Research on the Capacity of In-Depth Peak Regulation of Large-Scale Heat Supply Unit Based on Characteristics of Thermal Storage of Heat Supply Network and Buildings

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Abstract:

Against the backdrop that wind power is always abandoned in heat supply period in winter after wind power is taken into power grid in northern areas of China and there exists a big proportion of large-scale heat supply units in power grid, a method for in-depth peak regulation of large-scale heat supply unit based on characteristics of thermal storage of heat supply network and buildings is put forward in this paper, and a mathematical model for in-depth peak regulation is established. The calculation in a case indicates that the change of heat production of large-scale heat supply unit will not affect the quality of heat supply to a certain extent. During heat supply period, thermal load of heat supply network shall be moderately lowered to coordinate with the in-depth peak regulation when power grid is at its low ebb, and heat supply shall be moderately decreased based on characteristics of thermal storage of heat supply network and buildings when the peak regulation capacity of power grid is very limited, which indicates that it is feasible and practical to help power grid go through its low ebb with the peak regulation capacity gained here. Through the mathematical model established in this paper, time of thermal storage and thermal release as well as such units capacity of in-depth peak regulation can be calculated, which provides a scientific basis for dispatcher of power grid to conduct in-depth peak regulation of heat supply unit.

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187-195

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February 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Beijing Zhengdian International Investment Consultancy. Report on Investment Analysis and Prospect Forecast of Industry of Wind Power Generation Equipments in China from 2012 to 2016 [R]. Beijing: Beijing Zhengdian International Investment Consultancy, (2012).

Google Scholar

[2] Xuefei Bai, Lihong Wang and Ronghua Du. The Influence of Large-scale Integration of Wind Power on the Capability of Peak Regulation of Power Grid of West Inner Mongolia [J]. Inner Mongolia Electric Power, 2010, 28(1) p : 1-3.

DOI: 10.1109/iceceng.2011.6058501

Google Scholar

[3] Hao Jiang. Research on the Acceptance of Wind Power Abandoned by Thermal Power Plant Based on Electric Boiler [D]. Dalian: Dalian University of Technology. (2011).

Google Scholar

[4] Hongyu Long, Ruilin Xu, Guojun He, et al. Analysis on the System Daily Capacity of Peak Regulation Based on Coordinated Dispatching of Thermoelectricity and Wind Power [J]. Power System Automation, 2013, 33 (4) p : 30-34.

Google Scholar

[6] Shanshan Yuan. Study on the Thermal Dynamic Characters of Central Heating System [D]. Tianjin: Tianjin University. (2011).

Google Scholar

[7] Ping He and Gang Sun. Heat-supply Engineering (the Third Edition) [M]. Beijing: China Architecture & Building Press, (1993).

Google Scholar

[8] Ovylyanskii. Ya.A. The Development of District Heating in Russia. Thermal Engineering. 2000 (47) p : 1051-1055.

Google Scholar

[9] Zhijiang Zhang and Jiusheng Shi. Mathematical Model of Intermitting Heating by Hot Water [J]. Heat Ventilation and Air-conditioning, 2001, 31(2) p : 80-82.

Google Scholar

[10] Yu Zhang, E Zhijun, Weiping Liu, et al. On the Study and Application of Capability of Peak Regulation for CHP Units [J]. Proceedings of the CSU-EPSA, 2013, 25 (3) p : 115-118.

Google Scholar