English Version is Trial!

کاربران فارسی زبان لطفا به بخش فارسی مراجعه نمایند.

سیویلیکا به زبان فارسی

Advanced Search

Title
Author
(Last name)
Abstract
Keywords

About CIVILICA®

CIVILICA® provides professional papers published in national and international conferences.

This site is registered for BoomSazeh Construction Technology Development Co.

 

Contact Us:

Tel: 021-88008044

Email: Info [at]  CIVILICA [dot] com

 

 
Home Page E-mail us to: Info @ CIVILICA . com Tel: +98-21-88008044

ISSN 1735-5540   

 

Quick Search in Title, Abstract, and Keywords of Papers

Showing Abstract of Thermodynamic Analysis of a Direct Expansion Solar Assisted Heat Pump Water Heater

 
Links

[ Bug Reporting | Back | See this Article in Persian CIVILICA ]

Paper Details

[ Downloads: 2 | Abstract Viewed: 583 | Pages: 15 ]

Title

Thermodynamic Analysis of a Direct Expansion Solar Assisted Heat Pump Water Heater

Topic: Published Year: 1390
Presentation: شفاهي
Published in:

[ 2nd Conference on Energy Management & Conservation ]

Original Language: English Full Text Size: Not Available

 

Abstract of the Article

 

Note: English CIVILICA is in its Trial Period so Full Texts can not be provided! Persian users can download it here

Download This article in PDF format Thermodynamic Analysis of a Direct Expansion Solar Assisted Heat Pump Water Heater

 

Authors:

[ Misagh Moradali ] - Islamic Azad University, South Tehran Branch, Tehran, Iran
[ Farzad Jafarkazemi ] - Islamic Azad University, South Tehran Branch, Tehran, Iran

 

Abstract:

In this article the thermodynamic performance of a direct expansion solar assisted heat pump (DX-SAHP), which is used to heat domestic water from 20˚C to 45˚C, is theoretically investigated. The system includes a3m 2 single-cover flat plate solar collector, 150 liter water tank and 70 meters tube immersed in the water tank as condenser. Effect of various parameters such as received irradiance on the collector surface, compressor speed and the ambient temperature on the coefficient ofperformance (COP) is calculated. Results show that obtained COP is considerably more than that of a conventional heat pump water heaterwhen radiation on collector is high and increasing collector area and ambient temperature and reducing compressor speed enhance COP.For instance, at 450 W/m2 received irradiance on collector and 15˚C ambient temperature, the calculated COP is 6.37.

 

Keywords:

 

CIVILICA® - © BoomSazeh Construction Technology Development Co.

SAVAFA