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Emission and Fuel Reduction for Offshore Support Vessels through Hybrid Technology

机译:通过混合技术对海上支撑船的排放和燃油减少

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Traditionally offshore support vessels have been designed to ensure that they can perform their duties at nearly any sea state. This has been achieved through multiple engines and advanced dynamic positioning systems. This in combination with high safety standards set by the oil companies has resulted in a general operational pattern with vessels running multiple engines at low to medium loads to be prepared for unexpected incidents to happen at any time. At medium to high power the combustion engine produces each kWh with the lowest fuel consumption and the lowest emissions. When engines operate at low power, fuel consumption per kWh produced increases. For the cost of the operation, this increase in specific fuel consumption at lower loads makes a small impact compared to the total cost of the operation, while for emissions low loads implies that emissions of exhaust gases such as nitrogen oxides (NOx) and aerosols such as black carbon (BC) increases rapidly due to less favorable combustion conditions. This study investigates potential emission and fuel consumption reductions which can be achieved by introduction of hybrid technologies including their climate mitigation potential. In this context hybrid means engines of different sizes, battery storage of energy to take peak power requirements, and power management systems with a more balanced focus on reducing emissions and energy consumption while maintaining a high safety standard. Our results indicate that hybrid technologies reduce both emissions and fuel consumption and that the climate impact of the emission reduction is much larger than the impact due to the reduction in fuel consumption alone.
机译:传统上,海上支持船只旨在确保他们可以在几乎任何海州履行职责。这已通过多个发动机和先进的动态定位系统实现。这与石油公司设定的高安全标准组合导致了一般的操作模式,其中船舶运行多个发动机,以便在任何时候准备出乎意料的事件发生意想不到的事件。在媒体到高功率,燃烧发动机产生具有最低燃料消耗和最低排放的每千瓦时。当发动机以低功率运行时,每千瓦时的燃料消耗产生增加。为了运行的成本,与操作的总成本相比,较低负载下的特定燃料消耗的这种增加的增加,而对于排放的低负荷意味着排气等氮氧化物(NOx)和气溶胶等排放由于黑碳(BC)由于燃烧条件不太有利的燃烧条件而迅速增加。本研究调查了通过引入包括其气候缓解潜力的混合技术可以实现的潜在排放和燃料消耗。在这种上下文中,混合动力装置是不同尺寸的发动机,能量的电池存储能够采取峰值功率要求,以及电源管理系统,具有更加平衡的重点,以减少排放和能耗,同时保持高安全标准。我们的结果表明,混合动力技术减少排放量和燃料消耗,减少减排的气候影响远大于单独燃料消耗量的影响。

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