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Optimized Design and Predicted Performance of a Deep Ocean 50 M Piston Coring System

机译:深海50 m活塞取心系统的优化设计和预测性能

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Calculational techniques are described which were developed or adapted for the purpose of analyzing the mechanical response of a proposed piston coring system capable of recovering high quality 50 m long cores. The analysis includes the effects of barrel geometry on the mass required to penetrate 50 m of an assumed sediment, the effects of non-vertical entry and pullout on the stresses within the barrel, and the effects of steel cable or parachute piston restraints on the resulting core sample distortion. The results show that a wall thickness of 50 mm in the upper section is necessary to survive an entry of up to 1.5 exp 0 from vertical or a recovery angle of up to 5 exp 0 . They also show that a mass of 15,400 kg and a pullout force of 330 kN are required. It is shown that active piston control is necessary to eliminate piston motion during penetration. (ERA citation 05:032711)

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