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首页> 外文期刊>Journal of Agricultural Science >Influence of Soil on the Traction Performance of a 65 kW MFWD Tractor
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Influence of Soil on the Traction Performance of a 65 kW MFWD Tractor

机译:土壤对65 kW MFWD拖拉机牵引性能的影响

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This study aimed to investigate the influence of the mechanical behaviour of the soil surface on the traction performance and the fuel consumption of an agricultural tractor, both in qualitative and in quantitative terms, in order to increase the consciousness about the major role of the soil mechanical response in the optimisation of the energy aspects involved in the traction developed by a tractor and promote the development of new strategies to reduce costs of tillage management and improve agricultural sustainability.The traction performance of a 65kW MFWD tractor at tyre pressures of 60 and 160 kPa was compared on four Swiss agricultural soils: a clay with corn stubbles, a clay loam with wheat stubbles, a silty loam and a loamy sand both with corn stubbles.Tests performed with a bevameter pointed out noticeable differences in the mechanical behaviour of the soils.According to such differences, the drawbar pull on the four soils was significantly disparate with differences in maximal values of about 16% at a tyre pressure of 60 kPa and up to 37% at a tyre pressure of 160 kPa.Simulations with a semi-empirical tractor-soil interaction model also showed dissimilarities in traction coefficient, motion resistance, and traction efficiency.Measurements of the fuel consumption pointed out the presence of a narrow slip range where the specific fuel consumption SFC is minimised.This range doesn't vary significantly among the considered soils as well as with the tyre pressure and doesn't differ very much from the range where the power delivery efficiency is maximised.The SFC differed for almost 20% among the considered soils at a tyre pressure of 60 kPa and for ca.10% at a tyre pressure of 160 kPa.The increase in tyre pressure from 60 to 160 kPa produced an increment in SFC up to 16%.The results of this study clearly pointed out how the traction performance is a characteristic of the tractor-soil system and not of the tractor only, therefore, a proper knowledge of the soil mechanical behaviour should aid in developing strategies oriented towards reducing fossil fuel consumption.
机译:这项研究旨在从定性和定量方面研究土壤表面力学行为对农用拖拉机的牵引性能和燃料消耗的影响,以提高人们对土壤力学主要作用的认识。应对拖拉机开发的牵引力相关能源方面的优化问题,并推动制定新战略以降低耕作管理成本并提高农业可持续性。轮胎功率为60和160 kPa时65kW MFWD拖拉机的牵引性能在四种瑞士农业土壤上进行了比较:一种是玉米秸秆的粘土,一种小麦秸秆的粘土壤土,一种是粉壤土,一种是玉米秸秆质的壤土。用比重计进行的测试指出了土壤机械性能的显着差异。根据这种差异,四种土壤上的牵引杆拉力明显不同,最大拉力也不同。轮胎压力为60 kPa时的最大数值约为16%,轮胎压力为160 kPa时的最高数值高达37%。半经验拖拉机与土壤相互作用模型的模拟也显示出牵引系数,运动阻力和牵引效率存在差异燃油消耗量的测量结果表明存在一个狭窄的滑差范围,在该范围内,特定的燃油消耗量SFC最小化,该范围在考虑的土壤中以及轮胎压力之间变化不大,与在考虑的土壤中,轮胎压力为60 kPa时,SFC的差异接近20%;轮胎压力为160 kPa时,SFC的差异约为10%。轮胎压力从60升高到250 kPa。 160 kPa使SFC的增量提高了16%。这项研究的结果明确指出,牵引性能是拖拉机-土壤系统的特征,而不仅仅是拖拉机的特征,因此,对土壤有一个适当的了解。机械行为应有助于制定减少化石燃料消耗的策略。

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