Numerical Simulation Study of Coagulation Characteristics of Paraffin Cavity with Gradient TPMS Framework

In this paper, homogeneous metal skeleton and gradient porosity skeleton are constructed by three-periodic minimal surface method ( TPMS). Based on the pore scale, the finite element method is used to simulate the solidification process with the solidification process of pure paraffin cavity, and in...

Full description

Saved in:
Bibliographic Details
Main Authors: 马超富, 陈宝明, 见禹, 仲崇龙, 李鸿臣
Format: Article
Language:zho
Published: Journal of Refrigeration Magazines Agency Co., Ltd. 2025-01-01
Series:Zhileng xuebao
Subjects:
Online Access:http://www.zhilengxuebao.com/thesisDetails?columnId=78264160&Fpath=home&index=0
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1850027219370377216
author 马超富
陈宝明
见禹
仲崇龙
李鸿臣
author_facet 马超富
陈宝明
见禹
仲崇龙
李鸿臣
author_sort 马超富
collection DOAJ
description In this paper, homogeneous metal skeleton and gradient porosity skeleton are constructed by three-periodic minimal surface method ( TPMS). Based on the pore scale, the finite element method is used to simulate the solidification process with the solidification process of pure paraffin cavity, and investigate the influence law of the skeleton structure in the solidification of composite phase change material. Through the comprehensive analysis of solid-liquid phase change interface, overall solid phase rate, Nu number of cold source wall and cold storage performance, the following conclusion was obtained: Adding TPMS skeleton to the phase change cavity and the porosity of 0.78 phase change cavity was 94.1% shorter than the solidification time of pure paraffin phase change cavity, and the cooling storage rate was increased by 12.98 times. At the average porosity of 0.84, the porosity increases the solidification time of the cavity along the positive direction of x is the shortest, reducing the solidification time by 93.5%, and increasing the cooling storage rate by 12.60 times; the solidification time by 12.23% and the cooling storage rate by 15.3%.
format Article
id doaj-art-ae97276a2cd940c69b8bb66d5bd3118e
institution DOAJ
issn 0253-4339
language zho
publishDate 2025-01-01
publisher Journal of Refrigeration Magazines Agency Co., Ltd.
record_format Article
series Zhileng xuebao
spelling doaj-art-ae97276a2cd940c69b8bb66d5bd3118e2025-08-20T03:00:17ZzhoJournal of Refrigeration Magazines Agency Co., Ltd.Zhileng xuebao0253-43392025-01-0178264160Numerical Simulation Study of Coagulation Characteristics of Paraffin Cavity with Gradient TPMS Framework马超富陈宝明见禹仲崇龙李鸿臣In this paper, homogeneous metal skeleton and gradient porosity skeleton are constructed by three-periodic minimal surface method ( TPMS). Based on the pore scale, the finite element method is used to simulate the solidification process with the solidification process of pure paraffin cavity, and investigate the influence law of the skeleton structure in the solidification of composite phase change material. Through the comprehensive analysis of solid-liquid phase change interface, overall solid phase rate, Nu number of cold source wall and cold storage performance, the following conclusion was obtained: Adding TPMS skeleton to the phase change cavity and the porosity of 0.78 phase change cavity was 94.1% shorter than the solidification time of pure paraffin phase change cavity, and the cooling storage rate was increased by 12.98 times. At the average porosity of 0.84, the porosity increases the solidification time of the cavity along the positive direction of x is the shortest, reducing the solidification time by 93.5%, and increasing the cooling storage rate by 12.60 times; the solidification time by 12.23% and the cooling storage rate by 15.3%.http://www.zhilengxuebao.com/thesisDetails?columnId=78264160&Fpath=home&index=0phase change thermal storageTPMS skeletongradient distributionfinite element methodcoefficient of heat transfer
spellingShingle 马超富
陈宝明
见禹
仲崇龙
李鸿臣
Numerical Simulation Study of Coagulation Characteristics of Paraffin Cavity with Gradient TPMS Framework
Zhileng xuebao
phase change thermal storage
TPMS skeleton
gradient distribution
finite element method
coefficient of heat transfer
title Numerical Simulation Study of Coagulation Characteristics of Paraffin Cavity with Gradient TPMS Framework
title_full Numerical Simulation Study of Coagulation Characteristics of Paraffin Cavity with Gradient TPMS Framework
title_fullStr Numerical Simulation Study of Coagulation Characteristics of Paraffin Cavity with Gradient TPMS Framework
title_full_unstemmed Numerical Simulation Study of Coagulation Characteristics of Paraffin Cavity with Gradient TPMS Framework
title_short Numerical Simulation Study of Coagulation Characteristics of Paraffin Cavity with Gradient TPMS Framework
title_sort numerical simulation study of coagulation characteristics of paraffin cavity with gradient tpms framework
topic phase change thermal storage
TPMS skeleton
gradient distribution
finite element method
coefficient of heat transfer
url http://www.zhilengxuebao.com/thesisDetails?columnId=78264160&Fpath=home&index=0
work_keys_str_mv AT mǎchāofù numericalsimulationstudyofcoagulationcharacteristicsofparaffincavitywithgradienttpmsframework
AT chénbǎomíng numericalsimulationstudyofcoagulationcharacteristicsofparaffincavitywithgradienttpmsframework
AT jiànyǔ numericalsimulationstudyofcoagulationcharacteristicsofparaffincavitywithgradienttpmsframework
AT zhòngchónglóng numericalsimulationstudyofcoagulationcharacteristicsofparaffincavitywithgradienttpmsframework
AT lǐhóngchén numericalsimulationstudyofcoagulationcharacteristicsofparaffincavitywithgradienttpmsframework