론적신선능효설계지수EEDI계산공식중적해양기상인자fw,인위계산fw시계산선박적파랑증조시필수적。문중중점침대EEDI공식중선박단파요사증조적계산방법진행연구。근거삼유세류이론계산료집장상선이급삼충간화적집장상선적파랑표이력,이분석선체형상대단파요사증조적영향,병장결과여일본학자적근사방법주료비교。발현선수적형상대요사증조적영향상대교대,선미차지。문중적연구성과대지도선형설계유일정적삼고개치,대완선요사증조적계산방법유일정적방조。
EEDI (Energy Efficiency Design Index), which is a complicated formula to describe the ship ’s CO2 (carbon dioxide) emission,is discussed by the MEPC (Marine Environment Protection Committee). This paper is focused on the weather factor fw from the formula, and indicates that the wave added resistance must be calculated before the calculation of the parameter fw . Attention is paid on the wave added resistance due to wave diffraction at zero forward speed. In order to analyze the influence of the ship hull shapes on added resistance due to wave diffraction, 3D potential flow theory is used to calculate the drift force of a container and three simplified models. The numerical result is compared with the results calculated by the method proposed by Japanese researchers. It is found that the influence of fore shapes on added resistance is more than the one of the aft. Some problems are found during the analysis of the results and are summa-rized. The achievement of this paper has a certain reference value for ship hull design and is useful to im-prove the method to calculation added resistance due to wave diffraction.