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1.
Experimental studies on heat transfer and fluid flow of water in a vertical annulus, circulating through a cold leg forming a closed loop thermo-siphon, have been carried out in this article. The annulus has a radius ratio (outer radius to inner radius) of 1.184 and aspect ratio (length to annular gap) equal to 352. The experiments were conducted for constant heat fluxes of 1, 2.5, 5, 7.5, 10, 12.5, and 15 kW/m2. Transient behavior during the heat-up period of the system until the steady-state condition is attained and discussed. Variation in the heat transfer coefficient and Nusselt number along the annulus height represent the developing boundary layer at the entrance and fully developed flow in the remaining length. A large drop in the differential pressure is experienced when the liquid is circulated through the flow meters, which restrict the flow due to their very small passages. Flow restriction causes mass accumulation and rise of pressure at the exit of the annulus. It also causes a decrease in liquid head in the cooling leg. An increase in the heat flux leads to an increase in the heat transfer coefficient and Nusselt number. As a result of the data analysis correlations for the average Nusselt number, Reynolds number and circulation rate have been developed in terms of the heat flux.  相似文献   

2.
采用格子Boltzmann方法研究填充水-氧化铝纳米流体的等腰直角三角形腔体中的自然对流。讨论瑞利数、颗粒体积分数、热源位置等因素对对流换热的影响,以及不同纳米流体模型对模拟结果的影响。结果表明:在低瑞利数下,随着热源在左壁面向上移动,换热效率逐渐增加。而在高瑞利数(Ra=106)时,观察到相反的现象;采用单相纳米流体模型,模拟表明热壁面平均努塞尔数比率随着体积分数的增加近似线性增加。采用改进的纳米流体模型,结果显示平均努塞尔数比率随着体积分数的增加而增大,但是平均努塞尔数比率的变化斜率逐渐减小。改进模型模拟的换热效率比单相模型高,这是因为改进模型考虑了粒子间作用力及换热,更符合实际情况。  相似文献   

3.
采用正交实验方法考察了具有不同结构参数的三维周期波纹流道中的流体性能,并采用Webb评价方法对其进行性能评价。比较了不同波纹宽度的波纹流道的阻力因子ef、传热因子eNu和能效因子η的值,结果表明三者都随Re的增大而增大,波纹宽度最小时能效因子η最大。流体在波纹流道中垂直于主流方向的横截面上产生二次流,随着Re增大,二次流增强,阻力增大,温度边界层减薄,温度等值线分布变得不均匀,传热增强。采用拉格朗日粒子跟踪技术分析了不同Re下,流体粒子在波纹流道内的运动轨迹,绘制了不同周期出口流体粒子的庞加莱截面图,结果表明流体粒子在波纹流道中被反复拉伸和折叠,增加了流体粒子的接触面积,提高混合效率,强化了传热。  相似文献   

4.
半导体制冷强化传热研究   总被引:1,自引:0,他引:1  
对半导体制冷片进行了稳态传热分析,对半导体制冷风冷式散热片的底座厚度、翅片长度、翅片厚度、翅片数目、翅片顶端厚度等结构进行ANSYS模拟分析优化,并通过实验对比得出风冷式、水冷式散热的半导体制冷效率与传统压缩机制冷效率的区别;同时,通过改变风冷式散热半导体制冷的风扇功率、散热片结构等分析优化了半导体制冷的散热模式。  相似文献   

5.
Summary The electroconvective specific-heat transfer coefficient has been measured in various liquids (methanol, kerosene, silicon oil and ethanol) from a single platinum wire (diameter=0.025 mm) mounted along the axis of a copper cylinder (diameter=53 mm). The heat transfer coefficient has been evaluated under the influence of a.c. and d.c. fields. An a.c. field always causes an enhancement in the heat transfer coefficient. A d.c. field causes an inhibition in heat transfer in methanol. A similar trend is noticed in kerosene, but the heat transfer coefficient increases again as the field is increased. An enhancement in the heat transfer coefficient is observed in silicon oil, and a similar trend is noticed in ethanol, but the heat transfer coefficient decreases again as the field is increased. The effect of cylinder orientation on convection is studied. The efficiency of convection has been calculated for various liquids using an empirical relation. The efficiency obtained in a d.c. field is found to be higher than in the a.c. field. A similar trend is also noticed for the electric Nusselt number.  相似文献   

6.
针对纺织厂空调系统的核心-喷水室,研究喷水室内处理空气的冷却减湿和等焓加湿两个典型热湿交换过程。提出Re准数对传热传质有显著作用,而Re数的大小取决于流体速度。通过实验研究当空气流速从3m/s提高到5m/s时对喷水室热湿交换性能的影响,从而确定空气流动速度因素对两个热湿交换效率的影响趋势。根据拟合的数学曲线,总结出当空气的流动速度提高后,热湿交换效率相应提高。从而推动高速喷水室在实际工程中的应用。  相似文献   

7.
研究了伽马射线辐照对CCD敏感参数的影响,获取了CCD器件暗电流和电荷转移效率参数随辐照剂量的变化规律,辐照试验结果表明,暗电流参数的增长和电荷转移效率参数的衰减与辐照剂量近似成线性关系。  相似文献   

8.
研究了伽马射线辐照对CCD敏感参数的影响,获取了CCD器件暗电流和电荷转移效率参数随辐照剂量的变化规律,辐照试验结果表明,暗电流参数的增长和电荷转移效率参数的衰减与辐照剂量近似成线性关系。  相似文献   

9.
研究了伽马射线辐照对CCD敏感参数的影响,获取了CCD器件暗电流和电荷转移效率参数随辐照剂量的变化规律,辐照试验结果表明,暗电流参数的增长和电荷转移效率参数的衰减与辐照剂量近似成线性关系。  相似文献   

10.
研究了伽马射线辐照对CCD敏感参数的影响,获取了CCD器件暗电流和电荷转移效率参数随辐照剂量的变化规律,辐照试验结果表明,暗电流参数的增长和电荷转移效率参数的衰减与辐照剂量近似成线性关系。  相似文献   

11.
强化效率是评价翅片的最基本参数之一,翅片的结构参数直接影响着翅片传热的强化效率。对翅片结构进行优化设计的目的在于找到翅片的最佳结构,使得用最小换热面积满足换热的设计要求。可为进一步的对空冷器的结构优化提供参考。  相似文献   

12.
解岩  欧阳洁  周文  任朝倩 《计算物理》2013,30(3):337-345
用非结构网格有限体积法求解自然对流换热时,传统的对流项离散格式难以兼顾数值精度与计算效率,我们发展了一种耦合高精度格式的延迟修正方法,用于对流项的离散.高Re数下方腔驱动流数值计算验证了该方法具有较高的计算精度和较好的稳定性.Boussinesq流体的自然对流换热数值模拟,表明该方法能有效克服高Ra数时数值计算发散,可准确捕捉自然对流换热问题中不同偏心率下的等温线和流线分布特征.  相似文献   

13.
This study aimed at exploring influence of T-semi attached rib on the turbulent flow and heat transfer parameters of a silver-water nanofluid with different volume fractions in a three-dimensional trapezoidal microchannel. For this purpose, convection heat transfer of the silver-water nanofluid in a ribbed microchannel was numerically studied under a constant heat flux on upper and lower walls as well as isolated side walls. Calculations were done for a range of Reynolds numbers between 10,000 and 16,000, and in four different sorts of serrations with proportion of rib width to hole of serration width (R/W). The results of this research are presented as the coefficient of friction, Nusselt number, heat transfer coefficient and thermal efficiency, four different R/W microchannels. The results of numerical modeling showed that the fluid's convection heat transfer coefficient is increased as the Reynolds number and volume fraction of solid nanoparticle are increased. For R/W=0.5, it was also maximum for all the volume fractions of nanoparticle and different Reynolds numbers in comparison to other similar R/W situations. That's while friction coefficient, pressure drop and pumping power is maximum for serration with R/W=0 compared to other serration ratios which lead to decreased fluid-heat transfer performance.  相似文献   

14.
李倩文  李莹  张荣  卢灿灿  白龙 《物理学报》2017,66(13):130502-130502
热机性能的优化是热力学领域的一个重要问题,而工质与热源之间的传热过程是热机工作时产生不可逆的主要来源.本文在引入功率增益和效率增益两个重要参数的基础上,基于一个简化的Curzon-Ahlborn热机模型并利用合比分比原理,给出了线性与非线性传热过程的热机在任意功率输出时的效率表达式,结合数值计算详细讨论了热机在任意功率输出时的特性.研究表明,参数ξ作为功率增益δP的函数存在两个分支:在第一分支上(不利情形),效率呈现出单调变化特征;在第二分支上(有利情形),效率随着的δP变化是非单调的且有最大值.随着传热指数的增加,热机的工作区域减小,这源于非线性传热过程包含热辐射所致.进一步发现功率-效率关系曲线存在权衡工作点,热机在该点附近工作能够实现最有效的热功转换.研究结果有助于深入理解具有不同传热过程热机的优化执行.  相似文献   

15.
Optimal configuration of a class of endoreversible heat engines with fixed duration, input energy and radiative heat transfer law (q ∝ Δ(T 4)) is determined. The optimal cycle that maximizes the efficiency of the heat engine is obtained by using optimal-control theory, and the differential equations are solved by the Taylor series expansion. It is shown that the optimal cycle has eight branches including two isothermal branches, four maximum-efficiency branches, and two adiabatic branches. The interval of each branch is obtained, as well as the solutions of the temperatures of the heat reservoirs and the working fluid. A numerical example is given. The obtained results are compared with those obtained with the Newton’s heat transfer law for the maximum efficiency objective, those with linear phenomenological heat transfer law for the maximum efficiency objective, and those with radiative heat transfer law for the maximum power output objective.  相似文献   

16.
17.
对油基钻屑在螺纹推进式换热器内的流动换热过程进行了数值模拟,研究了螺杆转速、油基钻屑雷诺数Re和螺纹截面形状对流动换热的影响。结果表明:随着螺杆转速增加,传热系数、油基钻屑出口温度均增大;同时发现,当雷诺数Re<250时,壳侧Nusselt数随雷诺数Re增大而迅速增大,此后雷诺数对Nusselt数影响较小;Nusselt数随曲率比di/D增大而增大。为方便工程设计,利用数值结果给出了油基钻屑的流动换热关系式。  相似文献   

18.
热传导对微型涡轮动叶性能影响的数值模拟   总被引:1,自引:0,他引:1  
为了探求热传导对微型燃气轮机性能的影响,使用CFX对某微型燃气轮机涡轮动叶的流动特性和换热性能进行了数值模拟并提出了考虑热传导损失的轮周效率的计算方法.通过计算发现热传导对流动和涡轮动叶的性能的影响不可忽略,热传导使动叶输出功和效率明显降低.考虑顶部间隙后,热传导的影响更加显著.  相似文献   

19.
(火积)的宏观物理意义及其应用   总被引:3,自引:0,他引:3       下载免费PDF全文
赵甜  陈群 《物理学报》2013,62(23):234401-234401
提高传热过程的性能是解决能源问题的重要途径之一. 本文通过与力学中相关概念进行对比,分析了传热过程性能优化的新物理量——(火积)的宏观物理意义. 通过(火积)与物体对外传热能力、(火积)定义的传热过程效率以及(火积)与热量传递驱动力的关系三方面分析,发现(火积)具有的宏观物理意义是物体包含的热量在温度场中所具有的势能. 并且,通过对流换热的(火积)理论优化介绍了(火积)理论在工程实际中的应用. 关键词: (火积) 宏观物理意义 势能 对流换热  相似文献   

20.
研究超临界CO2在高温吸热管内的传热特性是将其应用于聚光太阳能热发电技术中的基础.本文对此进行了数值模拟研究,分析了流体温度、流动方向、系统压力、质量流率和热流密度对对流传热系数和Nu数的影响.结果表明:高温区(800—1050 K)的对流传热系数和Nu数受流动方向和系统压力的影响均很小,但都随着质量流率的增大以及热流密度的减小而明显增大;而随着流体温度的升高,对流传热系数近似线性增大,Nu数则近似线性减小.另外,本文研究发现在高温区可忽略浮升力对传热的影响,而由高热流密度引起的流动加速效应会明显恶化传热.最后,选取了八种管内超临界流体传热关联式与模拟结果进行对比,发现使用基于热物性修正的关联式对高温区传热数据预测的结果优于使用基于无量纲数修正的关联式得到的结果,且其中预测效果最优的关联式得到的计算结果与模拟结果之间的平均绝对相对偏差为8.1%.  相似文献   

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