首页> 外文会议>International Conference On Nuclear Engineering >SUBCOOLED BOILING HEAT TRANSFER FOR TURBULENT FLOW OF WATER IN A SHORT VERTICAL TUBE
【24h】

SUBCOOLED BOILING HEAT TRANSFER FOR TURBULENT FLOW OF WATER IN A SHORT VERTICAL TUBE

机译:在短垂直管中湍流水流的沸腾沸腾热传递

获取原文
获取外文期刊封面目录资料

摘要

The subcooled boiling heat transfer for Platinum test tube divided into three sections (upper, mid and lower positions) for the flow velocities (u=4.0 to 13.3 m/s), the inlet liquid temperatures (T{sub}(in)=295.26 to 305.25 K), the inlet pressures (P{sub}(in)=739.26 to 1064.48 kPa) and the exponentially increasing heat input with various periods (Q=Q{sub}0 exp(t/τ), τ=22.52 ms to 26.31 s) was systematically measured by an experimental water loop comprised of a pressurizer. The Platinum test tube of inner diameter (d=3 mm), heated length (L=66.5 mm), L/d (=22.17) and wall thickness (δ=0.5 mm) with a commercial finish of inner surface (average roughness, Ra=0.40 μm) is used in this work. The outer surface temperature of the test tube was observed by an infrared thermal imaging camera. The axial variations of the inner surface temperature, the heat flux and the heat transfer coefficient from non-boiling to CHF were clarified. The subcooled boiling heat transfer for Platinum test tube with a commercial finish of inner surface was compared with the values calculated by other workers' correlations for the subcooled boiling heat transfer. The influence of exponential period (τ) and flow velocity (u) on the subcooled boiling heat transfer is investigated into details and the predictable correlation of the subcooled boiling heat transfer for turbulent flow of water in a short vertical tube is derived based on the experimental data for Platinum test tube with a commercial finish of inner surface. The correlation can describe the subcooled boiling heat transfer coefficients obtained in this work within 15% difference.
机译:白金试管分成三个部分(上,中,下位置),用于流速的过冷沸腾传热(U = 4.0至13.3米/秒),入口液体温度(T {子}(在)= 295.26到305.25 K),入口压力(P {子}(在)= 739.26至1064.48千帕),并用不同时期的热输入指数增加(Q = Q {子} 0 EXP(吨/τ),τ= 22.52毫秒到26.31秒)是系统地由加压的实验水回路测量。内径(d = 3 mm)时,加热的长度(L =66.5毫米),L / d(= 22.17)和壁厚(δ= 0.5毫米)内表面的一个商业光洁度白金试管(平均粗糙度RA = 0.40微米)在这项工作中使用。通过红外热成像相机中观察到的测试管的外表面温度。内表面温度,热通量和从非沸腾以CHF的传热系数的轴向变化得到了澄清。白金试管内表面的商业光洁度过冷沸腾传热与其他工人的相关性为过冷却的沸腾传热计算的值进行比较。指数期(τ)的流动速度(U)上的过冷沸腾传热的影响,并且研究了成细节和用于水湍流在很短的垂直管的过冷沸腾热传递的可预测的相关性是基于实验导出用于与内表面的光洁度商用铂试管数据。的相关性可以描述15%差内这项工作所得到的过冷沸腾传热系数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号