李勇

  • Personal Information
  • Name (Pinyin): Li Yong
  • School/Department: 建筑设备科学与工程学院
  • Education Level: PhD student
  • Degree: Doctoral degree
  • Professional Title: Associate Professor
  • Status: Employed
  • Academic Titles: 绿色建筑全国重点实验室能源利用中心
  • Alma Mater: 西安交通大学

Paper Publications

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A framework for the design of a direct coupled photovoltaic heating system for remote areas

Release time:2026-04-16
Hits:
DOI number:
10.1016/j.renene.2025.122696
Affiliation of Author(s):
西安建筑科技大学
Journal:
Renewable Energy
Key Words:
Remote area Space heating Direct coupled system Framework
Abstract:
In order to overcome the challenges associated with clean energy heating in remote areas, promote the further electrification of building space heating and enhance the installed capacity of photovoltaic systems, thereby alleviating the light abandonment in areas with high solar potential, this paper presents a novel design framework, namely the Evangel framework. The objective is to provide design guidance for the configuration of equipment capacity in direct coupled photovoltaic electric heater underfloor heating system with phase change materials in remote areas. A methodology for determining the optimal sizing of photovoltaic modules and electric heaters based on non-guaranteed hours is put forward. Moreover, the analysis considers the average indoor temperature and fluctuations in indoor temperature on typical days, with the objective of optimising the phase change material parameters. The Evangel framework is employed in this study to provide recommended capacity configurations for this system in typical cities in Tibet. The findings of the system performance analyses indicate that a rational phase change material design can markedly enhance the system’s heating efficacy in comparison to a system devoid of phase change material. The results demonstrate that the framework can be effectively applied to the design of direct coupled photovoltaic heating system in remote areas, thereby meeting the local heating demand to a certain extent.
Co-author:
Yong Li,Huilin Zhou,Qi Zhang,Yanfeng Liu,Peng Lei
First Author:
Yuxiang Liang
Indexed by:
Journal paper
Correspondence Author:
Dengjia Wang,Dengwei Jing
Discipline:
Engineering
Document Type:
J
Volume:
244
Page Number:
122696
ISSN No.:
09601481
Translation or Not:
no
Date of Publication:
2025-01-01
Included Journals:
SCI、EI