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convection heat transfer相关的网络例句

查询词典 convection heat transfer

与 convection heat transfer 相关的网络例句 [注:此内容来源于网络,仅供参考]

In the paper, theoretic transfer heat model of HHCHP is established. After comparing experimental value and estimative value, we deduce that theoretic transfer heat model accords with actual condition, so we can estimate the heat performance of HHCHP by theoretic calculation formula.

同时建立了蜂窝热管平板式太阳能热水器的理论传热模型,通过对实验值和理论值的比较,得出进行简化后的理论模型在一般情况下与实际的情况是符合的,因此可以用理论计算公式对蜂窝热管平板式太阳能热水器的热性能进行估算。

A Lithium-Bromide absorption refrigerating machine is designed using inclined fin tubes as heat transfer elements for absorber and using other corresponding heat transfer enhancement elements for the other heat exchangers. Comparing with the machine of using bare tubes, this unit can save bronze by 19%, steel by 28%, space by 36%. And a lot of operating expenditure can be reduced at the same time.

用斜槽管作为吸收器中的传热管,并在其它传热部件中采用相应的强化传热元件,设计了一台溴化锂吸收式制冷机,与全部采用光管的机组相比,节省了19%的铜材、28%的钢材,整体体积减小了36%,同时还节省了其它费用,显示出较好的经济效益。

For a soil or rock of water - lacked , a heat transfer theoretical model is developed , which is a steady or unsteady , the results show that reservoir temperature , thermal diffusion coefficient , inlet temperature , flow rate of and run time of ground source heat pumps have an effect directly on heat transfer process of dhe . it can deduce that intermit running is favorable for this type of soils and rocks

对于贫含水地下岩土层建立了稳态与非稳态传热的理论模型,分析结果表明,岩土层的热储温度、导温系数、埋地换热器进水温度、流量以及地源热泵系统的运行时间或开停机比,都对埋地换热器的传热过程产生直接影响,可以推断,对于该类型岩土层的地源热泵系统,采用间歇运行将是有利的。

As a new technique in the field of microchannel phase-change heat transfer , micro capillary grooved heat sink can drive fluid flow by capillary force and creat enhanced evaporation heat transfer conditions by promoting the formation of an extended meniscus in the three-phase contact-line region of a microgroove.

作为一种新兴的微通道相变换热技术,毛细微槽群蒸发热沉由于能依靠毛细力驱动液体流动,并易于在微槽内三相接触线区域促进扩展弯月面薄液膜的形成,创造高强度的蒸发换热条件,因而能够被用来实现极高换热系数和热流密度的换热过程。

The dynamics and heat transfer on the spinning line during the air drawing process are discussed in detail, mainly relating the forces acting upon the polymer along the spinning line and the expressions of the air drawing coefficient C〓 and heat transfer coefficient h. By introducing the power-law model as the constitutive equation to describe the theological properties of polymer melt and considering the changing of the density and specific heat capacity of polymer melt at constant pressure with the polymer temperature, the former model of polymer air drawing is improved and a complete polymer air drawing model is established, which is integrated with the model of air jet flow field of dual slot die.

在此基础上,对前人的聚合物拉伸理论模型进行了改进,以幂律模型作为描述聚合物熔体流变行为的本构方程,并考虑了聚合物熔体密度和定压比热随聚合物熔体温度变化而变化这个因素,从而建立了完整的熔喷聚合物拉伸理论模型。

Using the opened thermosiphon of 38x3 as experimental element and water as working fluid,the characteristics of dynamic low load boiling,stable severe boiling heat transfer coefficient and critical heat flux are gotten for the opened thermosiphon at the pressure of 0.02-0.1MPa and 0.1-0.8MPa respectively,which makes up the drawback that the opened thermisiphon has not yet accurate boiling heat transfer relationship formulas.

本文以工程上常用的Φ38×3的开口封底为实验元件,以水为工质,对开启式热管内的动态低负荷沸腾、稳态旺盛沸腾及临界沸腾特性进行系统的可视化实验研究,实验压力为0.02~0.8MPa,实验得出了Φ38×3的开口封底管在工作压力为0.02~0.8MPa和0.1~0.8MPa下的管内沸腾传热系数及临界热负荷计算关联式,弥补了开口封底管——这一新型传热元件尚无准确的沸腾换热关联式的缺陷。

It is found that the overall heat transfer will be increased if there are more heat transfer area in the diagonal region starting from the crosspoint of two streams for crossflow heat exchanger.

在维持总传热面积不变的条件下,于叉流换热器冷热流体相交点区域,及由该点所在对角线从两侧往对角线中心区域增加局部传热面积,可改善温差场的均匀程度,从而提高效能。

In previous researches, the numerical simulations were mainly focused on the convective heat transfer in the fluid zone of the louvered fin geometry. Virtually, the heat conduction in the fins and the convective heat transfer of air are coupled each other.

国外有学者对百叶窗翅片内的流场和温度场进行了数值模拟,事实上,在百叶窗翅片上的传热过程中,翅片的导热和空气的对流换热是相互耦合的,而这在以前的研究中忽略了。

The result shows that the cooling capacity increases with increasing generator heat transfer. The coefficient of performance of the system increases when the quantity of the generator heat transfer is increased from 6 kW to 7 kW, however it decreases in the range of 7 kW-9 kW. When the fan frequency increases, the temperature of liquid ammonia leaving condenser decreases, while the cooling capacity and the COP of the system increases. When the flow rate and inlet temperature of water/glycol increases, the evaporator takes more heat away and the cooling capacity and COP of the system increases.

其结果可发现当发生器加热量增加,系统温度增加系统冷冻能力增加,但其COP於6 kW-7 kW 系统COP会有先增加,於7 kW-9 kW,系统COP会有下掉的趋势;在冷凝器方面,当风扇频率增加,冷凝器温度降低时,冷凝器出口冷媒随之降低,系统冷冻能力会有所提高,COP亦增加;在蒸发器方面,蒸发器卤水出口温度及卤水流量增加,可以使蒸发器带走更多的热量其系统冷冻能力及COP也就会相对增加。

This paper gives a review of the heat transfer of supercritical carbon dioxide in-tube flow and points out that the main factors to influence heat transfer are heat flux, buoyancy, pressure,lubricant and so on.

概述了超临界CO2流体管内对流换热的研究,指出了影响换热的主要因素有热流密度、浮升力、压力、润滑油等,提供了多种公开发表的超临界流体在冷却工况下的换热关联式,同时指出了现有研究内容的不足。

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