Theoretical and Experimental Thermal Performance Analysis of Complex Thermal Storage Membrane Containing Bio-Based Phase Change Material (PCM).

Theoretical and Experimental Thermal Performance Analysis of Complex Thermal Storage Membrane Containing Bio-Based Phase Change Material (PCM).
Author :
Publisher :
Total Pages :
Release :
ISBN-10 : OCLC:727181468
ISBN-13 :
Rating : 4/5 ( Downloads)

Book Synopsis Theoretical and Experimental Thermal Performance Analysis of Complex Thermal Storage Membrane Containing Bio-Based Phase Change Material (PCM). by :

Download or read book Theoretical and Experimental Thermal Performance Analysis of Complex Thermal Storage Membrane Containing Bio-Based Phase Change Material (PCM). written by and published by . This book was released on 2010 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Since 2000, an ORNL research team has been testing different configurations of PCM-enhanced building envelop components to be used in residential and commercial buildings. During 2009, a novel type of thermal storage membrane was evaluated for building envelope applications. Bio-based PCM was encapsulated between two layers of heavy-duty plastic film forming a complex array of small PCM cells. Today, a large group of PCM products are packaged in such complex PCM containers or foils containing arrays of PCM pouches of different shapes and sizes. The transient characteristics of PCM-enhanced building envelope materials depend on the quality and amount of PCM, which is very often difficult to estimate because of the complex geometry of many PCM heat sinks. The only widely used small-scale analysis method used to evaluate the dynamic characteristics of PCM-enhanced building products is the differential scanning calorimeter (DSC). Unfortunately, this method requires relatively uniform, and very small, specimens of the material. However, in numerous building thermal storage applications, PCM products are not uniformly distributed across the surface area, making the results of traditional DSC measurements unrealistic for these products. In addition, most of the PCM-enhanced building products contain blends of PCM with fire retardants and chemical stabilizers. This combination of non-uniform distribution and non-homogenous composition make it nearly impossible to select a representative small specimen suitable for DSC tests. Recognizing these DSC limitations, ORNL developed a new methodology for performing dynamic heat flow analysis of complex PCM-enhanced building materials. An experimental analytical protocol to analyze the dynamic characteristics of PCM thermal storage makes use of larger specimens in a conventional heat-flow meter apparatus, and combines these experimental measurements with three-dimensional (3-D) finite-difference modeling and whole building energy simulations. Based on these dynamic tests and modeling, ORNL researchers then developed a simplified one-dimensional (1-D) model of the PCM-enhanced building component that can be easily used in whole-building simulations. This paper describes this experimental-analytical methodology as used in the analysis of an insulation assembly containing a complex array of PCM pouches. Based on the presented short example of whole building energy analysis, this paper describes step-by-step how energy simulation results can be used for optimization of PCM-enhanced building envelopes. Limited results of whole building energy simulations using the EnergyPlus program are presented as well.


Theoretical and Experimental Thermal Performance Analysis of Complex Thermal Storage Membrane Containing Bio-Based Phase Change Material (PCM). Related Books

Theoretical and Experimental Thermal Performance Analysis of Complex Thermal Storage Membrane Containing Bio-Based Phase Change Material (PCM).
Language: en
Pages:
Authors:
Categories:
Type: BOOK - Published: 2010 - Publisher:

DOWNLOAD EBOOK

Since 2000, an ORNL research team has been testing different configurations of PCM-enhanced building envelop components to be used in residential and commercial
Thermal Energy Storage with Phase Change Materials
Language: en
Pages: 80
Authors: João M.P.Q. Delgado
Categories: Technology & Engineering
Type: BOOK - Published: 2018-08-09 - Publisher: Springer

DOWNLOAD EBOOK

This short book provides an update on various methods for incorporating phase changing materials (PCMs) into building structures. It discusses previous research
Thermal Energy Storage Technologies for Sustainability
Language: en
Pages: 445
Authors: S. Kalaiselvam
Categories: Technology & Engineering
Type: BOOK - Published: 2014-07-30 - Publisher: Elsevier

DOWNLOAD EBOOK

Thermal Energy Storage Technologies for Sustainability is a broad-based overview describing the state-of-the-art in latent, sensible, and thermo-chemical energy
Bio-based Materials and Biotechnologies for Eco-efficient Construction
Language: en
Pages: 429
Authors: F Pacheco Torgal
Categories: Technology & Engineering
Type: BOOK - Published: 2020-03-13 - Publisher: Woodhead Publishing

DOWNLOAD EBOOK

Bio-based Materials and Biotechnologies for Eco-efficient Construction fills a gap in the published literature, discussing bio-based materials and biotechnologi
Evaluation of Energy Efficiency and Flexibility in Smart Buildings
Language: en
Pages: 442
Authors: Alessia Arteconi
Categories: Technology & Engineering
Type: BOOK - Published: 2021-01-21 - Publisher: MDPI

DOWNLOAD EBOOK

This Special Issue “Evaluation of Energy Efficiency and Flexibility in Smart Buildings” addresses the relevant role of buildings as strategic instruments to