熔盐槽式聚光集热镜场的夜间防凝运行方案研究RESEARCH ON NIGHTTIME ANTI SOLIDIFICATION OPERATION SCHEME OF MOLTEN SALT PARABOLIC TROUGH PHOTOTHERMAL MIRROR FIELD
牛东圣,王彦普,周治,赵亮
摘要(Abstract):
基于某熔盐槽式聚光集热供汽-供暖项目,针对夜间熔盐排空方案和夜间熔盐低速循环方案这两种主要的镜场夜间防凝运行方案,分别从方案的技术特点、需要配置的设备、运维难易程度、运维成本,以及方案优缺点等方面进行了全面的分析计算和比选研究。研究结果表明:1)采用夜间熔盐排空方案时,熔盐槽式聚光集热镜场的热损失较小,但聚光集热系统整体有效工作时间减少,导致整体的集热量和产出的蒸汽量减少,同时该方案对运维水平的要求较高;2)采用夜间熔盐低速循环方案时,熔盐槽式聚光集热镜场的热损失较大,配置的设备初始投资较高,但整体的运维成本及运维难度均较低;3)针对熔盐槽式聚光集热镜场,建议采用“夜间熔盐低速循环+防凝电加热器补热”的防凝运行方案,能够以较低的综合成本获得较好的运行效果。
关键词(KeyWords): 太阳能热发电;太阳能热利用;槽式聚光集热器;熔盐;热损失;夜间防凝;镜场;集热回路;运行方案
基金项目(Foundation): 陕西省博士后科研资助项目(2018BSHGZZHQYXMZZ15);; 中国电建集团科技项目(DJ-ZDXM-2020-18)
作者(Author): 牛东圣,王彦普,周治,赵亮
DOI: 10.19911/j.1003-0417.tyn20220210.01
参考文献(References):
- [1] XU H J,LI Y S,SUN J,et al. Transient model and characteristics of parabolic-trough solar collectors:molten salt vs. synthetic oil[J]. Solar energy,2019,182:182-193.
- [2] GIACONIA A,IAQUANIELLO G,METWALLY A A,et al. Experimental demonstration and analysis of a CSP plant with molten salt heat transfer fiuid in parabolic troughs[J]. Solar energy,2020,211:622-632.
- [3] VIGNAROOBAN K,XU X,ARVAY A,et al. Heat transfer fiuids for concentrating solar power systems——a review[J]. Applied energy,2015,146:383-396.
- [4]牛东圣,周治,肖斌,等.槽式光热电站熔盐管道系统防凝研究进展[J].热力发电,2020,49(3):1-7.
- [5] EICKHOFF M,MEYER-GRüNEFELDT M,KELLER L. New operating strategies for molten salt in line focusing solar fields——daily drainage and solar preheating of receivers[J]. AIP conference proceedings,2016,1734:070007.
- [6] KEARNEY D,KELLY B,HERRMANN U,et al.Engineering aspects of a molten salt heat transfer fiuid in a trough solar fleld[J]. Energy,2004,29:861-870.
- [7]张耀明,邹宁宇.太阳能热发电技术[M].北京:化学工业出版社,2016.
- [8]牛东圣,周治,赵亮,等.熔盐槽式集热回路夜间热损失特性研究[J].太阳能学报,2021,42(9):198-204.
- [9] BURKHOLDER F,KUTSCHER C. Heat loss testing of Schott’s 2008 PTR70 parabolic trough receiver:NREL/TP-550-45633[R]. Washington:NREL,2009.
- [10]邹露璐,吴玉庭,马重芳.低熔点四元混合硝酸盐的开发与实验研究[J].太阳能学报,2020,41(5):27-42.