首页> 外文会议> >Industry - more than just processes: a combined stock-model approach to quantify the energy saving potential for space heating in European industry
【24h】

Industry - more than just processes: a combined stock-model approach to quantify the energy saving potential for space heating in European industry

机译:工业-不仅仅是过程:一种组合的库存模型方法来量化欧洲工业中空间供暖的节能潜力

获取原文

摘要

Space heating accounts for around 10 % of industrial final energy demand in Europe. This was equivalent to about 1,500 PJ in 2010, and exceeded the energy demand of energy-intensive sectors such as the European paper and printing industry. Studies of the residential sector have shown that improved building standards as well as new and more efficient heating technologies can significantly reduce the energy demand of buildings. Despite the high relevance of industrial space heating, so far, hardly any study has analysed its energy saving potential. We present a holistic approach to modelling the development of the energy demand for space heating for the EU27 until 2030 using a combined building and heating stock model. One of the main challenges when modelling space heating in industry is the lack of empirical data. Our methodology tackles this challenge by using distribution functions as input parameters where necessary. In this way, our approach bridges gaps in the input data and benefits from the advantages of a stock model at the same time. Furthermore, the stock model identifies major drivers of energy demand and plots a "realistic" diffusion of new technologies resulting from the replacement of heating systems/ buildings. The adoption of new technologies is modelled using a logit approach to reflect investment decisions based on total-costs-of-ownership and to take market heterogeneity into account. Additionally, the approach considers the shares of phased-out heating systems to reflect path-dependency. We apply this model to a base scenario and then conduct sensitivity analyses, in which we analyse the effect of different potential policies on industrial buildings. The results indicate that the long-term energy saving potentials from space heating are relatively high with nearly 700 PJ compared to saving potentials in sectors like the iron and steel or pulp and paper industry. The results clearly justify the need for further analysis of this very important but currently mostly neglected end-use.
机译:空间供暖约占欧洲工业最终能源需求的10%。这相当于2010年的约1,500 PJ,超过了欧洲造纸和印刷行业等能源密集型行业的能源需求。对住宅部门的研究表明,提高建筑标准以及新型更高效的供暖技术可以显着降低建筑物的能源需求。尽管工业空间供热的重要性很高,但迄今为止,几乎没有任何研究分析其节能潜力。我们提出了一种整体方法,使用组合的建筑和供热存量模型对欧盟27国直到2030年的空间供暖能源需求的发展进行建模。对工业空间供热进行建模的主要挑战之一是缺乏经验数据。我们的方法通过在必要时使用分布函数作为输入参数来解决此难题。这样,我们的方法可以弥合输入数据中的差距,并同时受益于股票模型的优势。此外,库存模型确定了能源需求的主要驱动力,并绘制了由于更换供暖系统/建筑物而导致的新技术的“现实”扩散。采用logit方法对新技术的采用进行建模,以反映基于总拥有成本的投资决策并考虑市场异质性。此外,该方法考虑了逐步淘汰的供热系统的份额,以反映路径依赖性。我们将此模型应用于基本方案,然后进行敏感性分析,在其中分析不同的潜在政策对工业建筑的影响。结果表明,与钢铁,纸浆和造纸等行业的节能潜力相比,空间供暖的长期节能潜力相对较高,接近700 PJ。结果清楚地证明有必要对这一非常重要但目前几乎被忽略的最终用途进行进一步分析。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号