1 |
李俊海. 全球水资源短缺与粮食危机[J]. 生态经济,2021,37(3):5-8.
|
|
LI Junhai. Global water shortage and food crisis[J]. Ecological Economy,2021,37(3):5-8.
|
2 |
胡彬,刘俊国,赵丹丹,等. 基于水足迹理念的水资源短缺评价:以2022年冬奥会雪上项目举办地为例[J]. 灌溉排水学报,2017,36(7):108-116.
|
|
HU Bin, LIU Junguo, ZHAO Dandan,et al. Using the theory of water footprint to assess water scarcity:A case study[J]. Journal of Irrigation and Drainage,2017,36(7):108-116.
|
3 |
陈娟,王晓昕. 层次分析法在工业用水水平评估中的运用[J]. 人民黄河,2021,43(S1):50-53.
|
|
CHEN Juan, WANG Xiaoxin. Application of analytic hierarchy process in industrial water level evaluation[J]. Yellow River,2021,43(S1):50-53.
|
4 |
ZHAO Xu, LIU Junguo, LIU Qingying,et al. Physical and virtual water transfers for regional water stress alleviation in China[J]. Proceedings of the National Academy of Sciences of the United States of America, 2015, 112(4):1031-1035. doi: 10.1073/pnas.1404130112
|
5 |
HOOMAN K. Theoretical prediction with numerical and experimental verification to predict crosswind effects on the performance of cooling towers[J]. Heat Transfer Engineering, 2015, 36(5):480-487. doi: 10.1080/01457632.2014.935223
|
6 |
|
|
|
7 |
HAJIDAVALLOO E, SHAKERI R, MEHRABIAN M A. Thermal performance of cross flow cooling towers in variable wet bulb temperature[J]. Energy Conversion and Management, 2010, 51(6):1298-1303. doi: 10.1016/j.enconman.2010.01.005
|
8 |
王天正,王佩璋. 自然通风冷却塔内加装高压静电吸浮收水装置的节水技术[J]. 中国电力,1995,28(9):65-67.
|
|
WANG Tianzheng, WANG Peizhang. Water-saving technology of installing high-voltage electrostatic suction floating water collection device in natural ventilation cooling tower[J]. Electric Power,1995,28(9):65-67.
|
9 |
徐永君,鄂学全,阚常珍. 利用旋转流动提高冷却塔汽水回收效率的实验研究[C]//第十七届全国水动力学研讨会暨第六届全国水动力学学术会议文集,北京,2003:1034-1040.
|
|
XU Yongjun, Xuequan E, KAN Changzhen. Experimental study on increasing water saving efficiency in cooling tower by using swirling flow method[C]//Proceedings of the 17th National Hydrodynamics Symposium and the 6th National Hydrodynamics Academic Conference,Beijing,2003:1034-1040.
|
10 |
董京甫. 冷却塔水蒸发损失减少的方法和实施该方法的装置:CN1699908A[P]. 2009-03-11.
|
|
DONG Jingfu. Method for reducing evaporation loss of cooling tower water and apparatus for implementing the method:CN1699908A[P]. 2009-03-11.
|
11 |
|
|
|
12 |
李楠. 干湿两用闭式冷却塔的结构设计与性能分析[D]. 济南:山东建筑大学,2011.
|
|
LI Nan. Configuration design and performance analysis on dry and wet closed cooling tower[D]. Ji’nan:Shandong Jianzhu University,2011.
|
13 |
KWON O, KIM Y W, CHO Y H. Plume abatement and evaporated water recovery apparatus using combined heat exchanger condenser: US 9453687b2[P]. 2016.
|
14 |
|
|
WANG Weishu, ZHENG Haonan, ZHAO Pengfei,et al. Design calculation method of condensing and defogging water collecting device[J]. Science Technology and Engineering, 2019, 19(7):93-98. doi: 10.3969/j.issn.1671-1815.2019.07.016
|
15 |
王为术,郑毫楠,徐维晖,等. 机械通风冷却塔冷凝收水消雾系统及装置设计[J]. 热科学与技术,2020,19(1):34-40.
|
|
WANG Weishu, ZHENG Haonan, XU Weihui,et al. Design of condensing water collection and anti-fog system and device for mechanical ventilation cooling tower[J]. Journal of Thermal Science and Technology,2020,19(1):34-40.
|
16 |
GROBBELAAR P J, REUTER H C R, BERTRAND T P. Performance characteristics of a trickle fill in cross-and counter-flow configuration in a wet-cooling tower[J]. Applied Thermal Engineering, 2013, 50(1):475-484. doi: 10.1016/j.applthermaleng.2012.06.026
|
17 |
WEN Xiantai, LIANG Caihua, ZHANG Xiaosong. Experimental study on heat transfer coefficient between air and liquid in the cross-flow heat-source tower[J]. Building and Environment, 2012, 57:205-213. doi: 10.1016/j.buildenv.2012.03.004
|
18 |
DEZIANI M, RAHMANI K, MIRREZAEI ROUDAKI S J,et al. Feasibility study for reduce water evaporative loss in a power plant cooling tower by using air to Air heat exchanger with auxiliary Fan[J]. Desalination, 2017, 406:119-124. doi: 10.1016/j.desal.2015.12.007
|
19 |
贾明晓,胡三季,李昊,等. 冷凝式消雾节水冷却塔消雾节水性能试验研究[J]. 中国电力,2020,53(2):180-184.
|
|
JIA Mingxiao, HU Sanji, LI Hao,et al. Experimental study on performance of plume abatement and water-saving cooling tower with condensate method[J]. Electric Power,2020,53(2):180-184.
|
20 |
WANG Weishu, GE Xuewen, ZHAO Shifei,et al. A novel approach for water conservation and plume abatement in mechanical draft cooling towers[J]. Atmosphere, 2019, 10(12):734. doi: 10.3390/atmos10120734
|