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Performance of a solar-assisted thermodynamic heat pump for water heating

机译:太阳能热水热泵的性能

摘要

Malta’s domestic sector predominantly consume electric energy for the provision ofudcomfort and operation of services within households. About 30% of the total national consumption is used by households, with the potable hot water production accounting for 24% of that energy. Nowadays, the major part of households heat water using an electric boiler, with an overall efficiency of 0.75. The EU Directive on Energy Efficiency 012/27/EU and the Renewable Energy Directive 2009/28/EU, as well as the Energy Performance of Buildings Directive 2010/32/EC, have all identified energy use in buildings as the primary area where energy saving may have technically-sound and cost effective results. This paper focuses on the use of a thermodynamic heat pump for the production of potable hot water, which would reduce the electrical consumption in households. The Solar-Assisted Thermodynamic Heat Pump (SAHP) produces hot water using the primary energy source of solar energy and ambient air. Such a system is new to Malta and no local testing has been carried out to gauge its performance under local conditions. In this paper the potential application of a unitary type direct-expansion SAHP (DX-SAHP) system was examined. Testing was carried out during the most critical months between November andudJanuary.
机译:马耳他的家庭部门主要消耗电能,以便为家庭提供舒适感和服务。家庭使用的水量约占全国消费总量的30%,其中热水的生产量占家庭总能耗的24%。如今,大部分家庭使用电锅炉加热水,总效率为0.75。欧盟能源效率指令012/27 / EU和可再生能源指令2009/28 / EU,以及建筑物的能源性能指令2010/32 / EC,都将建筑物中的能源使用确定为主要能源领域节约可能在技术上和成本效益方面都有所作为。本文着重于使用热力学热泵生产饮用水,这将减少家庭的用电量。太阳能辅助热力热泵(SAHP)使用太阳能和周围空气的主要能源来产生热水。这种系统对马耳他来说是新系统,尚未进行本地测试以评估其在本地条件下的性能。本文研究了整体式直接扩展SAHP(DX-SAHP)系统的潜在应用。测试是在11月至1月之间的最关键月份进行的。

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