...
首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Numerical analysis of air‐water‐heat flow in unsaturated soil: Is it necessary to consider airflow in land surface models?
【24h】

Numerical analysis of air‐water‐heat flow in unsaturated soil: Is it necessary to consider airflow in land surface models?

机译:数值分析的空气量水的热流非饱和土:它是必要的考虑气流在地表模型?

获取原文
获取原文并翻译 | 示例
           

摘要

From a subsurface physical point of view, this paper discusses the necessity of considering the two‐phase heat and mass transfer process in land surface models (LSMs). The potential‐based equations of coupled mass and heat transport under constant air pressure form the basis of the proposed model. The model is developed considering dry air as a single phase, and including mechanical dispersion in the water vapor and dry air transfer. The adsorbed liquid flux due to thermal gradient is also taken into account. The set of equations for the two‐phase heat and mass transfer is formulated fully considering diffusion, advection, and dispersion. The advantage of the proposed model over the traditional equation system is discussed. The accuracy of the proposed model is assessed through comparison with analytical work for coupled mass and heat transfer and experimental work for isothermal two‐phase flow (moisture/air transfer). The influence adding airflow has on the coupled moisture and heat transfer is further investigated, clearly identifying the importance of including airflow in the coupled mass and heat transfer. How the isothermal two‐phase flow is affected by considering heat flow is also evaluated, showing the influence of heat flow only to be significant if the air phase plays a significant role in solving the equations of the water phase. On the basis of a field experiment, the proposed model is compared with the measured soil moisture, temperature, and evaporation rate, the results showing clearly that it is necessary to consider the airflow mechanism in soil‐atmosphere interaction studies.
机译:从地下物理的角度来看,这探讨了考虑的必要性两阶段传热传质过程的土地表面模型(lsm)。质量和热传输方程的耦合恒定的气压下形成的基础提出的模型。考虑到干燥的空气作为一个单独的阶段,和包括机械分散在水中蒸汽和干燥的空气转移。由于热通量梯度也纳入帐户。传热传质是完全制定考虑扩散,平流、扩散。该模型的优势讨论了传统的方程系统。评估该模型的准确性通过比较与分析工作耦合的质量和传热和实验为等温工作两相流(水分/空气转移)。进一步的水分和传热的耦合调查,明确识别的重要性包括气流耦合的质量和热量转移。通过考虑热流也受到影响评估,显示热流的影响只是扮演了一个重要如果空气阶段在解决方程的重要作用水相。该模型与测量土壤水分、温度和蒸发率,结果清楚地显示,它是必要的考虑气流机制土壤大气相互作用的研究。

著录项

相似文献

  • 外文文献
  • 中文文献
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