...
首页> 外文期刊>Journal of Advances in Modeling Earth Systems >A New Scheme for Considering Soil Water‐Heat Transport Coupling Based on Community Land Model: Model Description and Preliminary Validation
【24h】

A New Scheme for Considering Soil Water‐Heat Transport Coupling Based on Community Land Model: Model Description and Preliminary Validation

机译:基于社区土地模型的考虑土壤水热传递耦合的新方案:模型描述与初步验证

获取原文

摘要

Land surface models (LSMs) have developed significantly over the past few decades, with the result that most LSMs can generally reproduce the characteristics of the land surface. However, LSMs fail to reproduce some details of soil water and heat transport during seasonal transition periods because they neglect the effects of interactions between water movement and heat transfer in the soil. Such effects are critical for a complete understanding of water‐heat transport within a soil thermohydraulic regime. In this study, a fully coupled water‐heat transport scheme (FCS) is incorporated into the Community Land Model (version 4.5) to replaces its original isothermal scheme, which is more complete in theory. Observational data from five sites are used to validate the performance of the FCS. The simulation results at both single‐point and global scale show that the FCS improved the simulation of soil moisture and temperature. FCS better reproduced the characteristics of drier and colder surface layers in arid regions by considering the diffusion of soil water vapor, which is a nonnegligible process in soil, especially for soil surface layers, while its effects in cold regions are generally inverse. It also accounted for the sensible heat fluxes caused by liquid water flow, which can contribute to heat transfer in both surface and deep layers. The FCS affects the estimation of surface sensible heat (SH) and latent heat (LH) and provides the details of soil heat and water transportation, which benefits to understand the inner physical process of soil water‐heat migration.
机译:在过去的几十年中,陆面模型(LSM)取得了长足的发展,其结果是大多数LSM通常都能再现陆面的特征。但是,LSM无法重现季节性过渡期内土壤水和热传递的某些细节,因为它们忽略了土壤中水分运动和热传递之间相互作用的影响。这样的影响对于全面了解土壤热工体系内的水热传输至关重要。在本研究中,将完全耦合的水热传输方案(FCS)纳入了社区土地模型(4.5版)中,以替代其理论上较为完整的原始等温方案。来自五个站点的观测数据用于验证FCS的性能。在单点和全球范围内的仿真结果均表明,FCS改进了土壤湿度和温度的仿真。通过考虑土壤水蒸气的扩散,FCS较好地再现了干旱地区较干燥和较冷的表层的特征,这在土壤中是不可忽略的过程,特别是对于土壤表层,而其在寒冷地区的影响通常是相反的。这也说明了由液态水流动引起的显热通量,它可以促进表面和深层的热传递。 FCS影响着表面显热(SH)和潜热(LH)的估算,并提供了土壤热量和水运输的详细信息,这有助于了解土壤水热迁移的内部物理过程。

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