<?xml version="1.1" encoding="utf-8"?>
<article xsi:noNamespaceSchemaLocation="http://jats.nlm.nih.gov/publishing/1.1/xsd/JATS-journalpublishing1-mathml3.xsd" dtd-version="1.1" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"><front><journal-meta><journal-id journal-id-type="publisher-id">EPTSM</journal-id><journal-title-group><journal-title>Electric Power Technology and Safety Management</journal-title></journal-title-group><issn>2997-3473</issn><eissn>2997-3503</eissn><publisher><publisher-name>Art and Technology</publisher-name></publisher></journal-meta><article-meta><article-id pub-id-type="doi">10.61369/EPTSM.2025010018</article-id><article-categories><subj-group subj-group-type="heading"><subject>Article</subject></subj-group></article-categories><title>塔式熔盐太阳能光热发电技术分析</title><url>https://artdesignp.com/journal/EPTSM/2/1/10.61369/EPTSM.2025010018</url><author>沈亚军</author><pub-date pub-type="publication-year"><year>2025</year></pub-date><volume>2</volume><issue>1</issue><history><date date-type="pub"><published-time>2025-01-20</published-time></date></history><abstract>&amp;nbsp;本文研究目旨在详细分析塔式熔盐太阳能光热发电技术。研究阶段，分析技术的政策背景，介绍示范项目，随后分析技术实现原理、塔式熔盐太阳能光热电站的结构、关键实现技术，并指出技术运行阶段的管道冻盐、熔盐泄漏风险与应对措施。期望本文成果能够在促进社会对熔盐太阳能光热发电技术的深度了解同时，促进技术本身的可持续发展，从而在宏观为国家清洁能源产业的发展添砖加瓦，推动该技术在电力产业充分发挥优势。</abstract><keywords>塔式熔盐光热技术,技术原理,电站结构,冻盐风险</keywords></article-meta></front><body/><back><ref-list><ref id="B1" content-type="article"><label>1</label><element-citation publication-type="journal"><p>[1]姚亚军.塔式太阳能光热发电熔盐罐设计探讨[J].石油和化工设备,2024,27(10):117-120.&amp;nbsp;[2]许利华,侯晓东,刘可亮.塔式熔盐太阳能光热发电技术[J].能源研究与信息,2020,36(03):135-142.&amp;nbsp;[3]彭恒,闫伟华.太阳能光热发电新技术工艺路线综述[J].电站系统工程,2020,36(03):25-26.&amp;nbsp;[4]李冉.塔式太阳能光热电站经济效益分析[J].上海节能,2020,(01):74-77.&amp;nbsp;[5]江晶亮,顾磊,陈世通.塔式熔盐太阳能光热电站蒸汽发生器传热数值模拟设计计算[J].锅炉技术,2021,52(1):14-20.</p><pub-id pub-id-type="doi"/></element-citation></ref></ref-list></back></article>
