分布式能源技术在内蒙古地区应用的可行性分析

王瑾瑾,金光,王宇星,郝楠,郭少朋

分布式能源 ›› 2018, Vol. 3 ›› Issue (1) : 50-57.

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PDF(15393 KB)
分布式能源 ›› 2018, Vol. 3 ›› Issue (1) : 50-57. DOI: 10.16513/j.cnki.10-1427/tk.2018.01.008

分布式能源技术在内蒙古地区应用的可行性分析

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Feasibility Analysis on Distributed Energy Technology in Inner Mongolia

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摘要

为推广分布式能源技术在内蒙古地区的发展,通过分析内蒙古地区能源资源现状,总结分布式能源在内蒙古地区的相关政策,并针对典型地区用户进行经济性分析,对分布式能源技术在内蒙古地区的应用进行可行性研究。结果表明,内蒙古具有天然气、太阳能、风能及生物质能等多种清洁能源,且储量可观,为发展分布式能源技术提供了基础;其次,政府颁布的一系列分布式能源技术发展的引导性文件,促进了该技术在内蒙古地区的发展;另外,经济性分析表明,采用太阳能-天然气互补系统的投资回收期为7 a,内部收益率为19%,投资利税率为20.49%, CO2和NOx减排率分别为53.96%和69.27%,具有较高的经济性和环保效益。综上,分布式能源技术在内蒙古地区的应用和推广是可行的。

Abstract

To improve the development of distributed energy technology in Inner Mongolia, this paper analyzes the current situation of energy resources in Inner Mongolia and summarizes the relevant development policies of distributed energy technology in Inner Mongolia. Besides, according to the economy of distributed energy system in typical area, this paper studies the feasibility of distributed energy technology applied in Inner Mongolia area. The results show that Inner Mongolia is rich in natural gas, solar, wind, biomass energy and other clean energy, which can provide a basis for the development of distributed energy technology. Secondly, the government has issued a series of guidance documents for the development of distributed energy technology, which has promoted the development of the technology in Inner Mongolia. In addition, the economic analysis shows that the payback period of the solar-natural distributed energy system is 7 years, the internal rate of return is 19%, the investment profit tax rate is 20.49%, the CO2 and NOx emission reduction rates are 53.96% and 69.27% respectively, which has high economic and environmental benefits. In conclusion, the application and popularization of distributed energy in Inner Mongolia area is feasible.

关键词

分布式能源系统 / 可行性 / 资源储量 / 政策引导 / 效益分析

Key words

distributed energy system / feasibility / resource reserves / policy guidance / benefit analysis

引用本文

导出引用
王瑾瑾, 金光, 王宇星, . 分布式能源技术在内蒙古地区应用的可行性分析[J]. 分布式能源. 2018, 3(1): 50-57 https://doi.org/10.16513/j.cnki.10-1427/tk.2018.01.008
Jinjin WANG, Guang JIN, Yuxing WANG, et al. Feasibility Analysis on Distributed Energy Technology in Inner Mongolia[J]. Distributed Energy Resources. 2018, 3(1): 50-57 https://doi.org/10.16513/j.cnki.10-1427/tk.2018.01.008

参考文献

[1]
内蒙古自治区统计局. 能源消费总量[EB/OL]. [2017-03-02].
[2]
内蒙古自治区统计局. 包头市规模以上工业能源消费结构分析[EB/OL]. (2017-11-06)[2017-11-08].
[3]
中华人民共和国国家统计局. BP世界能源统计年鉴[M]. 北京:中国统计出版社,2015.
[4]
CHO H, MAGO P J, LUCK R, et al. Evaluation of CCHP systems performance based on operational cost, primary energy consumption and carbon dioxide emission by utilizing an optimal operation scheme[J]. Applied Energy, 2009(86): 2540-2541.
[5]
金红光隋军徐聪,等. 多能源互补的分布式冷热电联产系统理论与方法研究[J]. 中国电机工程学报2016, 36(12): 3151-3154.
JIN Hongguang, SUI Jun, XU Cong, et al. Research on theory and method of multi-energy complementary distributed CCHP system[J]. Proceedings of the CSEE, 2016, 36(12): 3151-3154.
[6]
LIU Liuchen, ZHU Tong, PAN Yu, et al. Multiple energy complementation based on distributed energy systems-case study of Chongming county, China[J]. Applied Energy, 2017(192): 329-336.
[7]
蔡强任洪波班银银,等. 我国分布式能源发展现状与展望[C]//高等教育学会工程热物理专业委员会第二十一届全国学术会议,扬州,2015.
[8]
赵萍. 包头供电局填补全区分布式能源无线接入技术空白[J]. 内蒙古电力技术2015, 33(3): 100.
ZHAO Ping. Baotou power supply bureau fills the gap of distributed energy wireless access technology in the whole area[J]. Inner Mongolia Electric Power, 2015, 33(3): 100.
[9]
侯倩. 内蒙古首个天然气分布式能源项目环保效益出众[EB/OL]. (2017-03-02)[2017-11-02].
[10]
文洪江. 新疆地区天然气分布式能源发展前景[J]. 化工设计通讯2016, 42(5): 202.
WEN Hongjiang. Xinjiang natural gas distributed energy development prospects[J]. Chemical Engineering Design Communications, 2016, 42(5): 202.
[11]
万怡兵. 四川地区建立燃气分布式能源系统的可行性分析[J]. 低碳世界2017(29): 31-33.
WAN Yibing. Feasibility analysis of establishing gas distributed energy system in Sichuan area[J]. Low Carbon World, 2017(29): 31-33.
[12]
姜广厚韩景宇赵铭姝. 沈阳市推广天然气分布式能源可行性探讨[J]. 现代商贸工业2017(10): 20-21.
JIANG Guanghou, HAN Jingyu, ZHAO Mingshu. Feasibility study on spreading natural gas distributed energy in Shenyang[J]. Modern Business Trade Industry, 2017(10): 20-21.
[13]
俞利锋王伟. 天然气分布式能源在浙江的发展前景分析[J]. 中外能源2014, 19(1): 99-103.
YU Lifeng, WANG Wei. Development prospect analysis of natural gas distributed energy in Zhejiang[J]. SINO-Global Energy, 2014, 19(1): 99-103.
[14]
许静李占芳. 天然气分布式能源在辽宁的应用前景及工作建议[J]. 辽宁经济2012(7): 22-27.
XU Jing, LI Zhanfang. Application prospect and work suggestion of natural gas distributed energy in Liaoning[J]. Liaoning Economy, 2012(7): 22-27.
[15]
NOMAGUCHI Y, TANAKA H, SAKAKIBARA A. Integrated planning of low-voltage power grids and subsidies toward a distributed generation system case study of the diffusion of photovoltaic in a Japanese dormitory town[J]. Energy, 2017(140): 779-793.
[16]
VAISANEN S, MIKKILA M, HAVUKAINEN J. Using a multi-method approach for decision-making about a sustainable local distributed energy system: a case study from Finland[J]. Journal of Cleaner Production, 2016(137): 1330-1338.
[17]
焦光华. 分布式屋顶太阳能光伏发电项目可行性研究[J]. 内蒙古煤炭经济2014(5): 7-8.
JIAO Guanghua. Feasibility study on distributed roof solar photovoltaic power generation project[J]. Inner Mongolia Coal Economy, 2014(5): 7-8.
[18]
郝志强. 天然气清洁能源发展趋势以及内蒙古战略研究[D]. 呼和浩特:内蒙古大学,2014.
HAO Zhiqiang. The development trend of natural gas clean energy and the study of Inner Mongolia strategy[D]. Hohhot: Inner Mongolia University, 2014.
[19]
郭俊楼许军. 长—呼天然气管道复线全线通气[EB/OL]. (2012-10-16)[2017-10-10].
[20]
彭军杨智奇董菁雯. 内蒙古太阳能资源的分布特征与光伏发电开发的可行性分析[J]. 太阳能2011(3): 42-47.
PENG Jun, YANG Zhiqi, DONG Jingwen. Distribution characteristics of solar energy resources in Inner Mongolia and feasibility analysis of photovoltaic power generation[J]. Solar Energy, 2011(3): 42-47.
[21]
郭春燕. 1963—2012年内蒙古自治区风速的时空变化特征分析[J]. 内蒙古气象2015(4): 18-22.
GUO Chunyan. Analysis of spatial and temporal variation characteristics of wind speed in the Inner Mongolia Autonomous Region from 1963 to 2012[J]. Meteorology Journal of Inner Mongolia, 2015(4): 18-22.
[22]
李月王喜明. 内蒙古自治区农作物秸秆能源化利用现状及展望[J]. 内蒙古农业大学学报2008, 29(3): 148-151.
LI Yue. WANG Ximing. The status and prospect on utilization in energy of crop straws in Inner Mongolia[J]. Journal of Inner Mongolia Agricultural University, 2008, 29(3): 148-151.
[23]
内蒙古自治区财政厅. 内蒙古自治区合同能源管理财政奖励资金管理实施细[Z]. 2010.
[24]
中国航空工业规划设计研究院. 工业与民用配电设计手册[M]. 2版. 北京. 中国电力出版社,2005.
[25]
任守红. 呼和浩特市酒店空调系统节能改造试点研究[D]. 北京:北京建筑工程学院,2008.
REN Shouhong. Experimental research on energy saving transformation of Hohhot hotel air conditioning system[D]. Beijing: Beijing Institute of Construction and Engineering, 2008.
[26]
JU Liwei, TAN Zhongfu, LI Huanhuan, et al. Multi-objective operation optimization and evaluation model for CCHP and renewable energy based hybrid energy system driven by distributed energy resources in China[J]. Energy, 2016(111): 322-340.
[27]
全国地面光伏电站最佳安装角度及发电量速查表[EB/OL]. (2016-03-14)[2017-09-10].
[28]
朱俊生. 中国新能源和可再生能源发展状况[J]. 可再生能源2003, 21(2): 3-8.
ZHU Junsheng. The development of new and renewable energy in China[J]. Renewable Energy, 2003, 21(2): 3-8.
[29]
谢东刘慧张籍,等. 小规模分布式光伏发电系统用户侧经济性分析[J]. 可再生能源2015, 33(5): 736-740.
XIE Dong, LIU Hui, ZHANG Ji, et al. Economic analysis on user side of small scale distributed photovoltaic power generation system[J]. Renewable Energy, 2015, 33(5): 736-740.
[30]
汪海贵薛飞张鲲鹏,等. 天然气热气机的小型热电冷联供系统研究和经济分析[J]. 柴油机2004(4): 4-9.
WANG Haigui, XUE Fei, ZHANG Kunpeng, et al. Research and economy analysis on small combined heat-power-cool system based on stirling engine[J]. Diesel Engine, 2004(4): 4-9.
[31]
内蒙古调整非居民用天然气价格[EB/OL]. (2015-08-13)[2017-09-20].
[32]
内蒙古自治区发展和改革委员会. 内蒙古自治区发展和改革委员会关于在蒙西电网实施输配电价改革试点工作的通知[EB/OL]. (2015-10-26)[2017-09-25].
[33]
张丹. 分布式供能系统经济收益分析中冷热价的确定[J]. 煤气与热力2010, 30(5): 24-26.
ZHANG Dan. Determination of cold price and heat price in analysis of economic benefit from distributed energy supply system[J]. Gas & Heat, 2010, 30(5): 24-26.
[34]
呼和浩特取暖费价格不变[EB/OL]. (2015-10-13)[2017-10-10].
[35]
王维龙陈俏慧丁静. 珠三角地区分布式能源系统评价[C]//中国工程热物理学会工程热力学与能源利用学术会议,江苏,2011.
[36]
陈月佳. 对分布式能源系统的经济性分析[D]. 邯郸:河北工程大学,2014.
CHEN Yuejia. Economic analysis of distributed energy system[D]. Handan: Hebei University of Engineering, 2014.
[37]
康腾. 临沂鲁商中心城市综合体项目财务效益评估[D]. 青岛:中国海洋大学,2015.
KANG Teng. The financial benefit evaluation of urban complex project of ‘Lin Yi Lu Shang Center’[D]. Qingdao: Ocean University of China, 2015.
[38]
WANG Lang, LU Jianfeng, WANG Weilong. Energy environmental and economic evaluation of the CCHP systems for a remote island in south of China[J]. Applied Energy, 2016 (183): 874-883.
[39]
张丹汝宋月平. 某工业园分布式能源项目的经济可行性分析[J]. 建筑节能2015, 43(1): 120-124.
ZHANG Danru, SONG Yueping. Economy feasibility analysis on distributed energy system in an industrial park project[J]. Building Energy Conservation, 2015, 43(1): 120-124.
[40]
白田田. 多能源互补的分布式冷热电联供系统的优化运行研究[D]. 保定:华北电力大学,2016.
BAI Tiantian. Research on optimal operation of distributed cold and heat combined supply system with multiple energy complementary[D]. Baoding: North China Electric Power University, 2016.
[41]
孔祥强李瑛王如竹,等. 燃气轮机冷热电联供系统优化与节能经济性研究[J]. 暖通空调2005, 35(7): 4-8.
KONG Xiangqiang, LI Ying, WANG Ruzhu, et al. Energy efficiency and economic analysis of CCHP driven by gas turbine based on optimization[J]. HA&VC, 2005, 35(7): 4-8.
[42]
刘爱国. 我国南方地区燃气轮机分布式功能系统的研究[D]. 北京:中国科学院,2009.
LIU Aiguo. Study on the distributed functional system of gas turbine in the south of China[D]. Beijing: Chinese Academy of Sciences, 2009.
[43]
中华人民共和国国家质量监督检验检疫总局,中国国家标准化管理委员会. GB/T2589—2008,综合能耗计算通则[S]. 北京:中国标准出版社,2008.
[44]
国家发展改革委关于调整光伏发电陆上风电标杆上网电价的通知[EB/OL]. (2016-12-26)[2017-12-20].
[45]
梁哲诚陈颖罗向龙,等. 分布式能源系统在广州某大型酒店的应用[J]. 四川建筑科学研究2013, 39(5): 304-308.
LIANG Zhecheng, CHEN Ying, LUO Xianglong, et al. Application of distributed energy system in a large hotel in Guangzhou[J]. Sichuan Building Science, 2013, 39(5): 304-308.
[46]
国电电力优化管理供电煤耗持续降低[EB/OL]. (2016-02-22)[2017-08-22].
[47]
王卫琳李洁赖建波,等. 天然气分布式能源系统节能减排效益分析[J]. 煤气与热力2013, 33(8): 23-24.
WANG Weilin, LI Jie, LAI Jianbo, et al. Efficiency analysis of energy saving and emission reduction of natural gas distributed energy system[J]. Gas & Heat, 2013, 33(8): 23-24.
[48]
梁哲诚. 基于广东公共建筑的分布式能源系统的优化设计及经济性分析[D]. 广州:广东工业大学,2013.
LIANG Zhecheng. Optimization design and economic analysis of distributed energy system based on Guangdong public building[D]. Guangzhou: Guangdong University of Technology, 2013.
[49]
内蒙古首家10千伏分布式光伏发电项目并网成功落户固阳[EB/OL]. (2015-06-25)[2017-08-25].

基金

内蒙古自治区创新引导基金项目(2017CXYD-1)
内蒙古自治区自然科学基金项目(2014MS0530,2015MS0561,2016BS0512)
内蒙古科技大学创新基金优秀青年项目(2017YQL07)

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