Exergy-economic analysis of a solar-geothermal combined cooling
In this study, energy, exergy and exergy-economic analyses of a novel system that simultaneously generates cooling effect, heat, electricity, hot water and desalinated water for a
In this study, energy, exergy and exergy-economic analyses of a novel system that simultaneously generates cooling effect, heat, electricity, hot water and desalinated water for a
This article presents a comprehensive parametric study comparing solar adsorption cooling systems comparing Evacuated Tube Collectors (ETCs) and Parabolic Trough
For a comprehensive evaluation, solar absorption cooling (SABC) and vapor compression cooling systems are selected as reference systems. Energy, environment, and
For a comprehensive evaluation, solar absorption cooling (SABC) and vapor compression cooling systems are selected as
The development of energy-efficient cooling systems is a major challenge for Net-Zero Energy Buildings (NZEBs) in tropical climates. This study proposes a solar-assisted two
Researchers developed a passive, solar-rechargeable cooling system using salt and water, offering 15+ hours of cold without any grid power.
Evaluation modelling of a combined heat, power and cooling system with zero CO2 emissions: Solar photovoltaic and thermal energy, biomass Stirling engine and adsorption
An innovative global strategy to address climate change concerns is the concept of net-zero energy buildings (NZEBs). Designing and choosing a cooling system as the
The system under study comprises the steam Rankine cycle (SRC) and the absorption refrigeration cooling (ARC) hybrid processes, both utilizing solar energy to generate
Designing efective solar cooling systems in Sunbelt regions requires a comprehensive understanding of the climatic conditions to use solar resources for eficient and
We would like to submit the enclosed manuscript entitled " A novel zero emission combined power and cooling system for concentrating solar power: Thermodynamic and
We propose to develop a fully integrated, zero carbon cooling and energy efficient system for cold chain logistics, combining: - A DC motor-driven refrigeration unit powered by
• A multi-criteria method ranks the cooling systems based on cost, CO 2 emissions, and noise. • The solar cooling system with zero CO 2 emissions achieves the best overall
The building sector accounts for more than 40% of the global energy consumption. This consumption may be lowered by reducing building energy requirements and using
We propose to develop a fully integrated, zero carbon cooling and energy efficient system for cold chain logistics, combining: This system aims to maintain continuous cold chain
The building sector accounts for more than 40% of the global energy consumption. This consumption may be lowered by reducing
Experimental analysis and modelling of a photovoltaic powered thermoelectric solid-state cooling system for transition towards net zero energy buildings under different solar
PDF version includes complete article with source references. Suitable for printing and offline reading.
The solar thermal refrigeration cycle comprises two subsystems: the solar subsystem and the cooling subsystem. The former consists of a solar collector array, an insulated water storage tank, a controller, and pumps. The cooling subsystem mainly comprises an adsorption/absorption chiller, a cooling tower, pumps, and the cooling space.
, refrigeration, among others, that can be sup-plied by chiller systems. Solar chillers are a subset of solar cooling technologies that utilize solar energy to drive the cooling process, ignificantly reducing the reliance on con-ventional electricity sources. These systems are particularly relevant for commercial applications, where the deman
d dairy farming practice, as well as the solar milk cooling technology.The piloted technology i a solar-powered ice storage ilk cooling system developed by Selfchill. It uses R600a as refrigerant. The system harnesses solar P power to produce ice on evaporator plates, which is used to cool water. The
A novel combined power and cooling system is proposed to solve the problem of high cost and low efficiency of centralized solar power generation system. Absorption refrigeration cycle is selected to absorb the waste heat of the organic flash cycle, thereby eliminating throttling losses in the organic flash cycle and generating cooling.