期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Thermal Loss Analysis of a Flat Plate Solar Collector Using Numerical Simulation
1
作者 Timur Merembayev Yedilkhan Amirgaliyev +1 位作者 Murat Kunelbayev Didar Yedilkhan 《Computers, Materials & Continua》 SCIE EI 2022年第12期4627-4640,共14页
In this paper,we studied theoretically and numerically heated losses of a flat solar collector to model the solar water heating system for the Kazakhstan climate condition.For different climatic zones with a growing c... In this paper,we studied theoretically and numerically heated losses of a flat solar collector to model the solar water heating system for the Kazakhstan climate condition.For different climatic zones with a growing cost for energy or lack of central heating systems,promising is to find ways to improve the energy efficiency of the solar system.The mathematical model(based on ordinary differential equation)simulated the solar system work process under different conditions.To bridge the modeling and real values results,we studied the important physical parameters such as loss coefficient,Nu,Ra,and Pr values.They impacted the efficiency of flat solar collectors and heat losses of the system.The developed mathematical models,the design and composition of the software and hardware complex,and automated control and monitoring systems allow solar hot water heating systems to increase the energy efficiency of life support systems and heat supply of buildings by reducing energy consumption for heat supply.The simulation result showed that during the daytime,the temperature of water in the collector is 70°C;the storage of heated water since heated water is cooled at night.We defined that a work period of the system can be extended with high efficiency(April-October)for Almaty region. 展开更多
关键词 Solar heating system heat loss coefficient dynamic simulation flat plate collector
下载PDF
Heat Transfer Analysis of an Elevated Linear Absorber with Trapezoidal Cavity in the Linear Fresnel Reflector Solar Concentrator System 被引量:1
2
作者 R.Manikumar R.Palanichamy A.Valan Arasu 《Journal of Thermal Science》 SCIE EI CAS CSCD 2015年第1期90-98,共9页
This paper describes various aspects of the design methodology and heat transfer calculations for an elevated linear absorber. The absorber is a part of the linear Fresnel reflector solar concentrator system, in which... This paper describes various aspects of the design methodology and heat transfer calculations for an elevated linear absorber. The absorber is a part of the linear Fresnel reflector solar concentrator system, in which hot fluid is generated. The design of the absorber is an inverted trapezoidal air cavity with a glass cover enclosing a multi tube absorber. In a trapezoidal cavity absorber, a set of linear multi tube absorber with plate(named as "plane surface") and without plate(named as "tube surface") underneath are considered. An analytical simulation is done for different gaps between the tubes and for different depths of the cavity. A better design of the absorber is found out to maximize the heat transfer rate supplied to the absorber tube fluid. Also, the experimentally obtained overall heat loss coefficients are compared with the analytical values for the considered arrangements of absorber set up and results are discussed in details. 展开更多
关键词 LFRSC trapezoidal cavity absorber overall heat loss coefficient concentrated radiation
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部