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Numerical Study on Motion Responses of Two Parallel Ships During Underway Replenishment by the Semi-Analytical HOTP Method
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作者 YANG Yun-tao ZHU Ren-chuan +1 位作者 MA Chao GAO Hui 《China Ocean Engineering》 SCIE EI CSCD 2022年第2期233-246,共14页
Motion responses of two ships advancing parallel in waves with hydrodynamic interactions are investigated in this paper. Within the framework of the frequency-domain potential flow theory, a semi-analytical higher-ord... Motion responses of two ships advancing parallel in waves with hydrodynamic interactions are investigated in this paper. Within the framework of the frequency-domain potential flow theory, a semi-analytical higher-order translating-pulsating source(HOTP) method is presented to solve the problems of coupled radiation and diffraction potential. The method employs nine-node bi-quadratic curvilinear elements to discretize the boundary integral equations(BIEs) constructed over the mean wetted surface of the two ship hulls. In order to eliminate the numerical oscillation, analytical quadrature formulas are derived and adopted to evaluate the integrals related to the Froudedependent part of the Green’s function along the horizontal direction in the BIEs. Based on the method, a numerical program is originally coded. Through the calculations of hydrodynamic responses of single ships, the numerical implementation is proved successful. Then the validated program is applied in the investigations on the hydrodynamic interactions of two identical Wigley Ⅲ hulls and the underway replenishment of a frigate and a supply ship in waves with and without stagger, respectively. The comparison between the present computed results with experimental data and numerical solutions of other methods shows that the semi-analytical HOTP method is of higher accuracy than the pulsating source Green’s function method with speed correction and better stability than the traditional HOTP method based on Gauss quadrature. In addition, for two ships with obviously different dimensions,the influence of hydrodynamic interactions on the smaller ship is found to be more noticeable than that on the larger ship, which leads to the differences between the motions of frigate with and without the presence of supply ship. 展开更多
关键词 semi-analytical HOTP method two parallel ships underway replenishment coupled motions
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Cessna SkyCourier advances through development;prototype assembly underway
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《今日民航》 2019年第3期98-98,共1页
Textron Aviation Inc. company announced new milestones in its Cessna SkyCourier twin utility turboprop development program, with assembly underway for the prototype aircraft and the additional five flight and ground t... Textron Aviation Inc. company announced new milestones in its Cessna SkyCourier twin utility turboprop development program, with assembly underway for the prototype aircraft and the additional five flight and ground test articles. 展开更多
关键词 Cessna SkyCourier ADVANCES THROUGH DEVELOPMENT prototype assembly underway
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海水二氧化碳分压测量仪器比对研究
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作者 张川 王聪 +1 位作者 宁春林 庞永超 《中国海洋大学学报(自然科学版)》 CAS CSCD 北大核心 2015年第12期80-86,共7页
针对两种常见的海洋pCO2测量仪器(基于水汽平衡法的pCO2自动监测系统Underway pCO2System及采用膜分离技术实现水汽分离的pCO2原位传感器HydroC/CO2)开展了室内比对试验。通过加入Na2CO3/NaHCO3或H3PO4调节水池内水体pH值控制比对环境的... 针对两种常见的海洋pCO2测量仪器(基于水汽平衡法的pCO2自动监测系统Underway pCO2System及采用膜分离技术实现水汽分离的pCO2原位传感器HydroC/CO2)开展了室内比对试验。通过加入Na2CO3/NaHCO3或H3PO4调节水池内水体pH值控制比对环境的pCO2,在10个水平下采集了两台仪器的测量数据,通过对同步采集水样的总溶解无机碳(DIC)、总碱度(TA)及pH测定,计算得到pCO2的理论值。通过数据分析发现3组结果间一致性很好(相关系数R2均达到0.99以上),但彼此间存在较大的"系统差"——两台仪器间测量差值在50~80μatm之间,差值的平均值及标准差s为(64.52±9.52)μatm;Underway pCO2System及HydroC/CO2与CO2sys计算值之间的差值分别在15~80μatm间及-2^-50μatm间,平均值及标准差分别为(40.67±15.88)μatm及(-23.86±14.90)μatm。 展开更多
关键词 海水二氧化碳分压 比对 underway PCO2 System HydroC/CO2
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Numerical study on wave loads and motions of two ships advancing in waves by using three-dimensional translating-pulsating source 被引量:10
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作者 Yong Xu Wen-Cai Dong 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2013年第4期494-502,共9页
A frequency domain analysis method based on the three-dimensional translating-pulsating (3DTP) source Green function is developed to investigate wave loads and free motions of two ships advancing on parallel course ... A frequency domain analysis method based on the three-dimensional translating-pulsating (3DTP) source Green function is developed to investigate wave loads and free motions of two ships advancing on parallel course in waves. Two experiments are carried out respectively to mea- sure the wave loads and the free motions for a pair of side-by- side arranged ship models advancing with an identical speed in head regular waves. For comparison, each model is also tested alone. Predictions obtained by the present solution are found in favorable agreement with the model tests and are more accurate than the traditional method based on the three dimensional pulsating (3DP) source Green function. Numer- ical resonances and peak shift can be found in the 3DP pre- dictions, which result from the wave energy trapped in the gap between two ships and the extremely inhomogeneous wave load distribution on each hull. However, they can be eliminated by 3DTP, in which the speed affects the free sur- face and most of the wave energy can be escaped from the gap. Both the experiment and the present prediction show that hydrodynamic interaction effects on wave loads and free motions are significant. The present solver may serve as a validated tool to predict wave loads and motions of two ves- sels under replenishment at sea, and may help to evaluate the hydrodynamic interaction effects on the ships safety in replenishment operation. 展开更多
关键词 Hydrodynamic interaction - Wave loads ~Ship motions ~ Model test ~ Three-dimensional translating-pulsating source ~ underway replenishment
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Hydrodynamic interactions between two bodies in waves in 3D time domain 被引量:1
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作者 WANGJian-fang LIJi-de +2 位作者 CAIXin-gong TIANMing-qi HaoJin-feng 《Journal of Marine Science and Application》 2005年第1期15-20,共6页
In this paper, a 3D time domain technique is adopted to calculate the coupled hydrodynamic interaction between two bodies without flare in waves. For verifying the code, two same cylinders are selected to calculate co... In this paper, a 3D time domain technique is adopted to calculate the coupled hydrodynamic interaction between two bodies without flare in waves. For verifying the code, two same cylinders are selected to calculate coupled hydrodynamic effects by comparison with the results obtained by 3D frequency method which has been proved to be efficient for solving such problems. In order to improve efficiency of calculation, the effect of history time has been discussed, and an improved method is presented. Moreover, the effect of lateral separation distance is also discussed in detail. The technique developed here may serve as a more rigorous tool to analyze the related transient problems of two ships doing underway replenishment in waves. 展开更多
关键词 3D time domain hydrodynamic interaction underway replenishment
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