首页> 外文会议>Cryogenic Engineering Conference >Numerical study on the flow and heat transfer characteristics of slush nitrogen in a corrugated pipe
【24h】

Numerical study on the flow and heat transfer characteristics of slush nitrogen in a corrugated pipe

机译:瓦楞纸管中泥浆氮流量和传热特性的数值研究

获取原文

摘要

Slush nitrogen has lower temperature, higher density and higher heat capacity than that of liquid nitrogen at normal boiling point. It is considered to be a potential coolant for high-temperature superconductive cables (HTS) that would decrease nitrogen consumption and storage cost. The corrugated pipe can help with the enhancement of heat transfer and flexibility of the coolants for HTS cables. In this paper, a 3-D Euler-Euler two-fluid model has been developed to study the flow and heat transfer characteristics of slush nitrogen in a horizontal helically corrugated pipe. By comparing with the empirical formula for pressure drop, the numerical model is confirmed to be effective for the prediction of slush nitrogen flow in corrugated pipes. The flow and heat transfer characteristics of slush nitrogen in a horizontal pipe at various working conditions (inlet solid fraction of 0-20%, inlet velocity of 0-3 m/s, heat flux of 0-12 kW/m~2) have been analyzed. The friction factor of slush nitrogen is lower than that of subcooled liquid nitrogen when the slush Reynolds number is higher than 4.2 × 10~4. Moreover, the heat transfer coefficient of slush nitrogen flow in the corrugated pipe is higher than that of subcooled liquid nitrogen at velocities which is higher than that 1.76 m/s, 0.91 m/s and 0.55 m/s for slush nitrogen with solid fraction of 5%, 10% and 20%, respectively. The slush nitrogen has been confirmed to have better heat transfer performance and lower pressure drop instead of using liquid nitrogen flowing through a helically corrugated pipe.
机译:在正常沸点下,纤维氮具有较低的温度,更高的密度和比液氮的热容量更高。它被认为是高温超导电缆(HTS)的潜在冷却剂,其将降低氮气消耗和储存成本。波纹管可以帮助提高热传递和用于HTS电缆的冷却剂的柔韧性。在本文中,已经开发了一种三维欧拉 - 欧拉两种流体模型,用于研究水平螺旋瓦楞纸管中的浸泡氮的流动和传热特性。通过与压降的经验公式进行比较,确认数值模型是有效地对波纹管中的浸出氮流预测有效。在各种工作条件下水平管中浸出氮的流动和传热特性(入口固体分数为0-20%,入口速度为0-3米/秒,加热通量为0-12 kW / m〜2)分析了。当浸入雷诺数高于4.2×10〜4时,浸出氮的摩擦系数低于脱硫液氮的摩擦系数。此外,波纹管中的浸出氮气流的传热系数高于速度高于1.76m / s,0.91m / s和0.55m / s的速度下的液压液氮的热传递系数高于填充氮气的固体分数分别为5%,10%和20%。已经确认浸入氮具有更好的传热性能和较低的压降,而不是使用流过螺旋瓦楞纸管的液氮。

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