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The transient response of rotary desiccant wheels through experimentation and numerical analysis.

机译:通过实验和数值分析得出了旋转式干燥剂轮的瞬态响应。

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摘要

Rotary desiccant wheels are commonly used for industrial dehumidification systems and significant research is being done to increase their application in other HVAC systems. The transient response is of concern because it can affect overall system performance and previous research efforts have indicated the transient response to be of substantial duration.; This research experimentally and analytically investigated the transient response of rotary desiccant wheels.; A model was developed to predict the transient response of rotary desiccant wheels with significant improvements to previous versions. The basic model uses fundamental principles of heat and mass transfer with the finite difference method. The parabolic concentration profile was used to approximate moisture gradients within the desiccant particle. This concept is fundamentally more correct than previous lumped capacitance models and avoids the computational difficulties of more rigorous models which include an extra second order differential equation. The NTU terms from the finite difference equations were also calculated at each point rather than as constants for a stream or element since they are significantly temperature and moisture dependent. The numerical solution techniques improved the speed and flexibility of the model by using a tridiagonally banded matrix solver for the difference equations and the bisection method was used for the parabolic concentration profile.; Experimental work was performed at the National Renewable Energy Laboratory (NREL) in Golden, CO on a commercially available rotary desiccant wheel made by NovelAire. Step changes to regeneration temperature, wheel speed, and flowrate were performed.; The model was validated by comparing the experimental data to model predictions using statistical and visual analysis of the outlet condition (temperature, humidity ratio) response curves. An alternative validation technique was also performed by statistically comparing thermographic images of the desiccant wheel surface with numerical calculations.; A parametric analysis was completed to observe the impact of different parameters on the transient response. Operational factors, ambient conditions, and wheel construction can have a substantial impact on the transient response time. Ambient temperature, for example, can increase transient time by up to 97% from a baseline of 16 minutes.; A control strategy comparison was done that determined cycling of rotary desiccant wheels could be an effective and efficient strategy to meet moisture removal requirements.
机译:旋转式干燥剂轮通常用于工业除湿系统,并且正在进行大量研究以增加其在其他HVAC系统中的应用。瞬态响应之所以令人关注,是因为它会影响整个系统的性能,并且先前的研究表明瞬态响应的持续时间很长。该研究通过实验和分析方法研究了旋转干燥剂轮的瞬态响应。开发了一个模型来预测旋转式干燥剂轮的瞬态响应,并对该模型进行了重大改进。基本模型使用有限差分法利用传热和传质的基本原理。抛物线浓度曲线用于估算干燥剂颗粒中的水分梯度。该概念从根本上比以前的集总电容模型更正确,并且避免了更严格的模型(包括额外的二阶微分方程)的计算困难。还从每个点计算有限差分方程中的NTU项,而不是将其作为流或元素的常数,因为它们与温度和湿度密切相关。数值求解技术通过使用三对角带状矩阵求解器来求解差分方程,并采用二分法来求解抛物线浓度曲线,从而提高了模型的速度和灵活性。实验工作是在美国科罗拉多州戈尔登的国家可再生能源实验室(NREL)上使用由NovelAire制造的商用旋转式干燥剂轮进行的。对再生温度,车轮速度和流量进行了逐步更改。通过使用出口条件(温度,湿度比)响应曲线的统计和视觉分析将实验数据与模型预测进行比较,从而验证了模型的有效性。还通过统计比较干燥剂轮表面的热成像图像和数值计算来执行替代验证技术。完成了参数分析,以观察不同参数对瞬态响应的影响。操作因素,环境条件和车轮构造可能会对瞬态响应时间产生重大影响。例如,环境温度可以使瞬态时间从基线的16分钟增加多达97%。进行了控制策略比较,确定旋转式干燥剂轮的循环可能是满足水分去除要求的有效策略。

著录项

  • 作者

    Grumbach, Stephen Delbert.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 265 p.
  • 总页数 265
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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