集中供热系统低碳清洁化演进技术研究
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九五品
仅1件
作者王晋达
出版社电子工业出版社
ISBN9787121448201
出版时间2023-02
版次1
装帧平装
开本16开
纸张胶版纸
页数184页
定价88元
上书时间2024-12-22
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基本信息
书名:集中供热系统低碳清洁化演进技术研究
定价:88.00元
作者:王晋达
出版社:电子工业出版社
出版日期:2023-02-01
ISBN:9787121448201
字数:
页码:184
版次:
装帧:平装
开本:
商品重量:
编辑推荐
内容提要
目录
目录 章 绪论 ······································································.0011.1 背景和意义 ····························································.0021.1.1 碳达峰与碳中和 ··············································.0021.1.2 风电发展与弃风 ··············································.0021.1.3 清洁供热目标 ·················································.0051.2 供热技术的现状与问题 ·············································.0071.2.1 现行规范 ·······················································.0071.2.2 高温热媒与低品位可再生能源 ···························.0081.2.3 热力站间接连接 ··············································.0101.2.4 要求热泵出水温度高 ········································.0101.2.5 无补偿冷安装难以真正实现 ······························.0111.3 推进低碳清洁供热技术的途径 ····································.0111.4 研究现状与分析 ······················································.014第2 章 既有散热器低温运行存在的问题及解决方法 ··················.0172.1 低温运行存在的问题 ················································.0222.1.1 散热器面积的变化 ···········································.0222.1.2 室内温度的变化 ··············································.0282.2 低温散热器的应用 ···················································.0332.3 室内混合供热系统的应用 ··········································.0352.3.1 散热器和地板辐射串联系统 ······························.0352.3.2 散热器和毛细管串联系统 ·································.0372.3.3 散热器和谷电协调供热·····································.037第3 章 既有供热系统转化为多能互补低温区域供热系统 ············.0393.1 单管区域供热系统 ···················································.0423.1.1 单管系统的循环泵 ···········································.0473.1.2 热量分配 ·······················································.0483.1.3 用户供回水温度 ··············································.0483.1.4 单管系统的主要特点 ········································.0493.2 双管区域供热系统 ···················································.0503.3 三管区域供热系统 ···················································.052第4 章 多能互补低温区域供热系统热源 ·································.0554.1 基本热源 ·······························································.0564.1.1 区域性热力站 ·················································.0564.1.2 低温核供热堆 ·················································.0564.1.3 垃圾焚烧锅炉 ·················································.0594.1.4 热电厂 ··························································.0594.2 集中调峰热源 ·························································.0604.2.1 生物质锅炉 ····················································.0604.2.2 中深层地热能 ·················································.0614.3 能源站 ··································································.0624.3.1 布置在单管系统的双向能源站 ···························.0634.3.2 布置在双管系统的双向能源站 ···························.0674.3.3 布置在三管系统的双向能源站 ···························.071第5 章 既有供热系统建设能源站设备的优化方法 ·····················.0755.1 新建能源站系统配置 ················································.0765.2 清洁供热系统的运行优化 ··········································.0775.2.1 运行优化的目标函数 ········································.0775.2.2 运行优化的约束条件 ········································.0795.2.3 决策变量 ·······················································.0825.3 能源站设备容量优化 ················································.0825.3.1 设备容量优化目标函数·····································.0825.3.2 设备容量优化的约束条件 ·································.0845.3.3 设备容量优化的计算流程 ·································.0855.4 能源站设备容量优化案例及讨论 ·································.0855.4.1 综合计算条件 ·················································.0865.4.2 遗传算法和模式搜索及其很优解 ························.0885.4.3 热源各机组运行工况的对比分析 ························.0905.4.4 分时电价和余热量的影响 ·································.096第6 章 既有能源系统配置低碳清洁热源的优化方法 ··················.0996.1 低碳清洁热源 ·························································.1006.2 低碳清洁热源装机容量的优化模型 ······························.1016.2.1 设备容量优化目标函数与约束条件 ·····················.1016.2.2 区域能源系统机组的能耗计算 ···························.1046.2.3 区域能源系统总能耗费的优化目标函数与约束条件 .1076.2.4 优化计算流程 ·················································.1116.3 低碳清洁热源设备优化配置案例 ·································.1116.3.1 风电场风资源及风电功率 ·································.1116.3.2 区域能源系统的电源和热源、电负荷和热负荷 ······.1136.3.3 既有区域能源系统设备的供电、供热及系统弃风 ···.1156.3.4 配置低碳清洁热源的区域能源系统的仿真计算 ······.117第7 章 供热管网动态蓄放热特性研究·····································.1217.1 供热管网的稳态水力工况和热力工况仿真 ·····················.1227.1.1 管网物理结构的数学建模 ·································.1227.1.2 管网的水力仿真模型 ········································.1227.1.3 供热管网的稳态热力仿真模型 ···························.1257.1.4 热力仿真模型求解流程·····································.1307.2 一级供热管网简化热动态模型 ····································.1317.3 供热管道蓄放热特性研究 ··········································.1337.3.1 等额供热控制 ·················································.1347.3.2 管道蓄热特征 ·················································.1357.3.3 管道蓄放热模式 ··············································.1357.4 综合改变温度和流量的蓄热量计算 ······························.1387.4.1 一级供热管网蓄热量计算 ·································.1387.4.2 集中供热调节和管道蓄热 ·································.139第8 章 区域能源系统热电协同优化调度 ·································.1438.1 简介 ·····································································.1448.2 热电协同优化调度 ···················································.1488.2.1 目标函数 ·······················································.1488.2.2 约束条件 ·······················································.1508.3 热电协同优化调度目标函数的求解 ······························.1528.4 热电协同优化调度相关参数的设定 ······························.1538.4.1 一级供热管网管道动态蓄放热特征参数 ···············.1538.4.2 风电机组日发电功率模式与逐时电负荷 ···············.1538.5 热电协同优化调度的仿真计算与分析 ···························.1558.5.1 方案1 优化调度的仿真结果与分析 ·····················.1568.5.2 方案1 反调峰模式下的调度结果与分析 ···············.1568.5.3 电热泵和管道蓄放热的风电消纳效果 ··················.1638.5.4 组合方案4 各机组逐时热电功率分析 ··················.164参考文献 ············································································.169
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