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A three-dimensional heat and mass transport model for a tree within a forest.

机译:森林中树木的三维热质运输模型。

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摘要

A three-dimensional computational tool was developed that simulates the heat and mass transfer interaction in a soil-root-stem system (SRSS) for a tree in a seasonally varying deciduous forest. The development of the SRSS model involved the modification and coupling of existing heat and mass transport tools to reproduce the three-dimensional diurnal internal and external temperatures, internal fluid distribution, and heat flow in the soil, roots, and stems. The model also required the development of a parallel Monte-Carlo algorithm to simulate the solar and environmental radiation regime consisting of sky and forest radiative effects surrounding the tree. The SRSS was tested, component-wise verified, and quantitatively compared with published observations.;The SRSS was applied to simulate a tree in a dense temperate hardwood forest that included the calculations of surface heat flux and comparisons between cases with fluid flow transport and periods of zero flow. Results from the winter simulations indicate that the primary influence of temperature in the trunk is solar radiation and radiative energy from the soil and surrounding trees. Results from the summer simulation differed with previous results, indicating that sap flow in the trunk altered the internal temperature change with secondary effects attributed to the radiative energy from the soil and surrounding trees. Summer simulation results also showed that with sap flow, as the soil around the roots become unsaturated, the flow path for the roots will be changed to areas where the soil is still saturated with a corresponding increase in fluid velocity.
机译:开发了一种三维计算工具,该工具可以模拟季节性变化的落叶林中树木的土壤-根-茎系统(SRSS)中的传热和传质相互作用。 SRSS模型的开发涉及修改和耦合现有的传热和传质工具,以再现三维昼夜内部和外部温度,内部流体分布以及土壤,根和茎中的热流。该模型还需要开发并行的蒙特卡洛算法,以模拟由树木周围的天空和森林辐射效应组成的太阳和环境辐射状况。对SRSS进行了测试,逐个部件验证并与已发表的观察结果进行了定量比较。; SRSS用于模拟茂密的温带硬木森林中的树木,包括表面热通量的计算以及流体流动情况和周期之间的比较零流量。冬季模拟的结果表明,树干温度的主要影响是太阳辐射以及土壤和周围树木的辐射能。夏季模拟的结果与以前的结果不同,表明树干中的汁液流动改变了内部温度变化,而次级影响则归因于土壤和周围树木的辐射能。夏季模拟结果还表明,随着树液的流动,当根周围的土壤变得不饱和时,根的流动路径将改变为土壤仍然饱和的区域,并相应增加了流速。

著录项

  • 作者

    Ballard, Jerrell Ray, Jr.;

  • 作者单位

    Mississippi State University.;

  • 授予单位 Mississippi State University.;
  • 学科 Engineering Mechanical.;Engineering System Science.;Biophysics General.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 151 p.
  • 总页数 151
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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