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整体式蒸发冷凝机组在地铁通风空调系统中的应用
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作者 张海燕 郑志明 《安装》 2021年第1期31-33,共3页
本文结合青岛地铁1号线某车站工程,对传统式冷水中央空调系统与蒸发式冷凝机组在地铁工程中的应用进行了比较,介绍了蒸发冷凝机组的工作原理、特点和施工中的重点、难点,为地铁通风空调系统设备选型提供参考。
关键词 整体蒸发式冷凝机组 通风空调 地铁
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蒸发式冷凝技术在地铁车站空调系统中的应用研究 被引量:10
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作者 郭谊婵 《科学技术创新》 2017年第17期82-83,共2页
从工作原理、机房布置及应用现状等方面,比较了整体式蒸发冷凝机组、隧道嵌装式蒸发冷凝机组两种系统形式。并与常规水冷冷水机组方案进行经济性对比分析,得出采用整体式蒸发冷凝机组方案可节能约13.3%,采用隧道嵌装式蒸发冷凝机组方案... 从工作原理、机房布置及应用现状等方面,比较了整体式蒸发冷凝机组、隧道嵌装式蒸发冷凝机组两种系统形式。并与常规水冷冷水机组方案进行经济性对比分析,得出采用整体式蒸发冷凝机组方案可节能约13.3%,采用隧道嵌装式蒸发冷凝机组方案可节能约26.9%。可见地铁采用蒸发式冷凝技术节能效果显著,在实际工程中应引起重视,并需进一步探究隧道嵌装式方案的可行性。 展开更多
关键词 整体式蒸发冷凝机组 隧道嵌装式蒸发冷凝机组 节能效果
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海水-混合冷剂换热器热力设计研究 被引量:1
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作者 于改革 陈永东 吴晓红 《压力容器》 2017年第3期24-29,共6页
混合冷剂与海水-混合冷剂换热器现场测量数据表明,混合冷剂在壳程冷凝过程包含入口至相分离点的整体冷凝、部分冷凝、出口处的直接接触冷却。以Aspen Hysys软件建立海水混合冷剂换热器冷凝过程的物理模型,确定整体冷凝与部分冷凝分界点... 混合冷剂与海水-混合冷剂换热器现场测量数据表明,混合冷剂在壳程冷凝过程包含入口至相分离点的整体冷凝、部分冷凝、出口处的直接接触冷却。以Aspen Hysys软件建立海水混合冷剂换热器冷凝过程的物理模型,确定整体冷凝与部分冷凝分界点温度。采用Bell-Ghaly法进行混合冷剂冷凝膜传热系数计算,将计算结果与原设计进行对比,有效传热面积和有效长度偏差为0.16%,验证了物理模型和计算方法的有效性,为海水混合冷剂换热器热力设计提供借鉴。 展开更多
关键词 混合冷剂 Bell—Ghaly方法 整体冷凝 部分冷凝
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Overall optimization of Rankine cycle system for waste heat recovery of heavy-duty vehicle diesel engines considering the cooling power consumption 被引量:4
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作者 YANG Can XIE Hui ZHOU Sheng K 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第2期309-321,共13页
The Rankine cycle system for waste heat recovery of heavy-duty vehicle diesel engines has been regarded as a promising tech- nique to reduce fuel consumption. Its heat dissipation in the condensation process, however,... The Rankine cycle system for waste heat recovery of heavy-duty vehicle diesel engines has been regarded as a promising tech- nique to reduce fuel consumption. Its heat dissipation in the condensation process, however, should be take:l away in time, which is an energy-consuming process. A fan-assisted auxiliary water-cooling system is employed in this paper. Results at 1300 r/min and 50% load indicate that the cooling pump and cooling fan together consume 7.66% of the recovered power. What's worse for the heavy load, cooling accessories may deplete of all the recovered power of the Rankine cycle system. Af- terwards, effects of the condensing pressure and water feeding temperature are investigated, based on which a cooling power consumption model is established. Finally, an overall efficiency optimization is conducted to balance the electric power gener- ation and cooling power consumption, taking condensing pressure, pressure ratio and exhaust bypass valve as major variables. The research suggests that the priority is to increase condensing pressure and open exhaust bypass valve appropriately at high speed and heavy load to reduce the cooling power consumption, while at low speed and light load, a lower condensing pressure is favored and the exhaust bypass valve should be closed making the waste heat recovered as much as possible. Within the sub-critical region, a larger pressure ratio yields higher overall efficiency improvement at medium-low speed and load. But the effects taper off at high speed and heavy load. For a given vehicular heavy-duty diesel engine, the overall e:'ficiency can be improved by 3.37% at 1300 r/min and 25% load using a Rankine cycle system to recover exhaust energy. The improvement becomes smaller as engine speed and load become higher. 展开更多
关键词 vehicular diesel engines Rankine cycle system cooling power consumption waste heat recovery overalloptimization
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