Solar wheel dehumidification system


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Solar assisted CaCl2 desiccant wheel rotor system for

In the present work, experiments have been performed to examine the cooling and dehumidification process in the summer season for human comfort and industrial application with the help of calcium chloride (CaCl2) based desiccant material solid desiccant wheel integrated with solar heating arrangements. In this study experimental findings are also

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Optimization and evaluation of a solar energy, heat pump

Desiccant wheel (DW) dehumidification system could adsorb water vapor of air without cooling. The main problem is that the energy consumed to regenerate DW due to a high regeneration air temperature requirement to remove the adsorbed water. When solar energy is applied to heating the regeneration air of DW, DW dehumidification systems may have good performance in both

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Low dew-point desiccant wheel system

Low dew-point desiccant wheel systems are summarized and discussed in detail. Single-stage and two-stage low dew-point desiccant wheel systems are examined. Cold and heat sources are key factors affecting energy efficiency. Optimization measures to

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Experimental investigation of desiccant dehumidification with

Li et al. investigated biomass gasification-based cogeneration systems integrated with desiccant-coated heat exchanger dehumidification, covering the cogeneration system inclusive of sensible heat storage and internal heat recovery (SC-1), the cogeneration system inclusive of sensible heat storage (SC-2), and the cogeneration system exclusive of

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Experimentally validated model for atmospheric water

Most of the required energy for the regeneration process of dehumidification wheel can be met by thermal gain of the solar hybrid PVT array during the day. The outlet processed air (dehumidified air stream) incurs a smaller latent load on a proposed small-scale air-conditioning system which can help to bring the humidity level inside the cabin within human

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Solar driven atmospheric water harvesting system with

Request PDF | Solar driven atmospheric water harvesting system with integration of desiccant wheel and desiccant bed: An experimental investigation | Solar-driven atmospheric water harvesting

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Solar-Powered Dehumidification System with Double Sorbent

It is investigated how solar energy is used to generate power and the effects of airflow rate and

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Thermodynamic performance assessment of a solar-driven

A typical solar dehumidification air conditioning system uses a desiccant wheel to dehumidify the fresh air, then uses an evaporative cooler to cool the dehumidified air, and finally uses a solar collector to regenerate the desiccant wheel to ensure that the cooling and dehumidification process can operate continuously. The heat for

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Thermodynamic performance assessment of a solar-driven

A typical solar dehumidification air conditioning system uses a desiccant

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Solar assisted CaCl2 desiccant wheel rotor system for

In the present work, experiments have been performed to examine the cooling and dehumidification process in the summer season for human comfort and industrial application with the help of calcium chloride (CaCl 2) based desiccant material solid desiccant wheel integrated with solar heating arrangements.

Customer Service

Low dew-point desiccant wheel system

Low dew-point desiccant wheel systems are summarized and discussed in detail. Single-stage and two-stage low dew-point desiccant wheel systems are examined. Cold and heat sources are key factors affecting energy efficiency. Optimization measures to improve dehumidification capacity are summarized.

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Assessment of Solar Dehumidification Systems in a Hot Climate

Solar thermal-powered desiccant dehumidification systems are attracting attention for cooling load-dominated climates. However, their performance varies substantially from place to place depending on climatic conditions, which therefore warrants a tailored design and specification at each geographical location.

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Comparative Analysis of Different Solar Assisted Desiccant Cooling Systems

In this paper, a comparative analysis of the operation of three different models of solar cooling using desiccant wheel with solid material filling was performed. The simulation of the analyzed models was conducted in TRNSYS for conditions describing the humid air parameters of the existing system in operating mode.

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Progressive Development and Challenges Faced by Solar

In this paper, the basic principles and recent research developments related to rotary desiccant-based cooling systems are recalled and their applications and importance are summarized.

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Experimental investigation on the dehumidification performance

Through an experimental study conducted, performance evaluation of a parabolic trough solar collector assisted rotary desiccant dehumidification system has been performed based on the parameters including air flow rate, regeneration air temperature, inlet-outlet air temperature, and humidity ratios. Findings indicated that the

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Solar-Powered Dehumidification System with Double Sorbent Wheel

It is investigated how solar energy is used to generate power and the effects of airflow rate and increases moisture removal rate (double sorbent wheel). The study''s anticipated findings will point to energy savings. To determine the eliminated moisture as a function of air flow rate at solar noon, an empirical equation is utilized

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Comparative Analysis of Different Solar Assisted Desiccant Cooling Systems

2.3 Model 3 – Model of Solar Cooling with Multistage Dehumidification. Model 3 is a hybrid solar AC system that conceptually differs from Models 1 and 2 in terms of the applied cooling technique. In the previous models, humid air is cooled by conventional water coolers and dehumidified in a rotating wheel until the required state parameters are achieved at the exit of

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Review on heat pump coupled desiccant wheel dehumidification

Hybrid DW dehumidification and air conditioning systems have been widely studied for several decades, and are classified into evaporative cooling and DW systems [13, 14], solar energy regenerative DW systems [[15], [16], [17]], and heat pump DW systems [[18], [19], [20]] according to the equipment or systems combined with DW.Evaporative cooling is a low

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Experimental investigation on the dehumidification performance

As a green solution to this prevalent problem, a solar assisted rotary desiccant dehumidification system has been proposed for air dehumidification. Through an experimental study conducted, performance evaluation of a parabolic trough solar collector assisted rotary desiccant dehumidification system has been performed based on the parameters including air

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Study on Heat Recovery Air Conditioning System with Adsorption

The typical heat recovery air conditioning system with adsorption dehumidification by solar-powered compared with the conventional adsorption desiccant air conditioning system, the following energy-saving optimization: (1) the plate-type heat exchanger is added in front of the desiccant wheel to precool air.

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Solar assisted CaCl 2 desiccant wheel rotor system for

Download Citation | Solar assisted CaCl 2 desiccant wheel rotor system for simultaneous cooling and dehumidification operation: experimental and modelling approach | High temperature and humidity

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Simulation Study on Performance of Solar-Powered Desiccant Wheel

The conventional vapor compression refrigeration systems cannot effectively control the indoor humid and thermal environment. Therefore, this article proposes a solar-powered desiccant wheel and ground-source heat pump (SDW-GSHP) air conditioning system. The energy consumption of the system is mainly from sustainable sources of solar

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Performance analysis of heating and humidification system with solar

Proposed CaCl2-based desiccant wheel display wheel effectiveness in the range of 0.67–0.95 and 0.51–0.90 for regeneration and process section, respectively, which is very effective to maintain...

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