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STEAM AND POWER GENERATION EXPANSION AT LAUTOKA MILL, FIJI

机译:斐济劳托卡磨坊的蒸汽和发电扩展

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This paper describes the methodology used in selecting a new boiler and a new turbo-generator to overcome the shortages in steam and power at Lautoka Mill, Fiji, which had become serious due to increases in crushing rate and deteriorating condition of plant. The steam pressure in the corporation's mills was increased from 1030 kPa to 1720 kPa about 10 years ago. With the need for a new boiler and turbogenerator an opportunity presented itself to investigate higher pressures and to investigate the possibility of generating electrical power in excess of internal requirements. Steam balances were made for various conditions of pressure, crushing rates for the intermediate and future years and allowing for aged plant to be de-commissioned at the right time. The most cost effective combination of steam pressure and temperature was determined for the prevailing conditions, including the inexperience of staff in maintenance of relatively high pressure equipment. It was found that a steam pressure of 3310 kPag and a temperature of 360℃ would serve best. There was no difficulty in sizing the boiler and turbo-generator from the energy balances and other considerations. The capacities were 200 tonnes per hour for the boiler and 12 MW for the turbo-generator. This paper also describes the commissioning and operation of the new system. The level of exportable power has been very rewarding and the overall operation of the existing mill machinery has been enhanced through the ability to maximise the steam pressure at the user.
机译:本文介绍了用于选择新锅炉和新涡轮发电机的方法,以克服斐济Lautoka工厂的蒸汽和电力短缺,该问题由于压碎率的提高和工厂状况的恶化而变得越来越严重。公司工厂中的蒸汽压力从1030 kPa增加到大约10年前的1720 kPa。由于需要新的锅炉和涡轮发电机,因此有机会研究更高的压力并研究产生超出内部需求的电力的可能性。在中间和未来几年中,针对各种压力条件,破碎率进行了蒸汽平衡,并允许在适当的时间停用老化的工厂。蒸汽压力和温度的最具成本效益的组合是针对当前条件确定的,包括工作人员缺乏维护相对高压设备的经验。结果表明,蒸汽压力为3310 kPag,温度为360℃效果最佳。从能量平衡和其他考虑出发,确定锅炉和涡轮发电机的尺寸没有困难。锅炉每小时200吨,涡轮发电机每小时12兆瓦。本文还介绍了新系统的调试和操作。可输出功率的水平非常可观,并且通过最大程度提高用户蒸汽压力的能力,现有磨机的整体运行得到了增强。

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