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The model to define optimum volume for slurry tanker

机译:确定泥浆罐车最佳容积的模型

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The capacity of a slurry tanker is affected by different variables. According to previous studies, the most significant influence is the tank volume. In the present version of the selection model of a tanker a pattern is composed to determine the optimum volume for a slurry tanker. The aim of the paper is to introduce the pattern and give an overview of the model. The optimality criterion is minimum slurry distribution cost. In the results the importance of optimum value for tank volume is discussed and the impact of a non-optimal solution is explained. The the impact of the parameters on distribution costs is also clarified. The calculations show that the bigger the annual amount, the longer the transportation distance is and the shorter the tolerated distribution period – then the bigger the optimum value is for the tank size if slurry is transported with the distributor itself. Only for short distances (3 km) and big slurry amounts (4,000 m3 ) is the transportation with the distributor itself a cost benefit. However, in most of the cases it is cheapest to use a separate tanker for slurry transportation, while the distance has no effect on the optimum size of a distributor tank. There, in most cases only one set of the application equipment is required to supply the farm with sufficient distribution capacity. If an annual amount is 4,000 m3 or less then a 5 m3 tank is sufficient to serve a farm with the required distribution capacity. If an annual amount is 8,000 m3 then a 10 m3 tank is optimal.
机译:浆液罐车的容量受不同变量的影响。根据以前的研究,最重要的影响是罐的容积。在当前版本的油轮选择模型中,组成图案以确定用于油轮的最佳容积。本文的目的是介绍模式并提供模型概述。最佳标准是最小的浆料分配成本。在结果中,讨论了罐容积最佳值的重要性,并解释了非最优解决方案的影响。还阐明了参数对分销成本的影响。计算结果表明,年用量越大,运输距离就越长,允许的分配期越短–如果将浆料与分配器一起运输,则罐尺寸的最佳值越大。仅对于短距离(<3 km)和大泥浆量(> 4,000 m3),使用分配器本身进行运输才具有成本优势。但是,在大多数情况下,使用单独的油轮运输泥浆是最便宜的,而距离对分配箱的最佳尺寸没有影响。在那里,在大多数情况下,仅需要一套应用设备即可为农场提供足够的配送能力。如果年使用量为4,000立方米或更少,那么5立方米的储罐就足以为具有所需分配能力的农场提供服务。如果年产量为8,000立方米,那么10立方米的储罐是最佳选择。

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