首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >THRUSTER-INTERACTION EFFECTS ON A DP SEMI-SUBMERSIBLE AND A DRILL SHIP: MEASUREMENT AND ANALYSIS OF THE THRUSTER WAKE FLOW
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THRUSTER-INTERACTION EFFECTS ON A DP SEMI-SUBMERSIBLE AND A DRILL SHIP: MEASUREMENT AND ANALYSIS OF THE THRUSTER WAKE FLOW

机译:DP半潜水和钻船的推进器相互作用效应:推进器唤醒流程的测量和分析

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Thruster-interaction model tests were carried out in MARIN's Deepwater Towing Tank. Detailed PIV measurements were performed of the wake flow behind the azimuthing thrusters on two different DP vessels, a Semi-submersible and a Drill Ship. The flow velocities were measured in a large number of cross sections at different distances from the thrusters. The PIV measurements provide a detailed image of the flow velocities in the thruster wake, showing the axial velocities, as well as the transverse and vertical velocity components. First, measurements were carried out on a DP Semi-submersible (scale 1:40), which was equipped with 8 azimuthing thrusters. The results of the PIV measurements show the wake flow, interacting with nearby thrusters and the opposite pontoon of the semi-submersible. An example is shown in Figure 1 below. Deflection of the thruster wake, caused by the Coanda effect, was observed. The results for thrusters with a 7 deg downward tilt were compared with the results for thrusters with a horizontal propeller axis. Furthermore, the effect of ambient current was investigated. Second, measurements were carried out on a DP Drill Ship (scale 1:40), which had 6 azimuthing thrusters. The results of these PIV measurements also gave insight in the wake flow behind the azimuthing thrusters and the interactions between neighbouring thrusters. An example is shown in Figure 2 below. In this case, special attention was paid to the development of the thruster wake along the vessel length, up to a distance of more than 40D downstream. The results of the present research are used to further improve the understanding of the physics of thruster interaction effects. Furthermore, the results will serve as validation material for CFD calculations that are foreseen in the near future.
机译:推进器相互作用模型测试是在Marin的深水牵引箱中进行的。在两种不同DP容器上,半潜水和钻船上进行详细的PIV测量。在来自推动器的不同距离的大量横截面中测量流速。 PIV测量提供了推进器唤醒中的流速的详细图像,示出了轴向速度,以及横向和垂直速度分量。首先,在DP半潜水(SCALE 1:40)上进行测量,其配备了8个Azimuthiming推进器。 PIV测量结果显示了唤醒流程,与附近推进器相互作用和半潜式的相对浮桥。一个例子如下图1所示。观察到由柯恩达效应引起的推进器尾迹的偏转。将带有7°向下倾斜的推进器的结果与水平螺旋桨轴线的推进器进行比较。此外,研究了环境电流的影响。其次,在DP钻船上进行测量(缩放1:40),其具有6个azimuth推进器。这些PIV测量的结果也使得欣醒在Azimuthing推进器后面的唤醒流程以及相邻推进器之间的相互作用。一个例子如下图2所示。在这种情况下,特别注意沿着船长的推进器唤醒的发展,下游高达40d的距离。本研究的结果用于进一步改善对推进器相互作用效应物理学的理解。此外,结果将作为在不久的将来预见的CFD计算的验证材料。

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