首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >FULL-SCALE MEASUREMENTS ON A POLAR SUPPLY AND RESEARCH VESSEL DURING MANEUVER TESTS IN AN ICE FIELD IN THE BALTIC SEA
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FULL-SCALE MEASUREMENTS ON A POLAR SUPPLY AND RESEARCH VESSEL DURING MANEUVER TESTS IN AN ICE FIELD IN THE BALTIC SEA

机译:波罗的海冰场机动试验期间极性供应和研究船的全尺寸测量

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Full-scale measurements were performed on the Polar Supply and Research Vessel, the S.A. Agulhas Ⅱ during ice-trials in the Baltic Sea. Ice loads on the ship hull and propulsion system were measured concurrently with ice-thickness and whole-body vibration comfort for controlled maneuvers in a level ice field. These measurements were aimed at establishing the links between ice-properties, hull- and shaft loads and the vibration feedback received by the operator of the vessel. Results indicate that maneuvers significantly increase the frequency and magnitude of ice loads at the stern shoulder area as well as the ice impacts on the propellers. The number of ice impacts on the instrumented port side shaft line increased for turning maneuvers in a starboard direction. Occupants on the Bridge did not receive feedback through vibration transmission from ice impacts on the hull as a time-history of discrete events. Instead, ice passage excites the global bending modes of the vessel. Blade impacts between ice debris and the propellers are however perceivably transmitted to vessel operators. Although vibration exposure on the bridge is increased by operations in ice subjective experiences of vibration did not reach levels that caused discomfort.
机译:在波罗的海的冰试期间,在极地供应和研究船S.A. AgulhasⅡ上进行了满度测量。同时测量了船体和推进系统上的冰负荷,以及冰厚和全身振动舒适度,以在水平冰原上进行受控操纵。这些测量旨在建立冰层特性,船体和轴载荷与船舶操作员接收到的振动反馈之间的联系。结果表明,演习显着增加了船尾肩部区域冰载荷的频率和强度,以及冰对螺旋桨的影响。为了在右舷方向上进行转向,增加了对仪表板左舷轴线上的冰冲击的数量。作为离散事件的时间历史记录,桥上的乘员没有通过冰撞击船体而通过振动传递得到反馈。取而代之的是,冰通道激发了船舶的整体弯曲模式。然而,可以感觉到的是,冰屑和螺旋桨之间的叶片撞击传递给了船舶操作员。尽管在冰上进行操作会增加桥上的振动暴露,但振动的主观感受并未达到引起不适的水平。

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