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Combine Harvester Fuel Consumption and Air Pollution Reduction

机译:结合收割机燃料消耗和空气污染减少

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Agricultural production has a major impact on the environment. Indeed, the emissions from agricultural machinery have a significantly negative impact on ambient air, thereby contributing to Climate Change. This study analyses combine harvesters and justifies their optimization in order to increase resource efficiency as well as reduce any negative impact on the environment. Data from 90 combine harvesters in Lithuania and Latvia from 2016 to 2018 is collected using telematics, and the parameters that directly influence engine exhaust emissions are analyzed, such as operation time, grain unloading method, fuel consumption, and auto-steering, according to the engine-operating modes of harvesting, transportation, and idling. Statistically reliable strong correlations can be found between harvesting time and idling time, as well as between fuel consumption during harvesting and idling modes. On average, roughly 20% of the operating time consists of idling and roughly 15% of transportation; moreover, roughly 14% of the diesel fuel is used per year in the aforementioned engine modes. In addition, the auto-steering function enables the efficient use of diesel fuel (average cost per combine harvester is reduced by 0.2 t year(-1)), thereby reducing air pollution (pollution per combine harvester is reduced on average by 0.6 t year(-1)). The results suggest telematics system data can be effectively used for data analysis, problem identification, and decision-making with respect to pollution prevention and optimizing combine harvester operation.
机译:农业生产对环境产生了重大影响。实际上,农业机械的排放对环境空气产生显着负面影响,从而有助于气候变化。本研究分析了结合收割机,并证明了它们的优化,以提高资源效率,减少对环境的任何负面影响。使用远程信息处理收集来自2016年至2018年立陶宛和拉脱维亚的90个联合收割机,并使用远程学,直接影响发动机排放的参数,如操作时间,谷物卸载方法,燃料消耗和自动转向。发动机运行模式收获,运输和空转。在收获时间和空转时间之间可以找到统计上可靠的强相关,以及在收获和空转模式期间的燃料消耗之间找到。平均而言,大约20%的经营时间包括空转和大约15%的运输;此外,上述发动机模式下,每年使用大约14%的柴油燃料。此外,自动转向功能可以有效地使用柴油(每个组合收割机的平均成本减少0.2吨(-1)),从而降低空气污染(每个组合收割机的污染平均降低0.6吨(-1))。结果表明远程信息处理系统数据可以有效地用于对污染防范和优化组合收割机操作的数据分析,问题识别和决策。

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