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Implementing Onshore Power Supply from renewable energy sources for requirements of ships at berth

机译:从可再生能源实现陆上电力供应,以满足泊位船舶的需求

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摘要

An investigation on the power requirements of ships at berth for implementing Offshore Power Supply (OPS) is presented. It is highlighted that this technology acts as a suitable measure for reducing air pollution in port areas. The study is conducted for Cartagena Port (Spain), analyzing the data port traffic in the period 2010-2016. Accurate predictions of energy consumption of auxiliary engines based on experimental data provided by Port Authority lead to obtain the hourly energy consumption for each kind of vessel. A Monte Carlo procedure is applied to the variability assessment of both the power and the energy demand. The renewable energy resources available at Cartagena area are considered. Solar, onshore and offshore wind resources are assessed for supplying the energy demand. The solar resource reveals as important, but not sufficient; therefore, wind resource deserves a special attention. In particular, FAST/Aerodyn/Hydrodyn codes are used for determining the wind power capacity. The benefits of OPS technology are demonstrated, following the trends observed in the literature. The impact on reduction of Green House Gases (GHG) and other pollutant gases is estimated and the Energy Efficiency Design Index (EEDI) is calculated. As a relevant result, more than 10,000 tons of CO2 per year could be reduced. The related policy implications of the presented purpose have been discussed.
机译:提出了对泊位上实施海上电源(OPS)的船舶功率需求的调查。需要强调的是,这项技术是减少港口地区空气污染的合适措施。该研究针对西班牙卡塔赫纳港口进行,分析了2010-2016年期间的数据港口流量。根据港务局提供的实验数据,准确预测辅助发动机的能耗,可以得出每种船舶的每小时能耗。将蒙特卡洛程序应用于功率和能量需求的可变性评估。考虑了卡塔赫纳地区可用的可再生能源。对太阳能,陆上和海上风能进行了评估,以满足能源需求。太阳能资源显示出重要但不充分;因此,风资源值得特别关注。特别地,FAST / Aerodyn / Hydrodyn代码用于确定风力容量。遵循文献中观察到的趋势,证明了OPS技术的好处。估算了对减少温室气体(GHG)和其他污染物气体的影响,并计算了能效设计指数(EEDI)。因此,每年可以减少10,000吨以上的CO2。已经讨论了所提出目的的相关政策含义。

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