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首页> 外文期刊>Biomass & bioenergy >Modeling and analysis of renewable heat integration into non-domestic buildings - The case of biomass boilers: A whole life asset-supply chain management approach
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Modeling and analysis of renewable heat integration into non-domestic buildings - The case of biomass boilers: A whole life asset-supply chain management approach

机译:可再生热集成到非住宅建筑中的建模和分析-生物质锅炉的案例:终身资产供应链管理方法

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This study proposes a whole life asset-supply chain optimization model for integration of biomass boilers into non-domestic (non-residential) buildings, under a renewable heat incentive scheme in the UK. The proposed model aims at identifying the optimal energy generation capacities and schedules for biomass and backup boilers, along with the optimal levels of biomass ordering and storage. The sensitivity of these decisions are then analyzed subject to changes in source, types and pricing of biomass materials as well as the choice of technologies and their cost and operational performance criteria. The proposed model is validated by applying it to a case study scenario in the UK. The results indicate that a Renewable Heat Incentive scheme could incentivize the adoption of biomass boilers, with a 3 to 1 ratio for biomass and backup boilers' utilization. As such, the findings from this study will be useful for industry managers, tasked with the decision of which biomass boiler system to utilize, considering the support from RHI. On the other hand, it is shown that RHI does not provide encouragement for efficiency when it comes to the choice of biomass technologies and fuels. This presents itself as a major implication for the success and sustainability of the UK government's renewable heat incentive scheme.
机译:这项研究提出了一种全寿命资产供应链优化模型,该模型在英国的可再生热激励计划下将生物质锅炉集成到非住宅(非住宅)建筑中。提出的模型旨在确定生物质和备用锅炉的最佳发电量和时间表,以及生物质的最佳订购和存储水平。然后根据生物质材料的来源,类型和价格以及技术选择及其成本和运营绩效标准的变化来分析这些决策的敏感性。通过将其应用于英国的案例研究场景,对提出的模型进行了验证。结果表明,可再生热激励计划可以激励生物质锅炉的采用,生物质和备用锅炉的利用率为3:1。因此,这项研究的发现对工业管理者很有用,他们需要考虑RHI的支持,决定使用哪种生物质锅炉系统。另一方面,表明在选择生物质技术和燃料时,RHI并未为效率提供鼓励。这本身就是英国政府可再生热激励计划成功与可持续发展的重要意义。

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