Beta
219641

FINITE ELEMENT SIMULATIONS FOR SAND AND LIMESTONE POWDER OF DIFFERENT THERMAL CONDUCTIVITY

Article

Last updated: 25 Dec 2024

Subjects

-

Tags

Civil Engineering.

Abstract

Thermal physical phenomenon of soils and rocks constitutes an important property for the planning of heat foundations and borehole heat exchange systems. To determine soil thermal properties considerable effort has gone into developing techniques in recent years. This paper attempts to simulate the effectiveness of using a soil with higher thermal conductivity compared to normal sand using GeoStudio 2018 Finite Element 2D program. GeoStudio was used to verify a physical laboratory model which was built to investigate the variation in soil temperature related to the proposed ambient temperature conditions [1]. In this research, two different backfilling soils were adopted to carry out this work. The results show excellent agreements between the laboratory model and numerical results. Ground temperature of sand backfill is affected by ambient temperature and reaches a constant value at depths below 1.0 m from ground surface. Limestone powder of higher thermal conductivity reaches a constant value at depths below 0.75 m from ground surface. The results show that using GeoStudio 2018 program to simulate the variation in soil temperature with depth for different types of soil is feasible.

DOI

10.21608/jaet.2021.70622.1107

Keywords

GeoStudio 2018, Numerical analysis, thermal conductivity, Sand soil, and heat capacity

Authors

First Name

Beshoy

Last Name

Hakeem

MiddleName

Maher

Affiliation

Lecturer, Civil Engineering Department, Higher Institute of Engineering and Technology, El-Minia, Egypt

Email

civileng_beshoy@yahoo.com

City

Qena. Egypt.

Orcid

0000-0003-4286-3202

First Name

Fayek

Last Name

Hassona

MiddleName

Abdel Kader

Affiliation

Professor, Civil Engineering Department, Faculty of Engineering - Minya University, Egypt.

Email

fhassona@gmail.com

City

-

Orcid

-

Volume

42

Article Issue

1

Related Issue

29280

Issue Date

2022-01-01

Receive Date

2021-04-04

Publish Date

2022-01-01

Page Start

205

Page End

214

Print ISSN

2682-2091

Online ISSN

2812-5487

Link

https://jaet.journals.ekb.eg/article_219641.html

Detail API

https://jaet.journals.ekb.eg/service?article_code=219641

Order

17

Type

Original Article

Type Code

1,142

Publication Type

Journal

Publication Title

Journal of Advanced Engineering Trends

Publication Link

https://jaet.journals.ekb.eg/

MainTitle

FINITE ELEMENT SIMULATIONS FOR SAND AND LIMESTONE POWDER OF DIFFERENT THERMAL CONDUCTIVITY

Details

Type

Article

Created At

22 Jan 2023