首页> 外文会议>Advances in Computational Methods in Sciences and Engineering 2005 vol.4A; Lecture Series on Computer and Computational Sciences; vol.4A >Co-firing Different Types of Biomass as a Contribution to Households' Energy Independence and Environment Protection at Local Level
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Co-firing Different Types of Biomass as a Contribution to Households' Energy Independence and Environment Protection at Local Level

机译:共同燃烧不同类型的生物质,以促进当地家庭的能源独立和环境保护

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This paper deals mainly with (ⅰ) establishing a network of processing/storing/transshipment (PST) pointsodes receiving raw biomass from concentration points and dispatching processed biomass to consumers or downstream stores and (ⅱ) appling a GIS-based technique for locating the PST points that may help potential supply of biomass to meet the potential demand of households, under the least total cost assumption. A bioenergy sustainability index (BSI) is also proposed, based on thermochemical calculations, for providing a measure of substituting processed biomass fortconventional fuels that are regularly used for heating in household activities. An implementation is presented for the district of East Macedonia and Thrace in North Greece, including five prefectures. We have proved that a GIS properly applied can correlate biomass exploitation policy with the particular characteristics of each region, leading to optimal location of biomass processing units and generally to better distribution/allocation of the available resources with technoeconomic and environmental criteria.
机译:本文主要涉及(ⅰ)建立处理/存储/转运(PST)点/节点网络,从集中点接收原始生物量并将处理后的生物量分发给消费者或下游商店,以及(ⅱ)应用基于GIS的技术进行定位PST点可以在最低总成本假设下帮助潜在的生物质供应满足家庭的潜在需求。还提出了一种基于热化学计算的生物能源可持续性指数(BSI),以提供一种方法来代替通常用于家庭活动取暖的常规燃料的加工生物量。提出了针对希腊北部的东马其顿和色雷斯地区(包括五个县)的实施方案。我们已经证明,适当应用的GIS可以将生物质开发政策与每个区域的特定特征相关联,从而导致生物质处理单元的最佳位置,并且通常可以根据技术经济和环境标准更好地分配/分配可用资源。

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