Study on the Application of Urban and Rural Construction Model of Smart New Energy

ZHU Bingsen , LIU Yebing, OU Weiying, BO Zhiqian

Distributed Energy ›› 2021, Vol. 6 ›› Issue (1) : 56-61.

PDF(1430 KB)
PDF(1430 KB)
Distributed Energy ›› 2021, Vol. 6 ›› Issue (1) : 56-61. DOI: 10.16513/j.2096-2185.DE.2012006
Application Technology

Study on the Application of Urban and Rural Construction Model of Smart New Energy

Author information +
History +

Abstract

This paper proposed a new concept of urban and rural construction based on smart new energy. A field research was conducted on the current heating situation, current situation of biomass resources and Hongcun mining area multi-energy complementary heating project in Dawa district, Panjin, and it was found that this region is suitable for construction of new energy——increase household photovoltaic heating and small-scale biomass power generation on the basis of existing clean energy heating system and a regional distributed integrated energy system, which is based on the power grid and integrates multiple clean energy inputs, could be formed. The technical and business models of the above-mentioned subsystems were also studied. On this basis, the future distributed integrated energy micro grid construction in Panjin area was prospected.

Key words

smart urban and rural / household photovoltaic heating / biomass power generation / distributed integrated energy micro grid / technical patterns / business model

Cite this article

Download Citations
Bingsen ZHU , Yebing LIU , Weiying OU , et al. Study on the Application of Urban and Rural Construction Model of Smart New Energy[J]. Distributed Energy Resources. 2021, 6(1): 56-61 https://doi.org/10.16513/j.2096-2185.DE.2012006

References

[1]
刘畅,卓建坤,赵东明,等. 利用储能系统实现可再生能源微电网灵活安全运行的研究综述[J]. 中国电机工程学报2020, 40(1): 1-18.
LIU Chang, ZHUO Jiankun, ZHAO Dongming, et al. A review on the utilization of energy storage system for the flexible and safe operation of renewable energy microgrids[J]. Proceeding of the CSEE, 2020, 40(1): 1-18.
[2]
张慧,陶小马. 丹麦农村新能源建设及其对我国的启示[J]. 上海农业学报2016, 32(1): 100-105.
ZHANG Hui, TAO Xiaoma. Danish construction of rural new energy and enlightenment to China[J]. Acta Agriculturae Shanghai, 2016, 32(1): 100-105.
[3]
谷鹏,陈浩,刘迪. 加快新能源进程 促进新农村建设[J]. 农业环境与发展2008, 12(6): 41-43.
GU Peng, CHEN Hao, LIU Di. Speed up the process of new energy and promote the construction of new countryside[J]. Agro-Environment and Development, 2008, 12(6): 41-43.
[4]
夏宗鹏,杨孟军,陈冠益,等. 生物质气化燃气和沼气分散供热经济与环境效益分析[J]. 农业工程学报2014, 30(13): 211-218.
XIA Zongpeng, YANG Mengjun, CHEN Guanyi, et al. Economic and environmental analysis of decentralized heating using biomass gasification gas and household biogas in rural areas[J]. Transactions of the CSAE, 2014, 30(13): 211-218.
[5]
陈艳. 新型城镇化进程中杭州农村能源生态建设发展之路[J]. 农业环境与发展2013, 30(4): 91-94.
CHEN Yan. Energy-efficient Ecosystem construstion and development in rural area of Hangzhou city against the back-drop of new urbanization[J]. Agro-Environment and Development, 2013, 30(4): 91-94.
[6]
彭克,张聪,徐丙垠,等. 多能协同综合能源系统示范工程现状与展望[J]. 电力自动化设备2017, 37(6): 3-10.
PENG Ke, ZHANG Cong, XU Bingyin, et al. Status and prospect of pilot projects of integrated energy system with multi-energy collaboration[J]. Electric Power Automation Equipment, 2017, 37(6): 3-10.
[7]
崔琼,黄磊,舒洁,等. 多能互补分布式能源系统容量配置和优化运行研究现状[J], 新能源进展2019, 7(3): 263-270.
CUI Qiong, HUANG Lei, SHU Jie, et al. Research status of capacity configuration and optimal operation for multi-energy complementary distributed energy system[J]. Advances in New and Renewable Enengy, 2019, 7(3): 263-270.
[8]
田浩含,撖奥洋,于立涛,等. 基于GRA-LSTM神经网络的区域综合能源系统多元负荷短期预测模型[J]. 广东电力2020, 30(5): 44-51.
TIAN Haohan, HAN Aoyang, YU Litao, et al. Research on multi-load short-term forecasting model of regional integrated energy system based on GRA-LSTM neural network[J]. Guangdong Electric Power, 2020, 30(5): 44-51.
[9]
刘叶冰,王旭,薄志谦,等. 基于新型多模态共网逆变器的城市级建筑光伏应用[J]. 电力系统保护与控制2014, 42(5): 17-20.
LIU Yebing, WANG Xu, BO Zhiqian, et al. City level building integrated PV applications based on multi-modal grid co-existence inverter[J]. Power System Protection and Control, 2014, 42(5): 17-20.
[10]
刘叶冰. 一种光伏电蓄热采暖系统的控制器:CN201611043507.0[P]. 2017-02-08.
[11]
刘叶冰. 一种光伏电蓄热采暖系统的控制方法:CN201611043508.5[P]. 2017-02-22.
[12]
刘叶冰. 一种光伏电蓄热采暖系统装置:CN201611043509.X[P]. 2017-02-15.
[13]
刘叶冰. 一种户用光伏采暖商业模式的计算方法:CN201910026247.3[P]. 2019-01-11.
[14]
刘叶冰. 一种户用光伏采暖项目建设的商业模式方法:CN201910026248.8[P]. 2019-05-24.

Funding

China Association for Science and Tech-nology 2019 Innovation Driven Engineering Project(ZLGC201901-01)
PDF(1430 KB)

Accesses

Citation

Detail

Sections
Recommended

/