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首页> 外文期刊>Applied Energy >Robust bioenergy technologies for the German heat transition: A novel approach combining optimization modeling with Sobol' sensitivity analysis
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Robust bioenergy technologies for the German heat transition: A novel approach combining optimization modeling with Sobol' sensitivity analysis

机译:适用于德国热变的可靠生物能源技术:一种将优化建模与Sobol敏感性分析相结合的新颖方法

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摘要

Uncertainties are one of the major challenges of energy system optimization models (ESOM), yet little use is made of systematic uncertainty assessments in ESOM-based analyses. In this paper, an ESOM is combined with the global sensitivity analysis of Sobol' to identify robust, competitive bioenergy technologies to fulfill the climate targets in the German heat sector under uncertain developments. Through the outlined method, only three out of 32 investigated parameters were identified to have uncertainties with significant impacts on the future competitiveness of bioenergy technologies: the power price, gas price and the defined climate target. Based on these findings, a solution space is quantified showing which bioenergy technologies are robust, competitive options under the uncertainty of the three influencing parameters. The use of biomass in the form of wood chips in (high temperature) industry applications is found to be the most robust choice in all cases, while hybrid combined heat and power wood pellet systems are an additional robust option when future power prices are increasing. Both technologies have the potential to close gaps in a sustainable energy system and should be considered for the future use of biomass in the German heat sector, when designing policies.
机译:不确定性是能源系统优化模型(ESOM)的主要挑战之一,但在基于ESOM的分析中很少使用系统的不确定性评估。在本文中,将ESOM与Sobol'的全球敏感性分析相结合,以确定可靠的,具有竞争力的生物能源技术,以在不确定的发展情况下实现德国供热部门的气候目标。通过概述的方法,在确定的32个调查参数中,只有3个具有不确定性,这些不确定性会对生物能源技术的未来竞争力产生重大影响:电价,天然气价格和确定的气候目标。基于这些发现,对解决方案空间进行了量化,以显示在三个影响参数不确定的情况下,哪些生物能源技术是可靠的竞争选择。在所有情况下,在(高温)工业应用中以木屑形式使用生物质被认为是最可靠的选择,而当未来电价上涨时,混合式热电联产木屑颗粒系统则是另一种健壮的选择。两种技术都有可能弥合可持续能源系统中的空白,在设计政策时应考虑将其用于德国供热领域中生物质的未来使用。

著录项

  • 来源
    《Applied Energy》 |2020年第15期|1066-1078|共13页
  • 作者

  • 作者单位

    UFZ Helmholtz Ctr Environm Res Permoserstr 15 D-04318 Leipzig Germany|Univ Leipzig Inst Infrastruct & Resources Management Grimma Str 12 D-04109 Leipzig Germany;

    UFZ Helmholtz Ctr Environm Res Permoserstr 15 D-04318 Leipzig Germany;

    UFZ Helmholtz Ctr Environm Res Permoserstr 15 D-04318 Leipzig Germany|DBFZ Deutsch Biomasseforsch Zentrum gGmbH Torgauer Str 116 D-04347 Leipzig Germany|Univ Leipzig Inst Infrastruct & Resources Management Grimma Str 12 D-04109 Leipzig Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Heat sector; Bioenergy; Optimization; Sensitivity analysis; Sobol';

    机译:热力部门;生物能源优化;敏感性分析;索博尔;

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