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Yunqing Fan

Researcher at Mitsubishi Electric

Publications -  14
Citations -  654

Yunqing Fan is an academic researcher from Mitsubishi Electric. The author has contributed to research in topics: Energy recovery ventilation & Energy conservation. The author has an hindex of 7, co-authored 13 publications receiving 472 citations. Previous affiliations of Yunqing Fan include Kyushu University & Chongqing University.

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A review of the performance of different ventilation and airflow distribution systems in buildings

TL;DR: In this article, the authors reviewed the scientific literature on airflow distribution systems and ventilation effectiveness to identify and assess the most suitable room air distribution methods for various spaces, and showed that the assessment of ventilation effectiveness or efficiency should be determined according to each task of the ventilation system, such as removing heat, removal of pollutant, supply fresh air to the breathing zone or protecting the occupant from cross infection.
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Field-based study on the energy-saving effects of CO2 demand controlled ventilation in an office with application of Energy recovery ventilators

TL;DR: In this article, the authors investigated the thermal performance of ceiling-based HVAC systems, which typically consist of package air-conditioners and an energy recovery ventilator (ERV), and test the energy-saving efficiency of CO 2 -demand controlled ventilation systems with integrated ERV systems.
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Energy consumption analysis intended for real office space with energy recovery ventilator by integrating BES and CFD approaches

TL;DR: In this article, the authors analyzed the energy conservation performance of real office space with an energy recovery ventilator (ERV) and investigated the effect of the arrangement of air supply and exhaust openings.
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Thermal, mechanical and chemical material removal mechanism of carbon fiber reinforced polymers in electrical discharge machining

TL;DR: In this article, a high-speed camera with a laser bandpass filter added in front of the camera lens to filter out the plasma was used to directly observe the discharge process of CFRPs without the interfere of the plasma.
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Integrated building energy computational fluid dynamics simulation for estimating the energy-saving effect of energy recovery ventilator with CO2 demand-controlled ventilation system in office space:

TL;DR: In this paper, a building energy simulation (BES)-computational fluid dynamics (CFD)-integrated simulation is used to provide accurate and informative prediction of the thermal and air-quality performance in buildings, especially in the design stage.