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1)  enthalpy exchange effectiveness
全热换热效率
2)  overall heat transfer efficiency
全热交换效率
1.
In order to study the cooling and dehumidifying capacity of the tailrace tunnel,a calculated model of effective length is established through the overall heat transfer efficiency of tailrace tunnel based on the simplified model of heat and moisture transfer of tailrace tunnel ventilating.
为研究无压尾水洞对引入空气的热湿处理能力,在尾水洞引风热湿交换过程简化模型基础上,建立了基于全热交换效率的引风有效作用长度计算模型,分析了尾水洞断面尺寸、引风入口参数、尾水温度、尾水及空气流速等因素对引风有效作用长度的影响,得出了无压尾水洞引风有效作用长度的变化规律。
3)  heat exchange efficiency
换热效率
1.
Analyses the influencing factors of the heat exchange efficiency according to the temperature difference and hygroscopic driving force.
从温差换热驱动势和吸湿驱动势出发,分析了间接蒸发冷却换热效率的影响因素,实验研究了新风进口温度、排风进口温度和相对湿度对新风进出口温差和换热效率的影响。
2.
Loss of steam is a major factor impairing its heat exchange efficiency.
螺旋管换热器是一种新型高效换热器 ,蒸汽流失是影响其换热效率的重要因素。
3.
In this paper, it was offered that several proposals for reducing the influence of high speed wind on heat exchange efficiency of air cooled condenser power plants under summer high temperature conditions.
该文使用数值模拟方法研究了在夏季高温环境中降低环境风对空冷火电厂换热效率影响的几种方法。
4)  heat transfer efficiency
换热效率
1.
The fluid flow directly affects its heat transfer efficiency in the heat exchanger,the flow effect of heat exchange tube can be improved,and the heat transfer efficiency can be enhanced by the appropriate arrangement.
换热器内的流体流动状态直接影响换热效率,合理排布换热管能够改善流动效果,提高换热效率。
2.
In order to analyse the gas-solid separation efficiency,heat transfer efficiency and the resistance of the preheater system,studied the cyclone preheater by thermal numerical simulation.
旋风预热器是水泥预热系统中的重要组成部分,为了分析旋风预热器的气固分离效率、换热效率和系统阻力情况,对预热器进行热态数值模拟研究。
3.
Investigates the effects of variable parameters such as the channel s width,the velocity,the temperature and the relative humidity on heat transfer efficiency and exergy efficiency ratio.
采用CFD方法模拟分析间接蒸发冷却器的传热传质过程,讨论通道间距、空气流速、温度、相对湿度等因素对换热效率和(火用)效比的影响。
5)  heat-transfer efficiency
换热效率
1.
The results indicate that the parallel-flow is higher than reverse-flow in heat-transfer efficiency and is recommended to be used for a TDHT system.
采用效率-传热单元数法,针对顺流和逆流两种形式的污水套管输送换热(TDHT)系统,分析了换热效率,给出了效率计算公式和特点,指出顺流换热效率大于逆流,推荐TDHT系统采用顺流形式。
2.
The results indicated that the reverse-flow was higher than that of parallel-flow in heat-transfer efficiency when it was a single-casing,but it was reverse when using double-way casing heat-transfer.
分析认为,当采用单管式换热器时,逆流连接方式的换热效率较高,当采用双程套管换热器时,顺流连接方式的换热效率较高。
6)  heat efficiency
换热效率
1.
The performance of heat exchanged and resistance loss of the heat exchanger were derived based on the test results which showed that the heat exchanger has the character of excellent heat efficiency and low pressure drop.
试验结果表明,该换热器具有换热效率高、阻力小的特点;在风速为2。
2.
This article describes that by the theory analysis for the heat efficiency of heat exchangers with fixed plate of one without expanding joint, finding out the effect factors of heat efficiency, putting forward some principles while the heat exchanger being designed, and then providing the conclusion by an example.
通过对不带膨胀节的固定管板换热器换热效率的理论分析,找出影响换热效率的因素,提出了换热器设计时的几点原则,并用实例证明了结论。
补充资料:冶金炉热平衡和热效率
      冶金炉的热平衡指的是向炉内提供的热量等于被加热物达到工艺要求时所吸收的热量加上各种热损失的总和。热平衡的理论基础是热力学第一定律。分析热平衡的目的是从热能流向图中找出进一步节能的途径。热效率则是被加热物吸收的热量与向炉内提供热量的比值。并用比值的大小评价冶金炉热工作的优劣,希望达到尽可能大的比值。
  
  热损失项目繁多,主要为炉气和冷却水带走的热,炉墙的积热和散热。炉气带走的热最多,而且在热支出的总量中占的份额差别也很大,一般为20~50%;冷却水带走的热也大,如加热炉冷却滑轨的水带走的热量可达全部热损失的15~30%,采用汽化冷却和绝热包扎后可降到6%左右;其他如炉墙积热和散热,炉门溢气和辐射,不完全燃烧等热损失在正常情况下约占热总收入的10~20%。某些间歇式的热处理炉炉墙积热和散热以及料架吸热有时高达热总收入的40%。近年来采取减少热损失的措施有:回收炉气带走的热,对炉内冷却件实行绝热,使炉墙轻型化和加大炉墙的热阻,采用加热新工艺,通过这些可使某些加热炉的热效率达60%以上。目前正设法利用产品所吸收的热以进一步降低总的能耗。根据不同类型和不同效率范围的200座加热炉和150座热处理炉的测定数据所做的研究分析,得出综合热平衡情况见图。从图中可以看出,提高待加工品的热焓,充分利用废气和冷却水的余热,进一步减少炉墙和辐射热损失以及设法利用产品带走的热,将是冶金炉节能的主要途径。
  
  加热炉和热处理炉的热效率一般为15~65%;化铁炉为25~45%;高炉为75~85%;平炉为20~30%。
  

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