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    Home»Solar»New system design for PVT systems coupled with air-to-water reversible heat pump – pv magazine International
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    New system design for PVT systems coupled with air-to-water reversible heat pump – pv magazine International

    By July 13, 2023No Comments3 Mins Read
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    Spanish scientists have proposed a brand new technique of mixing photovoltaic-thermal panels with a reversible air-to-water warmth pump in industrial buildings. The system is meant to supply area heating, cooling, home scorching water, and electrical energy.

    July 13, 2023 Emiliano Bellini

    Researchers on the College of Zaragoza in Spain have proposed a brand new design for power methods based mostly on photovoltaic-thermal (PVT) panels built-in with an air-to-water warmth pump by way of thermal storage tank.

    The system is meant to supply area heating, cooling, home scorching water (DHW), and electrical energy in industrial buildings.

    “The area heating / cooling distribution circuit makes use of fan coils as terminal models, which permits a minimal provide temperature of 35 C in winter and seven C in summer season,” they mentioned, describing the operational mode of the system . “To extend using low-temperature warmth, DHW is provided at 50 C as an alternative of 60 C, making common warmth remedies at 60 C to forestall legionellosis in accordance with sanitary laws.”

    The scientists examined the proposed system design for five months in an actual system deployed in an industrial facility owned by the Spanish PVT Specialist Endef in Zaragoza. The hybrid pilot plant consists of eight PVT modules with a mixed capability of two.6 kW masking a floor of 13.6 m.2two water storage tanks with a capability of 350 l for DHW and 263 l for area heating and cooling, in addition to a Yutaki S6 reversible air-to-water warmth pump offered by the Japanese producer Hitachi.

    The warmth pump has a nominal capability of 16 kW in heating mode and 10.5 kW in cooling mode. Its nominal coefficient of efficiency (COP) in heating mode is 4.57 and in cooling mode is 3.31. The DHW water tank makes use of two inner warmth exchangers, one for the photo voltaic circuit and the opposite for the warmth pump. The system can present from 20 C to 60 C in heating mode, from 30 C to 60 C for DHW manufacturing, and from 5 C to 22 C in cooling mode.

    The analysis crew used temperature sensors and stream meters to observe the thermal efficiency of the system and a DC/AC inverter to investigate that of the PV energy era unit. “Actual time knowledge monitored on the pilot plant are built-in into the mannequin. The transient mannequin is run with a 5-minute time step, and the outcomes proven on this work are averaged hourly to clean the outcomes, as a result of in any other case the fluctuations would obscure the graphical interpretation and comparability of the outcomes,” it additional defined. “The weekly power outcomes are additionally calculated, by integration, to check the weekly ones efficiency indicator.”

    By means of this evaluation, the teachers discovered that the system is the potential “complete self-sufficiency” to fulfill the constructing’s power wants. In addition they discovered that the pilot plant confirmed little deviation from the simulated setting. “The outcomes present that the warmth pump COP estimated by the transient mannequin is just like that obtained within the pilot plant, with a mean error of -10%,” they additional defined.

    The proposed system is introduced within the paper “Experimental validation of a photo voltaic system based mostly on hybrid photovoltaic-thermal collectors and a reversible warmth pump for power provision in non-residential buildings,” printed in Renewable and Sustainable Vitality Evaluations.

    This content material is protected by copyright and will not be reused. If you wish to cooperate with us and need to reuse a few of our content material, please contact: editors@pv-magazine.com.

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