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Design parameters and dynamic performance analysis of a high efficient solar-ground source cooling system using parabolic trough collector EI
期刊论文 | 2021 , 40 (3) , 253-282 | International Journal of Sustainable Energy
摘要&关键词 引用

摘要 :

This paper takes the independent-developed special parabolic trough collector for the air-conditioning and the double-effect absorption chiller to build a solar cooling system, and simultaneously utilizes the ground heat exchanger(so-called SGAC system) to replace the traditional cooling tower as the heat exhausted side(so-called SAC system) in summer. The simulation model of SGAC is established on TRNSYS. The simulation calculation is performed for the building cooling during the whole cooling season in Beijing. The research results indicate that SGAC has a good stability and high efficiency during the whole cooling season. The performance comparison of SGAC and SAC has been carried out. The economy of SGAC system should also be considered in the determination of the main design and operating parameters. © 2020 Informa UK Limited, trading as Taylor & Francis Group.

关键词 :

Absorption cooling Absorption cooling Air conditioning Air conditioning Cooling systems Cooling systems Solar collectors Solar collectors Thermoelectric equipment Thermoelectric equipment

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GB/T 7714 Huang, Jiabin , Bi, Yuehong , Qin, Lifeng et al. Design parameters and dynamic performance analysis of a high efficient solar-ground source cooling system using parabolic trough collector [J]. | International Journal of Sustainable Energy , 2021 , 40 (3) : 253-282 .
MLA Huang, Jiabin et al. "Design parameters and dynamic performance analysis of a high efficient solar-ground source cooling system using parabolic trough collector" . | International Journal of Sustainable Energy 40 . 3 (2021) : 253-282 .
APA Huang, Jiabin , Bi, Yuehong , Qin, Lifeng , Zang, Gaoli , Li, Hongyan . Design parameters and dynamic performance analysis of a high efficient solar-ground source cooling system using parabolic trough collector . | International Journal of Sustainable Energy , 2021 , 40 (3) , 253-282 .
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不同跟踪类型槽式集热器接收太阳辐射量的对比分析
期刊论文 | 2020 , 20 (02) , 31-34 | 制冷与空调
摘要&关键词 引用

摘要 :

基于晴空辐射模型和太阳光线入射角模型,从集热器集热面接收太阳辐射量的角度,对4种跟踪类型的槽式集热器进行理论计算。通过对比分析得知:采用双轴跟踪槽式集热器接收的太阳辐射量最多,其次为地轴跟踪槽式集热器。综合考虑跟踪系统的稳定性、复杂程度和成本问题,夏季供冷建议优先选用东西跟踪槽式集热器,冬季供热应选用南北跟踪槽式集热器,供冷和供热两用时,优先考虑选用东西跟踪槽式集热器。

关键词 :

辐射量 辐射量 槽式集热器 槽式集热器 太阳能 太阳能 跟踪类型 跟踪类型

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GB/T 7714 郭继萌 , 毕月虹 , 黄家斌 et al. 不同跟踪类型槽式集热器接收太阳辐射量的对比分析 [J]. | 制冷与空调 , 2020 , 20 (02) : 31-34 .
MLA 郭继萌 et al. "不同跟踪类型槽式集热器接收太阳辐射量的对比分析" . | 制冷与空调 20 . 02 (2020) : 31-34 .
APA 郭继萌 , 毕月虹 , 黄家斌 , 秦立峰 , 李洪艳 , 臧高立 . 不同跟踪类型槽式集热器接收太阳辐射量的对比分析 . | 制冷与空调 , 2020 , 20 (02) , 31-34 .
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Absorption solar-ground source heat pump: Life cycle environmental profile and comparisons SCIE
期刊论文 | 2020 , 87 | GEOTHERMICS
WoS核心集被引次数: 17
摘要&关键词 引用

摘要 :

The developing and utilizing of the renewable energy in the field of the building air conditioning is one of the effective environmental protection ways. This paper conducts the comprehensive environmental impact assessment of an absorption solar-ground source heat pump(ASGSHP) and a vapor compression ground source heat pump(VGSHP) using the life cycle assessment (LCA) method. The three stages in the whole life cycle, i.e., the manufacturing, transportation/installation and operation phase of these two systems which meet the cooling demand of an office building in Beijing are analyzed, respectively. The comprehensive environmental assessment indexes including the pollutant emissions, the global warming potential(GWP), the acidification potential (AP), the dust potential and the environmental impact load(EIL) in the whole life cycle of the two systems are calculated and compared with each other. The environmental impact load, GWP, AP and the dust potential of the ASGSHP can be reduced by 42.20 %, 38.66 %, 45.73 %, 42.71 % compared with the VGSHP, respectively. The research results can provide the basic data and theoretical guidance for the further development and utilization of the GSHP system.

关键词 :

Absorption solar-ground source heat pump (ASGSHP) Absorption solar-ground source heat pump (ASGSHP) Assessment index Assessment index Environmental impact Environmental impact Environmental protection Environmental protection Life cycle assessment(LCA) Life cycle assessment(LCA) Vapor compression ground source heat pump (VGSHP) Vapor compression ground source heat pump (VGSHP)

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GB/T 7714 Li, Hongyan , Bi, Yuehong , Qin, Lifeng et al. Absorption solar-ground source heat pump: Life cycle environmental profile and comparisons [J]. | GEOTHERMICS , 2020 , 87 .
MLA Li, Hongyan et al. "Absorption solar-ground source heat pump: Life cycle environmental profile and comparisons" . | GEOTHERMICS 87 (2020) .
APA Li, Hongyan , Bi, Yuehong , Qin, Lifeng , Zang, Gaoli . Absorption solar-ground source heat pump: Life cycle environmental profile and comparisons . | GEOTHERMICS , 2020 , 87 .
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Experimental investigation of ice melting system with open and closed ice-storage tanks combined internal and external ice melting processes SCIE
期刊论文 | 2019 , 194 , 12-20 | ENERGY AND BUILDINGS
WoS核心集被引次数: 17
摘要&关键词 引用

摘要 :

A new ice-storage experimental system with a closed (CIST) and an open (OIST) ice-storage tank has been exploited, with which the external ice melting processes are studied experimentally. Furthermore, the researches on combinations of external and internal ice melting have been carried out. The experiments indicate that the cold release rate of CIST is more stable than that of OIST under the same conditions, especially, the cold release rate of OIST decreases significantly at the later stage of the discharging process. The outlet temperature of the discharge water flowing from the bottom-to-top (Mode 1) is lower than that from the top-to-bottom of the ice-storage tank (Mode 2). With the relatively lower volumetric-flow rate, the outlet temperatures of the discharge water rise slowly, meanwhile, the cold release rate is also relatively lower. To solve the problem of "millennial ice" in the external system without an air-agitation device, two types of the combination of external and internal ice melting have been adopted, one is to adopt internal ice melting at first, and then external ice melting, the other is to adopt simultaneously the internal and external ice melting. The experiments show that the cumulative discharging capacity of the latter has been significantly improved. (C) 2019 Elsevier B.V. All rights reserved.

关键词 :

Closed ice-storage tank (CIST) Closed ice-storage tank (CIST) Combination of the internal and external ice melting Combination of the internal and external ice melting Millennial ice Millennial ice Open ice-storage tank (OIST) Open ice-storage tank (OIST) The cold release rate The cold release rate The cumulative discharging capacity The cumulative discharging capacity

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GB/T 7714 Bi, Yuehong , Yu, Meize , Wang, Hongyan et al. Experimental investigation of ice melting system with open and closed ice-storage tanks combined internal and external ice melting processes [J]. | ENERGY AND BUILDINGS , 2019 , 194 : 12-20 .
MLA Bi, Yuehong et al. "Experimental investigation of ice melting system with open and closed ice-storage tanks combined internal and external ice melting processes" . | ENERGY AND BUILDINGS 194 (2019) : 12-20 .
APA Bi, Yuehong , Yu, Meize , Wang, Hongyan , Huang, Jiabin , Lyu, Tianli . Experimental investigation of ice melting system with open and closed ice-storage tanks combined internal and external ice melting processes . | ENERGY AND BUILDINGS , 2019 , 194 , 12-20 .
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Parameter analysis of single U-tube GHE and dynamic simulation of underground temperature field round one year for GSHP SCIE
期刊论文 | 2019 , 174 , 138-147 | ENERGY
WoS核心集被引次数: 11
摘要&关键词 引用

摘要 :

Based on a quasi 3-D steady model inside and a 2-D unsteady model outside of the borehole of ground heat exchanger(GHE), the relationship between the heat exchange rate per depth of borehole and main parameters (center-to-center distance of two branch pipes, radius and depth of the borehole) has been analyzed. The rational values of those design parameters with considering the heat exchange rate per depth of borehole are obtained. The dynamic simulations of underground temperature field (UTF) of single-pipe and pipe-group of U-tube GHE have been conducted by ANSYS. The change rules of UTF are obtained when ground source heat pump(GSHP) has experienced a complete cooling and heating cycle during one year. The simulation results of a single-pipe show that the action radius of borehole is 1.9 m, i.e., it is reasonable that the borehole center-to-center distance is 3.8 m. The simulation results of pipe-group indicate that temperature of the soil center encircled by four boreholes at the beginning of heating in winter is higher than the initial temperature of soil, but it is in opposite for cooling in summer, which is beneficial to the efficient operation of GSHP. This work can provide guidance for the rational design and operation of GSHP. (C) 2019 Elsevier Ltd. All rights reserved.

关键词 :

A complete cooling and heating cycle A complete cooling and heating cycle Dynamic simulation Dynamic simulation Heat exchange rate per depth of borehole Heat exchange rate per depth of borehole Single U-Tube ground heat exchanger(GHE) Single U-Tube ground heat exchanger(GHE) Underground temperature field Underground temperature field

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GB/T 7714 Bi, Yuehong , Lyu, Tianli , Wang, Hongyan et al. Parameter analysis of single U-tube GHE and dynamic simulation of underground temperature field round one year for GSHP [J]. | ENERGY , 2019 , 174 : 138-147 .
MLA Bi, Yuehong et al. "Parameter analysis of single U-tube GHE and dynamic simulation of underground temperature field round one year for GSHP" . | ENERGY 174 (2019) : 138-147 .
APA Bi, Yuehong , Lyu, Tianli , Wang, Hongyan , Sun, Ruirui , Yu, Meize . Parameter analysis of single U-tube GHE and dynamic simulation of underground temperature field round one year for GSHP . | ENERGY , 2019 , 174 , 138-147 .
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Study on the characteristics of charging/discharging processes in three-phase energy storage coupling in solar air conditioning system SCIE
期刊论文 | 2019 , 204 | ENERGY AND BUILDINGS
WoS核心集被引次数: 22
摘要&关键词 引用

摘要 :

A new combination system of "three-phase energy storage" and solar absorption refrigeration has been developed in this paper. The operation process of LiBr-H2O three-phase energy storage system is described in detail. Thermodynamic analysis models of charging/discharging processes based on the absorption principle are established in order to understand the dynamic characteristics of three-phase energy storage and release processes. The dynamic simulations of charging/discharging processes are carried out by using MATLAB. The influences of operation parameters on the characteristic parameters of three-phase charging/discharging are analyzed, and the performance evaluation indexes of three-phase energy storage system are obtained. The simulation results showed that the lower initial concentration of LiBr-H2O solution, the smaller mass flow rate of LiBr-H2O sprayed on the heat exchanger in the energy storage tank and the higher heat conductance of the heat exchanger (KA) result in the higher energy storage efficiency and energy storage density. The smaller mass flow rates of LiBr-H2O and the cooling water can make the more stable discharging process with longer cooling time. The research results can provide theoretical guidance for further improving and optimizing the operation performance of three-phase energy storage system coupling in solar air conditioning. (C) 2019 Elsevier B.V. All rights reserved.

关键词 :

Charging/discharging processes Charging/discharging processes Energy storage density Energy storage density Lithium bromide-water (LiBr-H2O) Lithium bromide-water (LiBr-H2O) Solar air conditioning Solar air conditioning Thermodynamic analysis Thermodynamic analysis Three-phase energy storage Three-phase energy storage

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GB/T 7714 Bi, Yuehong , Zang, Gaoli , Qin, Lifeng et al. Study on the characteristics of charging/discharging processes in three-phase energy storage coupling in solar air conditioning system [J]. | ENERGY AND BUILDINGS , 2019 , 204 .
MLA Bi, Yuehong et al. "Study on the characteristics of charging/discharging processes in three-phase energy storage coupling in solar air conditioning system" . | ENERGY AND BUILDINGS 204 (2019) .
APA Bi, Yuehong , Zang, Gaoli , Qin, Lifeng , Li, Hongyan , Wang, Hongyan . Study on the characteristics of charging/discharging processes in three-phase energy storage coupling in solar air conditioning system . | ENERGY AND BUILDINGS , 2019 , 204 .
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我国五大气候区办公建筑夜间空调冷负荷比较 CQVIP
期刊论文 | 2018 , 18 (2) , 7-11 | 制冷与空调(北京)
摘要&关键词 引用

摘要 :

对全国五大气候区的16个主要城市办公建筑的白天及夜间空调冷负荷进行计算,得到夜间空调冷负荷占白天空调冷负荷比例随气候区的南移逐渐增大的变化规律。研究结果可为不同气候区太阳能空调系统中蓄能装置容量匹配提供设计依据,同时为制冷空调系统优化运行提供理论指导。

关键词 :

气候分区 气候分区 太阳能制冷技术 太阳能制冷技术 蓄能装置 蓄能装置 夜间冷负荷 夜间冷负荷 空调 空调

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GB/T 7714 王永生 , 毕月虹 , 陈杰 et al. 我国五大气候区办公建筑夜间空调冷负荷比较 [J]. | 制冷与空调(北京) , 2018 , 18 (2) : 7-11 .
MLA 王永生 et al. "我国五大气候区办公建筑夜间空调冷负荷比较" . | 制冷与空调(北京) 18 . 2 (2018) : 7-11 .
APA 王永生 , 毕月虹 , 陈杰 , 苗振 , 郭继萌 . 我国五大气候区办公建筑夜间空调冷负荷比较 . | 制冷与空调(北京) , 2018 , 18 (2) , 7-11 .
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我国五大气候区办公建筑夜间空调冷负荷比较
期刊论文 | 2018 , 18 (02) , 7-11 | 制冷与空调
摘要&关键词 引用

摘要 :

对全国五大气候区的16个主要城市办公建筑的白天及夜间空调冷负荷进行计算,得到夜间空调冷负荷占白天空调冷负荷比例随气候区的南移逐渐增大的变化规律。研究结果可为不同气候区太阳能空调系统中蓄能装置容量匹配提供设计依据,同时为制冷空调系统优化运行提供理论指导。

关键词 :

蓄能装置 蓄能装置 气候分区 气候分区 空调 空调 太阳能制冷技术 太阳能制冷技术 夜间冷负荷 夜间冷负荷

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GB/T 7714 王永生 , 毕月虹 , 陈杰 et al. 我国五大气候区办公建筑夜间空调冷负荷比较 [J]. | 制冷与空调 , 2018 , 18 (02) : 7-11 .
MLA 王永生 et al. "我国五大气候区办公建筑夜间空调冷负荷比较" . | 制冷与空调 18 . 02 (2018) : 7-11 .
APA 王永生 , 毕月虹 , 陈杰 , 苗振 , 郭继萌 . 我国五大气候区办公建筑夜间空调冷负荷比较 . | 制冷与空调 , 2018 , 18 (02) , 7-11 .
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Performance Optimization of Irreversible Air Heat Pumps Considering Size Effect SCIE CSCD
期刊论文 | 2018 , 27 (3) , 223-229 | JOURNAL OF THERMAL SCIENCE
WoS核心集被引次数: 8
摘要&关键词 引用

摘要 :

Considering the size of an irreversible air heat pump (AHP), heating load density (HLD) is taken as thermodynamic optimization objective by using finite-time thermodynamics. Based on an irreversible AHP with infinite reservoir thermal-capacitance rate model, the expression of HLD of AHP is put forward. The HLD optimization processes are studied analytically and numerically, which consist of two aspects: (1) to choose pressure ratio; (2) to distribute heat-exchanger inventory. Heat reservoir temperatures, heat transfer performance of heat exchangers as well as irreversibility during compression and expansion processes are important factors influencing on the performance of an irreversible AHP, which are characterized with temperature ratio, heat exchanger inventory as well as isentropic efficiencies, respectively. Those impacts of parameters on the maximum HLD are thoroughly studied. The research results show that HLD optimization can make the size of the AHP system smaller and improve the compactness of system.

关键词 :

Finite Time Thermodynamics Finite Time Thermodynamics Heating Load Density Heating Load Density Irreversible Air Heat Pump Irreversible Air Heat Pump Size Effect Size Effect Thermodynamic Optimization Thermodynamic Optimization

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GB/T 7714 Bi, Yuehong , Chen, Lingen , Ding, Zemin et al. Performance Optimization of Irreversible Air Heat Pumps Considering Size Effect [J]. | JOURNAL OF THERMAL SCIENCE , 2018 , 27 (3) : 223-229 .
MLA Bi, Yuehong et al. "Performance Optimization of Irreversible Air Heat Pumps Considering Size Effect" . | JOURNAL OF THERMAL SCIENCE 27 . 3 (2018) : 223-229 .
APA Bi, Yuehong , Chen, Lingen , Ding, Zemin , Sun, Fengrui . Performance Optimization of Irreversible Air Heat Pumps Considering Size Effect . | JOURNAL OF THERMAL SCIENCE , 2018 , 27 (3) , 223-229 .
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一种三相蓄能与供热一体化供热系统 incoPat
专利 | 2017-12-18 | CN201711362244.4
摘要&关键词 引用

摘要 :

一种三相蓄能与供热一体化供热系统,属于太阳能热泵领域。该发明以吸收式制冷工质对溴化锂‑水溶液作为蓄能介质,三相蓄能技术克服了传统太阳能吸收式热泵溶液结晶带来的危险,而且汽液固三相蓄能能力增强,蓄能密度比气液两相蓄能方式明显提高,50%的结晶率可使蓄能器的体积比两相蓄能方式减小一半以上,特别是,系统白天利用三相蓄能系统的水储罐通过水蒸汽冷凝为液体放热实现供热,同时热量以溴化锂水溶液化学势能形式储存在蓄能罐中,系统实现同步供热和蓄能,晚上利用吸收器释放吸收热实现供热,全天运行,有效提高了太阳能利用率,利用土壤热作低温热源,充分利用了可再生能源,对保护和改善生态环境具有重要作用。

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GB/T 7714 毕月虹 , 吕甜丽 , 于美泽 et al. 一种三相蓄能与供热一体化供热系统 : CN201711362244.4[P]. | 2017-12-18 .
MLA 毕月虹 et al. "一种三相蓄能与供热一体化供热系统" : CN201711362244.4. | 2017-12-18 .
APA 毕月虹 , 吕甜丽 , 于美泽 , 黄家斌 . 一种三相蓄能与供热一体化供热系统 : CN201711362244.4. | 2017-12-18 .
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