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首页> 外文期刊>Transactions of the Institution of Mining and Metallurgy, Section A. Mining Technology >Potential of on-board energy recovery systems to reduce haulage costs over the life of a deep surface mine
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Potential of on-board energy recovery systems to reduce haulage costs over the life of a deep surface mine

机译:车载能量回收系统的潜力降低运输成本在深的生活我表面

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The installation of energy recovery systems (ERSs) on-board diesel-electric mine haul trucks to capture energy when braking and re-inject stored energy on acceleration and ramp ascent, is proposed to reduce haul costs in surface mining. ERSs would add to equipment cost and reduce truck payload, reducing productivity and effectively increasing other haul-related costs. However, stored energy could reduce fuel consumption and could be used to reduce cycle time thereby improving productivity when conditions are favourable. This paper investigates how the installation of fixed size electro-mechanical flywheel (EMFW) or lithium iron phosphate (LiFePO_4) based ERSs could affect the overall cost of truck haulage over the 20-year life of a metalliferous surface mine reaching 600 m deep. The simulation study suggests LiFePO_4 technology can be expected to provide significantly greater haul cost reductions than the EMFW technology by reducing haul costs by 1.4-6.2% depending on the energy re-injection strategy employed.
机译:能量回收系统的安装(人)车载柴油运输卡车捕获制动时能量和重新存储精力加速度和斜坡上升提出了在地表采矿减少运输成本。人队将增加设备成本和减少卡车有效载荷,降低生产率和增加其他haul-related成本。能减少燃料消耗和存储能量从而可以用来减少周期时间在适宜的条件下提高生产力有利的。固定大小的机电的安装飞轮(EMFW)或磷酸亚铁锂基于(LiFePO_4)的人可能影响整体卡车运输成本在20年的生活金属的表面我达到600米深。仿真研究表明LiFePO_4技术可以提供更高吗拉比EMFW技术降低成本1.4 - -6.2%取决于降低运输成本能源re-injection战略工作。

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