首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part M. Journal of Engineering for the Maritime Environment >Response of a direct-drive large marine two-stroke engine coupled to a selective catalytic reduction exhaust aftertreatment system when operating in waves
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Response of a direct-drive large marine two-stroke engine coupled to a selective catalytic reduction exhaust aftertreatment system when operating in waves

机译:在波浪中操作时,直驱大型海上行程发动机耦合到选择性催化还原废气后处理系统的响应

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摘要

Large two-stroke marine diesel engines are used as the prime mover in the majority of ocean going commercial vessels and are currently facing new stringent NOx emission reductions. Selective catalytic reduction is an aftertreatment technology which is able to reduce emitted NOx at allowable levels. In most marine applications, the selective catalytic reduction system is placed on the high pressure side of the turbine, due to limitations at the exhaust gas temperature at the inlet of selective catalytic reduction system. In this article, the operation of a large two-stroke marine diesel with a selective catalytic reduction aftertreatment system, is investigated in heavy weather conditions. Operation of a vessel in heavy weather results in increased ship resistance, wave-induced ship motions, and a highly varying flow field in the propeller due to ship motions. This results in a fluctuation of propeller demanded torque and hence a fluctuation in engine load and exhaust gas temperature which may affect engine and selective catalytic reduction performance significantly. To investigate this phenomenon and taking into account the engine-propeller interaction, the entire propulsion system was modeled, namely the propulsion engine, the high pressure selective catalytic reduction system, the directly driven propeller, and the ship's hull. A propeller model was employed to simulate the transient propeller torque demand and torque fluctuations due to ship motions. A three-dimensional six degrees of freedom panel code was used to calculate ship motions and wave added resistance in regular waves. The coupled model of the marine propulsion plant was validated against available measured data from a ship-board propulsion system on good weather conditions. The model was then used to simulate the behavior of the system during transient loading conditions in the presence of regular waves.
机译:大型两冲程海洋柴油发动机被用作大多数海洋移动商业船舶的主要动力,目前正面临着新的严格性的NOx排放减少。选择性催化还原是一种后处理技术,能够在允许水平下减少发射的NOx。在大多数海洋应用中,由于在选择性催化还原系统入口处的排气温度下的限制,选择性催化还原系统放置在涡轮机的高压侧。在本文中,在重度天气条件下研究了具有选择性催化还原后处理系统的大型两冲程海洋柴油的操作。由于船舶运动导致船舶电阻,波动舰艇的船舶,波动造成船舶运动和螺旋桨中的高度变化的流场的运行导致船舶的血管增加。这导致螺旋桨要求扭矩的波动,因此发动机负荷和废气温度的波动可能影响发动机和选择性催化还原性能显着。为了研究这种现象并考虑到发动机 - 螺旋桨相互作用,整个推进系统被建模,即推进发动机,高压选择性催化还原系统,直接驱动的螺旋桨和船的船体。采用螺旋桨模型来模拟由于船舶运动而导致的瞬态螺旋桨扭矩需求和扭矩波动。三维六个自由度面板代码用于计算常规波的船舶运动和波浪附加电阻。在良好的天气条件下,验证了海洋推进装置的耦合模型,从船上推进系统进行了验证。然后,该模型用于在常规波存在下瞬态加载条件期间模拟系统的行为。

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