[1] 中国电力工程顾问集团有限公司,中国能源建设集团规划设计有限公司. 电力工程设计手册 [M]. 北京:中国电力出版社,2019.

China Power Engineering Consulting Group Co., Ltd., China Energy Engineering Group Planning and Engineering Co., Ltd. Power engineering design manual [M]. Beijing: China Electric Power Press, 2019.
[2] 韩高岩,吕洪坤,蔡洁聪,等. 燃气冷热电三联供发展现状及前景展望 [J]. 浙江电力,2019,38(1):18-24.

HANG Y, LÜH K, CAIJ C, et al. Development status and prospect of CCHP of gas energy station [J]. Zhejiang Electric Power, 2019, 38 (1): 18-24.
[3] 城市建设研究院. 燃气冷热电三联供工程技术规程: CJJ 145—2010 [S]. 北京:中国建筑工业出版社,2010.

Urban Construction Research Institute. Technical specification for gas-fired combined cooling, heating and power engineering: CJJ 145—2010 [S]. Beijing: China Architecture & Building Press, 2010.
[4] 李建波. 燃气联合循环供热机组抽汽方案的选择 [J]. 发电设备,2017,31(5):379-382.

LIJ B. Selection of pumping schemes for a gas-fired combined cycle heating unit [J]. Power Equipment, 2017, 31 (5): 379-382.
[5] 顾玉新. 压力匹配器在供热系统中的应用 [J]. 发电设备,2005(5):340-342.

GUY X. Application of pressure adaptors in heat supply system [J]. Power Equipment, 2005 (5): 340-342.
[6] 李凯,张蕊. 利用压力匹配器研究联合循环电站供热方案 [J]. 能源与节能,2014(1):64-66.

LIK, ZHANGR. Heating method research of combined cycle plant by pressure matcher [J]. Energy and Energy Conservation, 2014 (1): 64-66.
[7] 徐敏仙. 利用压力匹配器提高热电厂的经济性 [J]. 节能,2012,31(4):69-71.

XUM X. Using pressure matcher to improve the economy of thermal power plant [J]. Energy Conservation, 2012, 31 (4): 69-71.
[8] 何干祥,林琳,王勇. 汽轮机旋转隔板变工况供热经济性分析 [J]. 热力发电,2018,47(7):120-124.

HEG X, LINL, WANGY. Economic analysis of heating unit with rotating board for steam turbine under off-design conditions [J]. Thermal Power Generation, 2018, 47 (7): 120-124.
[9] 童家麟,吴瑞康,李剑,等. 供热机组深度调峰中供热方式的优化改造 [J]. 发电设备,2019,33(4):278-281+292.

TONGJ L, WUR K, LIJ, et al. Optimization retrofit on heat supply modes of heating units for deep peck-load regulation [J]. Power Equipment, 2019, 33 (4): 278-281+292.
[10] 李代智,周克毅,徐啸虎,等. 600 MW火电机组抽汽供热的热经济性分析 [J]. 汽轮机技术,2008(4):282-284.

LID Z, ZHOUK Y, XUX H, et al. Thermal economic analysis on coal fired 600 MW CHP power plant [J]. Turbine Technology, 2008 (4): 282-284.
[11] 徐蕾. 降低余热锅炉排烟温度优化方案研究 [J]. 机电信息,2016(36):51+53.

XUL. Research on optimization scheme of reducing exhaust gas temperature of heat recovery steam boiler [J]. Mechanical and Electrical Information, 2016 (36): 51+53.
[12] 章正传,殷俊,李懿靓. 大型F级燃气蒸汽联合循环烟气余热利用探讨 [J]. 能源与节能,2013(12):59-61+157.

ZHANGZ C, YINJ, LIY L. Discussion on flue gas waste heat utilization technology of heavy (F class) gas-steam combined cycle power plant [J]. Energy and Energy Conservation, 2013 (12): 59-61+157.
[13] 朱瑾,阮定龙,付焕兴,等. 一种余热锅炉尾部换热器系统:CN107388228A [P]. 2017-11-24.

ZHUJ, RUAND L, FUH X, et al. One kind of rear heat exchanger system of heat recovery steam boiler: CN107388228A [P]. 2017-11-24.
[14] 黄挺. 广州大学城分布式能源站供冷系统选型设计 [J]. 南方能源建设,2017,4(4):34-36.

HUANGT. Research on central cooling design for distributed energy station in Guangzhou university town [J]. Southern Energy Construction, 2017, 4 (4): 34-36.