基于热电的生物质燃料储能系统的初步设计

Eka Septiyadi, E. Firmansyah, F. Danang Wijaya
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引用次数: 4

摘要

在像印度尼西亚这样的群岛国家,农村电气化是一个挑战。印尼政府表示,电力的基本需求是60千瓦时,但要满足这一需求并不容易。幸运的是,印尼拥有丰富的生物质资源。因此,将生物质能转化为电能可能是解决国家电力问题的一种方法。研究了一种由生物质燃烧器和热电发电机组成的简易热能收集系统。引进热水储存装置以提供稳定的温度。本文具体报道了该系统的燃料储存机理。研究了两种燃料储存机制:集成化储存和批量储存。综合储存是一种包括在能量收集装置上的燃料储存设施,用于短期运行,而批量储存位于能量收集装置的外部,通常用于长期运行。根据颗粒型规格,参照EN 14961-1标准,计算得出,一体化燃料储存型运行168小时的最大容积为0.345 m3,散装燃料储存型运行6个月的最大容积为4.728 m3。
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Preliminary design of biomass fuel storage on a thermoelectric based biomass-electric energy conversion
Rural electrification in an archipelago country like Indonesia is a challenge. Indonesian government has stated that basic need of electricity is 60 kWh, however it is not easy to fulfill it. Fortunately, Indonesia is rich in biomass potency. Therefore, converting biomass energy to electricity might be a solution to the country electricity problem. A simple thermal energy harvesting system comprised of biomass burner and thermoelectric generator was investigated. Hot water storage was introduced to provide steady temperature. This paper specifically reported about the fuel storage mechanism of the proposed system. Two fuel storage mechanisms are investigated: integrated and bulk storage types. Integrated storage is a fuel storage facility that is included on energy harvesting device which useful in short-term operation, while bulk storage is located external of energy harvesting device which normally used for long-term operation. Based on the specification of pellet type, which is referred to EN 14961-1 standard, calculation shown that the largest volume of integrated fuel storage type for 168 hours of operation is 0.345 m3, while the bulk fuel storage type is 4.728 m3 for 6 months of operation.
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