首页> 外文会议>European Photovoltaic Solar Energy Conference and Exhibition >SOLAR POTENTIAL ON COMMERCIAL TRUCKS: RESULTS OF AN IRRADIANCE MEASUREMENT CAMPAIGN ON 6 TRUCKS IN EUROPE AND USA
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SOLAR POTENTIAL ON COMMERCIAL TRUCKS: RESULTS OF AN IRRADIANCE MEASUREMENT CAMPAIGN ON 6 TRUCKS IN EUROPE AND USA

机译:商用卡车的太阳能潜力:欧洲6辆卡车的辐照度测量运动结果

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The use of photovoltaic modules on commercial trucks is considered to be a promising way to reduce fuel consumption and thus carbon dioxide emissions in the transportation sector [1, 2]. For refrigerating trucks, the energy demand (cooling energy) and availability (solar energy) are in close time correlation making the use of solar assisted cooling obvious. Several approaches and prototypes have been published since the early 90's [1-4], however, this technology has not experienced a commercial breakthrough yet. One reason for this stagnation is the uncertainty of payback time of such systems and reported technical drawbacks [5]. To overcome this reluctancy precise energy yield information is necessary to feed resilient return on investment calculations. In this work we present the result of a solar irradiance measurement campaign on 6 truck roofs operating in central Europe and north-eastern US. It is found that the best performing truck has the potential of a fuel saving of about 2113 L diesel/year and that the fuel saving potential strongly depends on the usage scenario of the truck. We find the operating conditions in the collected data to differ significantly from STC and typical PV application with 50% of the measured samples having an average daytime irradiance level below 200W/m~2 and 80% an average operating temperature below 25°C. In summary a cost competitive usage of photovoltaic systems on truck roofs seems possible but with tailored usage scenarios.
机译:在商业卡车上使用光伏模块被认为是降低燃料消耗的有希望的方式,从而进行运输部门的二氧化碳排放[1,2]。对于制冷卡车,能源需求(冷却能源)和可用性(太阳能)是在密切的时间相关性,使得使用太阳能辅助冷却明显。自90年代早期[1-4]以来已经发表了几种方法和原型,然而,这项技术尚未经历过商业突破。这种停滞的一个原因是这种系统投资回收期的不确定性,并报告了技术缺点[5]。为了克服这种不稳定的精确能源收益率信息对于饲养弹性投资计算需要提供信息。在这项工作中,我们展示了在中欧和美国东北部运营的6辆卡车屋顶上的太阳辐照度测量运动结果。结果发现,最好的表演卡车具有约2113升柴油/年的燃料节省,并且节省燃料潜力强烈取决于卡车的使用情况。我们发现收集数据中的操作条件与STC和典型的PV应用有显着不同,其中50%的测量样品具有低于200w / m〜2和80%的平均工作温度低于25℃的平均辐照度水平。总之,卡车屋顶上的光伏系统的成本竞争使用似乎可能,但具有量身定制的使用情况。

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