In this paper, a seasonal performance analysis of a hybrid ejector cooling system is carried-out, by considering a multi-ejector pack as expansion device. A 20 kW ejector-based chiller was sized to obtain the optimal tradeoff between performance and investment costs. The seasonal performance of the proposed solution was then evaluated through a dynamic simulation able to obtain the performance of the designed chiller with variable ambient temperatures for three different reference climates. The optimized multi-ejector system required three or four ejectors for any reference climate and was able to enhance the system performance at partial load, with a significant increase (up to 107%) of the seasonal energy efficiency ratio. The proposed sy...
District cooling systems (DCS) are particularly important in the Middle East due to higher overall t...
Solar heating and cooling (SHC) systems are currently under rapid development and deployment due to ...
The feasibility of solar-powered multi-effect LiBr-H2O absorption chillers is investigated under dif...
In this paper, a seasonal performance analysis of a hybrid ejector cooling system is carried-out, by...
In this paper, a seasonal performance analysis of a hybrid ejector cooling system is carried-out, by...
In this paper, a seasonal performance analysis of a hybrid ejector cooling system is carried-out, by...
In year-round hot climatic conditions, conventional air conditioning systems consume significant amo...
The fast growth of the world population leads to an increase of the global energy demand and carbon ...
In this paper, a detailed simulation model of a solar-powered triple-effect LiBr–H2O absorption chil...
Multiple-chillers systems represent viable solutions for medium/large-scale air conditioning applica...
Funding Information: This research has been supported by National Natural Science Foundation of Chin...
Abstract Solar heating and cooling (SHC) systems are currently under rapid development and deploymen...
Multiple-Chillers systems represent viable solutions for medium/large-scale air conditioning applica...
Multiple-Chillers systems represent viable solutions for medium/large-scale air conditioning applica...
Trigeneration plants can use different types of chillers in the same plant, typically single effect ...
District cooling systems (DCS) are particularly important in the Middle East due to higher overall t...
Solar heating and cooling (SHC) systems are currently under rapid development and deployment due to ...
The feasibility of solar-powered multi-effect LiBr-H2O absorption chillers is investigated under dif...
In this paper, a seasonal performance analysis of a hybrid ejector cooling system is carried-out, by...
In this paper, a seasonal performance analysis of a hybrid ejector cooling system is carried-out, by...
In this paper, a seasonal performance analysis of a hybrid ejector cooling system is carried-out, by...
In year-round hot climatic conditions, conventional air conditioning systems consume significant amo...
The fast growth of the world population leads to an increase of the global energy demand and carbon ...
In this paper, a detailed simulation model of a solar-powered triple-effect LiBr–H2O absorption chil...
Multiple-chillers systems represent viable solutions for medium/large-scale air conditioning applica...
Funding Information: This research has been supported by National Natural Science Foundation of Chin...
Abstract Solar heating and cooling (SHC) systems are currently under rapid development and deploymen...
Multiple-Chillers systems represent viable solutions for medium/large-scale air conditioning applica...
Multiple-Chillers systems represent viable solutions for medium/large-scale air conditioning applica...
Trigeneration plants can use different types of chillers in the same plant, typically single effect ...
District cooling systems (DCS) are particularly important in the Middle East due to higher overall t...
Solar heating and cooling (SHC) systems are currently under rapid development and deployment due to ...
The feasibility of solar-powered multi-effect LiBr-H2O absorption chillers is investigated under dif...