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Ying Hao

Publications -  6
Citations -  189

Ying Hao is an academic researcher. The author has contributed to research in topics: Heat pump & Transcritical cycle. The author has an hindex of 5, co-authored 5 publications receiving 75 citations.

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Life cycle energy, emissions and cost evaluation of CO2 air source heat pump system to replace traditional heating methods for residential heating in China: System configurations

TL;DR: In this paper, a new configuration of CO2 heat pump system integrated with vapor injection and dedicated mechanical subcooling (VIDMS) is proposed, and compared with five configurations of CO 2 heat pump systems and three traditional heating methods.
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Energetic, exergetic and exergoeconomic assessment of transcritical CO2 reversible system combined with dedicated mechanical subcooling (DMS) for residential heating and cooling

TL;DR: In this article, a transcritical CO2 reversible heat pump-air conditioning system combined with dedicated mechanical subcooling (DMS) is proposed as an annual heating and cooling solution.
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Assessment of heat pump with carbon dioxide/low-global warming potential working fluid mixture for drying process: Energy and emissions saving potential

TL;DR: In this paper, a heat pump system for drying process by employing carbon dioxide/low-global warming potential working fluid mixture is proposed and compared with traditional boiler drying systems, which is developed to assess the energy consumption, gaseous and particulate matter emissions saving potential by using the new heat pump drying solutions.
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Heating and cooling of residential annual application using DMS transcritical CO2 reversible system and traditional solutions: An environment and economic feasibility analysis

TL;DR: In this article, a dedicated mechanical sub-cooling (DMS) transcritical CO2 system for residential space heating and cooling is compared with traditional heating/cooling solutions.
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Dual-pressure condensation high temperature heat pump system for waste heat recovery: Energetic and exergetic assessment

TL;DR: In this article, the performance of dual-pressure condensation HTHP systems is assessed and compared with that of traditional single-stage, two-stage and cascade HTHPs in detail.