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Simulation of lakes and surface water heat exchangers for design of surface water heat pump systems.

机译:模拟湖泊和地表水热交换器,以设计地表水热泵系统。

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摘要

Surface Water Heat Pump (SWHP) system utilize surface water bodies, such as ponds, lakes, rivers, and the sea, as heat sources and/or sinks. These systems may be open-loop, circulating water between the surface water body and a heat exchanger on dry land, or closed-loop, utilizing a submerged surface water heat exchanger (SWHE). Both types of SWHP systems have been widely used, but little in the way of design data, design procedures, or energy calculation procedures is available to aid engineers in the design and analysis of these systems. For either type of SWHP system, the ability to predict the evolution of lake temperature with time is an important aspect of needed design and energy analysis procedures. This thesis describes the development and validation of a lake model that is coupled with a surface water heat exchanger model to predict both the lake dynamics (temperature, stratification, ice/snow cover) and the heat transfer performance of different types of SWHE. This one-dimensional model utilizes a detailed surface heat balance model at the upper boundary, a sediment conduction heat transfer model at the lower boundary, and an eddy diffusion model to predict transport within the lake. The lake model is implemented as part of the developed software design tool, which can be used as an aid in the sizing of SWHE used in closed loop SWHP systems.
机译:地表水热泵(SWHP)系统利用地表水体(例如池塘,湖泊,河流和海洋)作为热源和/或汇。这些系统可以是开环的,在地表水体与干陆上的热交换器之间的循环水,也可以是使用浸入式地表水热交换器(SWHE)的闭环。两种类型的SWHP系统都已被广泛使用,但是很少有设计数据,设计程序或能量计算程序可以帮助工程师设计和分析这些系统。对于任何一种SWHP系统,预测湖泊温度随时间变化的能力都是所需设计和能量分析程序的重要方面。本文描述了一个湖泊模型的开发和验证,该模型与地表水热交换器模型相结合,可以预测湖泊动力学(温度,分层,冰/雪盖)和不同类型SWHE的传热性能。这个一维模型利用上边界的详细地表热量平衡模型,下边界的沉积物传导传热模型和涡流扩散模型来预测湖泊内的运输。湖泊模型是已开发的软件设计工具的一部分,可作为闭环SWHP系统中SWHE尺寸确定的辅助工具。

著录项

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Engineering Mechanical.;Biology Limnology.;Physics General.
  • 学位 M.S.
  • 年度 2013
  • 页码 171 p.
  • 总页数 171
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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