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Modeling of Dynamic and Economical Characteristics of Life-Saving Device with Flywheel Energy Storage

机译:飞轮储能救生装置动态和经济特性建模

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This article will initially consider the life-saving appliance dynamic model accompanied with computation and analysis of its variables. This life-saving appliance can be used in case of fire on the drilling platforms. The flywheel energy storage converts energy of descent to the rotational energy of the flywheel. After the launch, stored energy can be used to rotate the propeller of survival capsule to increase the distance from the fire. This kind of construction allows decreasing the number of maintenance operations. Moreover, there can be lack of energy in emergency cases. It points out one more profit of this appliance. This life-saving appliance is also analyzed from the economical point of view, and the authors have suggested an economical efficiency Criterion as a marker. The results of variables computation and modeling should be taking into account while developing the construction. The modeling analysis shows the great potential of this life-saving appliance as reliable and safe.
机译:本文最初将考虑伴随其变量计算和分析的救生设备动态模型。在钻井平台上的火灾情况下可以使用这种救生设备。飞轮储能将下降的能量转换为飞轮的旋转能量。发射后,储存能量可用于旋转生存胶囊的螺旋桨,以增加距火灾的距离。这种结构允许降低维护操作的数量。此外,在紧急情况下可能缺乏能量。它指出了这家设备的更多利润。从经济的观点分析了这种救生设备,作者提出了一种作为标记的经济效率标准。在开发建筑时,应考虑变量计算和建模的结果。建模分析显示了这种救生设备的巨大潜力,可靠和安全。

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