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A modelling approach for the assessment of an air-dryer economic feasibility for small-scale biomass steam boilers

机译:用于评估小型生物质蒸汽锅炉空气干燥器经济可行性的建模方法

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Fuel drying is an energetically and economically expensive pretreatment process, which may not be worth the investment in the case of small-scale generation plants. This paper presents an investigation on the air dryer feasibility to enhance the operation of biomass steam boiler. In the proposed approach, the external drying technology using preheated air and the biomass steam production system is modelled in terms of energy and an economical analysis. A focus is given to the system size influence on the dryer economic suitability: the smallest size of the biomass combustion system for which fuel drying is a suitable solution, from the economic point of view, is computed. In the computations, the heat used for drying is assumed to be part of the cost for operating the dryer and the thermal balance of the system is assumed to be previously verified. According to the model results, if the steam production plant operational time is above 8000 h/y, wood chips drying is feasible if the system size is larger than 1.78 t(daf)/h of fuel processed. (C) 2015 Elsevier B.V. All rights reserved.
机译:燃料干燥是一种能量和经济昂贵的预处理过程,可能在小规模的植物的情况下可能不值得投资。本文提出了对增强生物质蒸汽锅炉运行的空气干燥器可行性的研究。在所提出的方法中,使用预热空气和生物质蒸汽生产系统的外部干燥技术在能量方面和经济分析。对系统尺寸对干燥器经济适宜性的影响:计算燃料干燥是一种合适的解决方案的最小尺寸,从经济的角度来看,是一种燃料干燥的最小尺寸。在计算中,假设用于干燥的热量是操作干燥器的成本的一部分,并且假设系统的热平衡预先验证。根据模型结果,如果蒸汽生产厂运行时间超过8000小时,木屑干燥是可行的,如果系统尺寸大于1.78 T(DAF)/ h加工的燃料。 (c)2015 Elsevier B.v.保留所有权利。

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