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Transient behavior of run-around heat and moisture exchanger system. Part І: Model formulation and verification

✍ Scribed by Mehran Seyed-Ahmadi; Blake Erb; Carey J. Simonson; Robert W. Besant


Publisher
Elsevier Science
Year
2009
Tongue
English
Weight
553 KB
Volume
52
Category
Article
ISSN
0017-9310

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✦ Synopsis


In Part I, a numerical model for coupled heat and moisture transfer in a run-around heat and moisture exchanger with a liquid desiccant coupling fluid is developed. The numerical model is two dimensional, transient and is formulated using the finite difference method with an implicit time discretization. The results from the numerical model for the case of only heat transfer for a single heat exchanger are compared to an available analytical solution and good agreement is obtained. For the simultaneous heat and moisture transfer in the run-around membrane energy exchanger (RAMEE), a comparison between numerical model results and experimental measurements obtained from laboratory testing for both sensible and latent effectiveness showed satisfactory agreement at different operating conditions. Part II of this paper applies the model for a range of initial conditions .


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Transient behavior of run-around heat an
✍ Mehran Seyed-Ahmadi; Blake Erb; Carey J. Simonson; Robert W. Besant 📂 Article 📅 2009 🏛 Elsevier Science 🌐 English ⚖ 615 KB

Part I of this paper [17] developed and verified the numerical model for simultaneous heat and moisture transfer in the run-around membrane energy exchanger (RAMEE) system to determine the transient behavior of the system under different initial and operating conditions. This paper presents the tra