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Featured researches published by Dong Jiankai.


Building Services Engineering Research and Technology | 2012

Improving reverse cycle defrosting performance of air source heat pumps using thermal storage based refrigerant sub-cooling energy

Dong Jiankai; Jiang Yiqiang; Deng Shiming; Yao Yang; Qu Minglu

When an air source heat pump (ASHP) unit is used for space heating at a low ambient temperature in winter, frost may be formed on its outdoor coil surface. Over time, frost accumulation on coil surface may become sufficient to restrict air passage through the coil and increase the heat transfer resistance between ambient air and coil surface, leading to performance degradation for the outdoor coil, or even the shutdown of the ASHP unit. Therefore, periodic defrosting is necessary. Currently, the most widely used standard defrosting method for an ASHP unit is reverse cycle defrosting. During a standard reverse cycle defrosting (SRCD) operation, the indoor coil in an ASHP unit actually acts as an evaporator. Because the indoor fan is usually turned off during defrosting, there is an insignificant amount of energy from indoor coil, leading to a number of associated operational problems such as a longer defrosting duration and the risk of having a lower air temperature inside a heated space during defrosting, etc. To solve the fundamental problem of insufficient heat available during defrosting while ensuring the efficient and safe system operation, a novel reverse cycle defrosting (NRCD) method which is thermal energy storage-based using sub-cooling energy of refrigerant for ASHPs has been developed. Comparative experiments using both the SRCD method and the NRCD method were carried out on an experimental ASHP unit with a nominal 2.5 kW heating capacity. Experimental results clearly suggested that when using the NRCD method, the discharge and suction pressures were increased by 0.56 and 0.12 MPa, respectively. Furthermore, the defrosting duration and heating-resumption duration were shortened by 30.8% and 25.0%, respectively, and the defrosting energy consumption was reduced by 13.9%, compared to those when using the SRCD method. Practical application: ASHPs have been widely used worldwide due to their significant energy-saving potentials. However, frost can be formed on the outdoor coil surface when an ASHP unit operates for space heating. Frost accumulation on coil surface reduces the coil’s efficiency, or causes even the shutdown of the ASHP unit. Reverse cycle defrosting is the most widely used standard defrosting method. This paper presents the reverse cycle defrosting performance for an ASHP unit with a PCM-HE acting as both a sub-cooler during heating operation and a heat source during defrosting operation, which could help to ensure the safe operation and achieve a higher defrosting efficiency of the ASHP unit.


international conference on computer distributed control and intelligent environmental monitoring | 2011

An Experimental Study on Thermal Energy Storage Based Reverse Cycle Defrosting Method Using Sub-cooling Energy of Refrigerant for Air Source Heat Pump: Characteristics of Thermal Energy Storage Operation

Dong Jiankai; Qu Minglu; Jiang Yiqiang; Yao Yang; Deng Shiming; Wang Honglei

the introduction of the system of thermal energy storage (TES) based reverse cycle defrosting method using sub-cooling energy of refrigerant for air Source heat pump(ASHP) is given firstly. And then the characteristic of TES using sub-cooling energy of refrigerant in heating is experimentally researched. The results show that storing sub-cooling energy of refrigerant in the PCM can not only improve the system COP in heating, but also provide energy for defrosting. Two modes of TES are inferred and it proves that improved system performances and indoor thermal comfort can be resulted in mode of starting TES process when heating for one hour.


Applied Energy | 2014

A novel defrosting method using heat energy dissipated by the compressor of an air source heat pump

Zhang Long; Dong Jiankai; Jiang Yiqiang; Yao Yang


Archive | 2013

Air source heat pump continuous heat supply defrosting system

Jiang Yiqiang; Dong Jiankai; Yao Yang


Archive | 2013

Energy-saving defrosting air source heat pump system

Dong Jiankai; Jiang Yiqiang; Zhang Long; Tian Hao


Building Energy & Environment | 2010

The Experimental Study of Several Special Compound Organic Phase Change Materials' Thermal Properties

Dong Jiankai


Archive | 2013

Device for recycling shower bath waste water and waste heat

Dong Jiankai; Lei Bo; Jiang Yiqiang


Archive | 2017

Convection, radiation and coupled heat transfer based air-source heat pump direct-expansion type water-free air-conditioning system

Cheng Yuanda; Huo Yulu; Dong Jiankai; Chen Zhihua; Jia Jie; Lei Yonggang


Archive | 2017

Wall plate type convection radiation cold and heat supply device

Dong Jiankai; Zhang Long; Jiang Yiqiang; Chen Zhihua


Taiyangneng Xuebao | 2016

異なるによる多段式空気清浄機の除霜性能への影響【JST・京大機械翻訳】

Dong Jiankai; Zhang Long; Jiang Yiqiang; Tian Hao; Tian Yu; Hu Wenju

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Jiang Yiqiang

Harbin Institute of Technology

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Yao Yang

Harbin Institute of Technology

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Zhang Long

Harbin Institute of Technology

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Deng Shiming

Hong Kong Polytechnic University

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Qu Minglu

Hong Kong Polytechnic University

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Hu Wenju

Harbin Institute of Technology

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Wang Honglei

Harbin Institute of Technology

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