首页> 外文会议>ISES solar world congress >A Comparative Cost Assessment of Low Carbon Process Heat Between Solar Thermal and Heat Pumps
【24h】

A Comparative Cost Assessment of Low Carbon Process Heat Between Solar Thermal and Heat Pumps

机译:太阳能热泵低碳工艺热量的比较成本评价

获取原文

摘要

Lower temperature renewable process heat derived from the sun can be generated from solar thermal collectors and a photovoltaic powered heat pump. To determine which can produce lower cost heat under certain technical and financial parameters, a robust methodology was developed to determine the maximum solar thermal project investment for it to remain the lower cost technology. This result can also serve as a target for the solar thermal industry to ensure its role in the future of renewable heat. The assessment methodology was used in a case study analysis, consisting of typical industrial process heat load and temperature profiles, meteorological conditions, technology costs and performance. Results indicated that for constant energy demand processes when a heat pump can operate the majority of the year, a photovoltaic heat pump system delivers lower cost heat. In a typical five day one shift work week where a heat pump has limited access to a heat source, solar thermal remains the lower cost heat provider. For the same five day one shift case but without a constrained heat source, allowing the heat pump to operate for 2000 hours a year, solar thermal plants must be built for less than 250 €/m_(ap)~2 in low irradiation regions like Copenhagen and 525 €/m_(ap)~2 in high irradiation regions like Chile or North Africa. For solar thermal to remain a primary renewable heat provider in the future, project investments should consistently be less than 200 €/m_(ap)~2. The presented results are highly variable based on numerous technical and financial parameters. Therefore the use of the methodology described in this work is critical to quickly determine which technology produces lower cost solar derived renewable heat.
机译:较低的温度可再生过程可以从太阳能热量器和光伏动力热泵产生源自太阳的热量。为了确定其在某些技术和金融参数下可以产生更低的成本热量,开发了一种强大的方法,以确定其仍然是较低的成本技术的太阳能热项目投资。该结果也可以作为太阳能热产业的目标,以确保其在可再生热的未来作用。评估方法用于案例研究分析,包括典型的工业过程热载荷和温度曲线,气象条件,技术成本和性能。结果表明,对于恒定的能量需求过程,当热泵可以运行一年中的大部分时,光伏热泵系统可提供更低的成本热量。在典型的五天一个换档工作周,其中热泵的进入热源有限,太阳能热仍然是较低的成本供热剂。对于同一个五天的一个换档盒但没有约束的热源,允许热泵每年运行2000小时,太阳能热电厂必须在低辐射区域中少于250欧元/ m_(ap)〜2,如哥本哈根和525€/ m_(ap)〜2,如智利或北非等高辐照区域。对于未来的太阳能热量,仍然是主要可再生热提供者,项目投资应始终如一地低于200€/ m_(ap)〜2。由于众多技术和财务参数,所提出的结果是高度变化的。因此,在本作中描述的方法的使用对于快速确定哪种技术产生更低的太阳能衍生的可再生热量至关重要。

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