CIESC Journal ›› 2020, Vol. 71 ›› Issue (S1): 293-299.DOI: 10.11949/0438-1157.20191155
• Process system engineering • Previous Articles Next Articles
Xiaoyu GUO(),Zhe TIAN(),Jide NIU,Jie ZHU
Received:
2019-10-10
Revised:
2019-11-04
Online:
2020-04-25
Published:
2020-04-25
Contact:
Zhe TIAN
通讯作者:
田喆
作者简介:
郭晓雨(1994—),女,硕士研究生,基金资助:
CLC Number:
Xiaoyu GUO, Zhe TIAN, Jide NIU, Jie ZHU. Study on energy storage of regional pipe network system based on time-of-use pricing[J]. CIESC Journal, 2020, 71(S1): 293-299.
郭晓雨, 田喆, 牛纪德, 祝捷. 基于分时电价的区域管网系统储能应用研究[J]. 化工学报, 2020, 71(S1): 293-299.
Add to citation manager EndNote|Ris|BibTeX
电价时段 | 价格/ (CNY/(kW·h)) | 时段 |
---|---|---|
高峰 | 1.1609 | 14:00~17:00、19:00~22:00 |
平段 | 0.7036 | 8:00~14:00、17:00~19:00、22:00~24:00 |
低谷 | 0.3518 | 0:00~8:00 |
Table 1 Time-of-use pricing of Huizhou
电价时段 | 价格/ (CNY/(kW·h)) | 时段 |
---|---|---|
高峰 | 1.1609 | 14:00~17:00、19:00~22:00 |
平段 | 0.7036 | 8:00~14:00、17:00~19:00、22:00~24:00 |
低谷 | 0.3518 | 0:00~8:00 |
设备名称 | 设备参数 | 数量 |
---|---|---|
冷水机组 | 冷冻水进出水温度:13/6℃;冷却水进出水温度32/37℃; 额定制冷量:4610 kW;COP:6.43 | 4台 |
冷冻水泵 | 额定流量2246.4 m3/h | 4台 |
冷却水泵 | 额定流量3145 m3/h | 4台 |
冷却塔 | 额定功率38 kW | 4台 |
Table 2 Information of cooling system equipment
设备名称 | 设备参数 | 数量 |
---|---|---|
冷水机组 | 冷冻水进出水温度:13/6℃;冷却水进出水温度32/37℃; 额定制冷量:4610 kW;COP:6.43 | 4台 |
冷冻水泵 | 额定流量2246.4 m3/h | 4台 |
冷却水泵 | 额定流量3145 m3/h | 4台 |
冷却塔 | 额定功率38 kW | 4台 |
1 | Glueck B. Simplified model for exploring dynamic reactions during the operation for network storage[J]. Fernwaerme International, 1983, 12(3): 139-151. |
2 | 石兆玉. 供热系统运行调节与控制[M]. 北京: 清华大学出版社, 1994: 261-303. |
Shi Z Y. The Operation of the Heating System[M]. Beijing: Tsinghua University Press, 1994: 261-303. | |
3 | 秦冰, 江亿, 付林. 集中供热系统热动态特性研究综述[J]. 煤气与热力, 2003, (11): 694-697. |
Qin B, Jiang Y, Fu L. Summarization for research on dynamic performance of centralized heat-supply system[J]. Gas & Heat, 2003, (11): 694-697. | |
4 | 秦冰, 江亿, 付林, 等. 集中供热系统热动态特性的测试研究[J]. 煤气与热力, 2005, 25(11): 20-23. |
Qin B, Jiang Y, Fu L, et al. Study on test of dynamic thermal performance of centralized heat-supply system[J]. Gas & Heat, 2005, 25(11): 20-23. | |
5 | Pinson P, Nielsen T S, Nielsen H A, et al. Temperature prediction at critical points in district heating systems[J]. European Journal of Operational Research, 2009, 194(1): 163-176. |
6 | 陈路路. 基于负荷预测的集中供热系统能效研究[D]. 济南: 山东建筑大学, 2013. |
Chen L L. Study the energy efficiency of central heating systems based on the thermal load forecasting[D]. Jinan: Shandong Jianzhu University, 2013. | |
7 | Liu Z, Yu H, Tang Y, et al. A method to calculate energy station s output in community energy planning considering the attenuation and delay of pipe network[J]. Energy Procedia, 2017, 143: 216-222. |
8 | 刘志渊, 于航, 黄子硕. 考虑管网衰减延迟特性的分布式能源站实时出力计算[J]. 暖通空调, 2017, 47(4): 19-22. |
Liu Z Y, Yu H, Huang Z S. Prediction approach of hourly output of energy station in distributed energy system based on attenuation and delay features of pipe network[J]. Heating Ventilating & Air Conditioning, 2017, 47(4): 19-22. | |
9 | 刘海静, 潘毅群. 区域建筑群负荷预测及其平准化分析[J]. 暖通空调, 2017, 47(4): 14-18. |
Liu H J, Pan Y Q. Load prediction and leveling analysis for community buildings[J]. Heating Ventilating & Air Conditioning, 2017, 47(4): 14-18. | |
10 | 陈长明. 城市供热系统二级网建模与动态特性分析[D]. 杭州: 浙江大学, 2017. |
Chen C M. Urban heating system of the secondary network modeling and dynamic analysis[D]. Hangzhou: Zhejiang University, 2017. | |
11 | 靳超. 集中供热系统储热及热负荷预测的动态模型研究[D]. 北京: 华北电力大学, 2017. |
Jin C. Study on the capacity of central heating and electric heating based on thermal scheduling to consume wind power [D]. Beijing: North China Electric Power University, 2017. | |
12 | Chua K J, Chou S K, Yang W M, et al. Achieving better energy-efficient air conditioning—a review of technologies and strategies[J]. Appl. Energy, 2013, 104: 87-104. |
13 | Gelazanskas L, Gamage K A A. Demand side management in smart grid: a review and proposals for future direction[J]. Sustainable Cities and Society, 2014, 11: 22-30. |
14 | 崔强, 王秀丽, 刘祖永. 市场环境下计及储能电站运行的联动电价研究及其效益分析[J]. 中国电机工程学报, 2013, 33(13): 62-68. |
Cui Q, Wang X L, Liu Z Y. Study on linkage electricity price and benefit analysis considering energy storage station operation in market environment[J]. Proceedings of the CSEE, 2013, 33(13): 62-68. | |
15 | Aghaei J, Alizadeh M I. Demand response in smart electricity grids equipped with renewable energy sources: a review[J]. Renewable & Sustainable Energy Reviews, 2013, 18: 64-72. |
16 | 任博强, 彭鸣鸿, 蒋传文, 等. 计及风电成本的电力系统短期经济调度建模[J]. 电力系统保护与控制, 2010, 39(5): 37-72. |
Ren B Q, Peng M H, Jiang C W, et al. Short-term economic dispatch of power system modeling considering the cost of wind power[J]. Power System Protection and Control, 2010, 39(5): 37-72. | |
17 | 何蕾. 基于需求侧综合响应的热电联供型微网运行优化[J]. 电测与仪表, 2018, 55(7): 53-58. |
He L. Optimal operation of combined heat and power micro-grid based on integrated demand response[J]. Electrical Measurement & Instrumentation, 2018, 55(7): 53-58. | |
18 | 吕泉, 王海霞, 陈天佑, 等. 考虑风电不确定性的热电厂蓄热罐运行策略[J]. 电力系统自动化, 2015, (14): 23-29. |
Lyu Q, Wang H X, Chen T Y, et al. Operation strategies of heat accumulator in combined heat and power plant with uncertain wind power[J]. Automation of Electric Power Systems, 2015, (14): 23-29. | |
19 | 都健, 杨坡, 刘琳琳, 等. 带有热储罐的间歇过程换热网络综合[J]. 化工学报, 2013, 64(12): 4325-4329. |
Du J, Yang P, Liu L L, et al. Heat exchanger network synthesis for batch processes involving heat storages[J]. CIESC Journal, 2013, 64(12): 4325-4329. | |
20 | Zheng C Y, Wu J Y, Zhai X Q, et al. A novel thermal storage strategy for CCHP system based on energy demands and state of storage tank[J]. International Journal of Electrical Power&Energy Systems, 2017, 85: 117-129. |
21 | Cox S J, Kim D, Cho H, et al. Real time optimal control of district cooling system with thermal energy storage using neural networks[J]. Applied Energy, 2019, 238: 466-480. |
22 | 张琦, 马家琳, 高金彤, 等. 钢铁企业煤气-蒸汽-电力系统耦合优化及应用[J]. 化工学报, 2018, 69(7): 3149-3158. |
Zhang Q, Ma J L, Gao J T, et al. Coupled optimization modeling and application of fuel gas-steam-power system in integrated iron and steel works[J]. CIESC Journal, 2018, 69(7): 3149-3158. | |
23 | 苏新霞, 周璇卿. 储能应用于需求侧响应的商业模式[J]. 科技与创新, 2017, (19): 5-6. |
Su X X, Zhou X Q. Energy storage used in a demand-side response business model[J]. Science and Technology & Innovation, 2017, (19): 5-6. | |
24 | 邵世圻, 戴赛, 胡林献, 等. 计及热网特性的电热联合系统调度方法[J]. 电力系统保护与控制, 2018, 46(10): 24-30. |
Shao S Q, Dai S, Hu L X, et al. Research on heat-electricity combined scheduling method considering the characteristics of the heating network[J]. Power System Protection and Control, 2018, 46(10): 24-30. | |
25 | Tang R, Wang S W, Shan K, et al. Optimal control strategy of central air-conditioning systems of buildings at morning start period for enhanced energy efficiency and peak demand limiting[J]. Energy, 2018, 151: 771-781. |
26 | Tang R, Wang S W, Yan C C, et al. A direct load control strategy of centralized air-conditioning systems for building fast demand response to urgent requests of smart grids[J]. Automation in Construction, 2018, 87: 74-83. |
27 | Sinha S, Chandel S S. Review of software tools for hybrid renewable energy systems[J]. Renewable and Sustainable Energy Reviews, 2014, 32: 192-205. |
28 | He X, Chen S Q, Lu X L. Simplified model of HVAC load prediction for urban building districts[J]. Procedia Engineering, 2015, 121: 167-174. |
29 | 毕庆生, 李邓超, 朱侃, 等. 基于供热系统热惯性供热机组短时深度参与电网调峰及风电消纳研究[J]. 热能动力工程, 2018, 33(9): 72-78. |
Bi Q S, Li D C, Zhu K, et al. In-depth grid power peak regulation with heating unit in wind power consumption based on thermal inertia characteristics [J]. Journal of Engineering for Thermal Energy and Power, 2018, 33(9): 72-78. | |
30 | Hägg R. Dynamic simulation of district heating networks in dymola[D]. Lund: Lund University, 2016. |
[1] | Xin YANG, Wen WANG, Kai XU, Fanhua MA. Simulation analysis of temperature characteristics of the high-pressure hydrogen refueling process [J]. CIESC Journal, 2023, 74(S1): 280-286. |
[2] | Jiahao SONG, Wen WANG. Study on coupling operation characteristics of Stirling engine and high temperature heat pipe [J]. CIESC Journal, 2023, 74(S1): 287-294. |
[3] | Siyu ZHANG, Yonggao YIN, Pengqi JIA, Wei YE. Study on seasonal thermal energy storage characteristics of double U-shaped buried pipe group [J]. CIESC Journal, 2023, 74(S1): 295-301. |
[4] | Fei KANG, Weiguang LYU, Feng JU, Zhi SUN. Research on discharge path and evaluation of spent lithium-ion batteries [J]. CIESC Journal, 2023, 74(9): 3903-3911. |
[5] | Yue CAO, Chong YU, Zhi LI, Minglei YANG. Industrial data driven transition state detection with multi-mode switching of a hydrocracking unit [J]. CIESC Journal, 2023, 74(9): 3841-3854. |
[6] | Xiaodan SU, Ganyu ZHU, Huiquan LI, Guangming ZHENG, Ziheng MENG, Fang LI, Yunrui YANG, Benjun XI, Yu CUI. Optimization of wet process phosphoric acid hemihydrate process and crystallization of gypsum [J]. CIESC Journal, 2023, 74(4): 1805-1817. |
[7] | Zhongqiu ZHANG, Hongguang LI, Yilin SHI. A multi-task learning approach for complex chemical processes based on manual predictive manipulating strategies [J]. CIESC Journal, 2023, 74(3): 1195-1204. |
[8] | Jianghuai ZHANG, Zhong ZHAO. Robust minimum covariance constrained control for C3 hydrogenation process and application [J]. CIESC Journal, 2023, 74(3): 1216-1227. |
[9] | Weiyi SU, Jiahui DING, Chunli LI, Honghai WANG, Yanjun JIANG. Research progress of enzymatic reactive crystallization [J]. CIESC Journal, 2023, 74(2): 617-629. |
[10] | Le ZHOU, Chengkai SHEN, Chao WU, Beiping HOU, Zhihuan SONG. Deep fusion feature extraction network and its application in chemical process soft sensing [J]. CIESC Journal, 2022, 73(7): 3156-3165. |
[11] | Xinjie ZHOU, Jianlin WANG, Xingcong AI, Enguang SUI, Rutong WANG. IDPC-RVM based online prediction of quality variables for multimode batch processes [J]. CIESC Journal, 2022, 73(7): 3120-3130. |
[12] | Kun WANG, Hongbo SHI, Shuai TAN, Bing SONG, Yang TAO. Local time difference constrained neighborhood preserving embedding algorithm for fault detection [J]. CIESC Journal, 2022, 73(7): 3109-3119. |
[13] | Taoyan ZHAO, Jiangtao CAO, Ping LI, Lin FENG, Yu SHANG. Application of interval type-2 fuzzy immune PID controller to temperature control system for uncatalysed oxidation of cyclohexane [J]. CIESC Journal, 2022, 73(7): 3166-3173. |
[14] | Zihao QI, Wenqi ZHONG, Xi CHEN, Guanwen ZHOU, Xiaoliang ZHAO, Meijing XIN, Yi CHEN, Yongchang ZHU. Research on dynamic characteristics of cement raw meal decomposition process based on hybrid modeling [J]. CIESC Journal, 2022, 73(5): 2039-2051. |
[15] | Jiansong WANG, Feng XU, Xionglin LUO. Controller parameter self-tuning when control loop mode switching for multi-loop PID control system of chemical process [J]. CIESC Journal, 2022, 73(4): 1647-1657. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||