A novel advanced absorption heat pump (Type III) for cooling and heating using low-grade waste heat

被引:7
|
作者
Huicochea, A. [1 ]
机构
[1] Univ Autonoma Estado Morelos, Ctr Invest Ingn & Ciencias Aplicadas, Cuernavaca, Mexico
关键词
Cooling; Heating; Absorption heat pump; Advanced absorption cycles; Energy saving; Absorption heat transformer; Water; lithium bromide; THERMODYNAMIC DESIGN-DATA; LITHIUM BROMIDE; PERFORMANCE; TRANSFORMER; RECOVERY;
D O I
10.1016/j.energy.2023.127938
中图分类号
O414.1 [热力学];
学科分类号
摘要
The heat of low-grade can be used to get cooling and heating simultaneously by using the coupling of two absorption heat pumps (conventional/not conventional). This novel advanced absorption heat pump requires three pressure levels to increase and reduce the temperature of useful heat, where desorption/condensation processes are shared at medium pressure, and the two evaporation/absorption processes are developed at low and high pressure respectively. The aim of this proposal is to study this kind of advanced absorption heat pump (Type III) by using the first and second laws of thermodynamics, to determine the energy and exergy coefficient of performances for the whole system by taking into account three scenarios of heat flux rates for both evaporators. The irreversibility and exergy performances for the main components are determined to improve the exergy coefficient of performance. The understanding of reversible Carnot cycles, and the general relationship of energy coefficient of performances at low, medium, and high temperatures for this proposal are analyzed. This advanced absorption heat pump reaches cooling temperatures from 14 to 20 degrees C and heating temperatures between 80 and 106 degrees C using water/lithium bromide as a working solution. The energy coefficient of performance of 0.68 is obtained when the higher thermal load of the cooling evaporator than the heating evaporator.
引用
收藏
页数:10
相关论文
共 50 条
  • [41] Algal Biomass Harvesting Using Low-Grade Waste Heat: Evaluation of Overall Heat Transfer Coefficient in a Heat Exchanger
    Garoma, Temesgen
    Yazdi, Ramin E.
    JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 2021, 143 (01):
  • [42] NUMERICAL ANALYSIS OF A THERMALLY DRIVEN THERMOACOUSTIC HEAT PUMP FOR LOW-GRADE HEAT RECOVERY
    Yu, Zhibin
    Al-Kayiem, Ali
    COMPUTATIONAL THERMAL SCIENCES, 2014, 6 (04): : 317 - 327
  • [43] Application of Various Computer Tools for the Optimization of the Heat Pump Heating Systems with Extraction of Low-Grade Heat from Surface Watercourses
    Sychov, A.
    Kharchenko, V.
    Vasant, P.
    Uzakov, G.
    INTELLIGENT COMPUTING & OPTIMIZATION, 2019, 866 : 310 - 319
  • [44] Desalination using low-grade heat sources
    Gude, Veera Gnaneswar
    Nirmalakhandan, Nagamany
    JOURNAL OF ENERGY ENGINEERING, 2008, 134 (03) : 95 - 101
  • [45] Field Investigation and Comparison Analysis of Low-Grade Heat Pump Technologies in Building Space Heating Projects
    Li Y.
    Gao W.
    Zhang X.
    Xu W.
    Ruan Y.
    Wang Y.
    Energy Eng, 1 (63-81): : 63 - 81
  • [46] Collection of low-grade waste heat for enhanced energy harvesting
    Dede, Ercan M.
    Schmalenberg, Paul
    Wang, Chi-Ming
    Zhou, Feng
    Nomura, Tsuyoshi
    AIP ADVANCES, 2016, 6 (05):
  • [47] Ionic liquid electrolytes for harvesting low-grade waste heat
    Pringle, Jenny
    Dupont, Madeleine
    Taheri, Abuzar
    Al-Masri, Danah
    MacFarlane, Douglas
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2018, 255
  • [48] Investigation of a low-grade industrial waste heat recovery system
    Pintacsi, Daniel
    Bihari, Peter
    2013 4TH INTERNATIONAL YOUTH CONFERENCE ON ENERGY (IYCE), 2013,
  • [49] Thermomagnetic conversion of low-grade waste heat into electrical power
    El Achkar, G.
    Dianoux, A.
    Kheiri, A.
    Maillet, D.
    Mazet, T.
    Colasson, S.
    Feidt, M.
    Rado, C.
    Servant, F.
    Paul-Boncour, V.
    7TH EUROPEAN THERMAL-SCIENCES CONFERENCE (EUROTHERM2016), 2016, 745
  • [50] A desalination method utilising low-grade waste heat energy
    Venkatesan, G.
    Iniyan, S.
    Jalihal, Purnima
    DESALINATION AND WATER TREATMENT, 2015, 56 (08) : 2037 - 2045