首页> 外文会议>AiCARR International Congress >On the optimal mix between lead-acid battery and thermal storage tank for PV and heat pump systems in high performance buildings
【24h】

On the optimal mix between lead-acid battery and thermal storage tank for PV and heat pump systems in high performance buildings

机译:高性能建筑中PV和热泵系统的铅酸电池和热储罐的最佳混合

获取原文

摘要

The coming into force of the European Directive 2009/28/CE [1] increases the role of renewable energy sources to satisfy the energy consumptions of new buildings and major renovations. In this respect, the vapor-compression heat pump coupled with PV panels is a promising solution and, consequently, it is increasingly used for residential heating applications. This HVAC solution is especially advantageous in high performance building when low temperature hydronic systems are adopted. However, in these buildings some issues arise in the HVAC control and the building might be easily subject to poor comfort conditions when approaching the nZEB target while maintaining economical convenience. Besides, the seasonal performance of the heating system is strongly dependent on the HVAC design. Hence, the optimal size of the storage components is a key aspect in order to maximize the renewable coverage factor, overcoming the shift in time between PV production and energy demand. For this reason, different strategies may be adopted such as the thermal storage tank or the electricity storage in lead-acid battery. This paper analyses the mix among the thermal storage tank, the lead-acid battery and the thermal capacitance of the building envelope for the optimal design solutions in three Italian climates. The complex interactions among building, occupants, weather conditions and HVAC systems are considered by means of a dynamic simulation tool. The optimal design solutions were studied, according to the cost optimal approach of the EPBD context, by means of a genetic algorithm developed in Matlab~R. The energy performance for heating (EPh) and the net present value (NPV) are considered as competitive goals.
机译:欧洲指令2009/28 / CE [1]的生效增加了可再生能源的作用,以满足新建筑和重大装修的能源消耗。在这方面,与PV面板耦合的蒸汽压缩热泵是有希望的解决方案,因此越来越多地用于住宅供热应用。当采用低温水力系统时,该HVAC解决方案在高性能建筑中特别有利。然而,在这些建筑物中,HVAC控制中出现的一些问题,并且在保持NEZEB目标时,在保持经济方便时,建筑物可能很容易受到舒适条件的差。此外,加热系统的季节性性能强烈依赖于HVAC设计。因此,存储组件的最佳尺寸是一个关键方面,以最大化可再生覆盖因子,克服光伏生产和能量需求之间的时间变换。因此,可以采用不同的策略,例如热储罐或铅酸电池中的电力储存。本文分析了蓄热罐,铅酸电池和建筑包络的热电容中的混合,以实现三种意大利气候的最佳设计解决方案。通过动态仿真工具考虑建筑物,乘客,天气条件和HVAC系统之间的复杂交互。通过在Matlab〜R开发的遗传算法,根据EPBD上下文的成本最佳方法研究了最佳设计解决方案。用于加热(EPH)和净现值(NPV)的能量性能被认为是竞争目标。

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