Closed Greenhouse Concept Integrating Thermal Energy Storage (TES) applied to Aquaponics Systems

被引:0
|
作者
Biernatzki, Ralf [1 ]
Meinecke, Rolf [2 ]
机构
[1] South Westphalia Univ Appl Sci, Inst Green Technol & Rural Dev I Green, Berlin, Germany
[2] HeiTro GmbH, Res & Planning Grp, Aquaponik Ruhr, D-44149 Dortmund, Germany
来源
2014 49TH INTERNATIONAL UNIVERSITIES POWER ENGINEERING CONFERENCE (UPEC) | 2014年
关键词
renewable energy; mine water; energy efficient greenhouses; thermal energy storage; aquaponics;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This paper focuses on the development of closed greenhouse concepts and application of that technology to aquaponics systems. At first, aquaponics systems and closed greenhouses with TES are described. Then, TES in abandoned mines are discussed. Finally, ongoing research on aquaponics systems at the South Westphalian University of Applied Sciences, Soest Campus, will be presented. The aim is to develop a concept for a prototype aquaponics system in the Ruhr-district in North Rhine-Westphalia at an abandoned coal mine in order to use mine water for heating the aquaponics system, improving the energy balance significantly.
引用
收藏
页数:5
相关论文
共 50 条
  • [41] Thermal Effect of Thermal Energy Storage (TES) Tank for Solar Energy Application During Charging Cycle Based on the Grid Sensitivity Analysis.
    Ali, Tanti
    Jusoh, Norfadzilah
    Abu Bakar, Rosli
    Jie, Teoh Sun
    Kadirgama, Kumaran
    2015 INTERNATIONAL CONFERENCE ON ALTERNATIVE ENERGY IN DEVELOPING COUNTRIES AND EMERGING ECONOMIES, 2015, 79 : 245 - 251
  • [42] Combined heat and power plant integrated with mobilized thermal energy storage (M-TES) system
    Wang W.
    Hu Y.
    Yan J.
    Nyström J.
    Dahlquist E.
    Frontiers of Energy and Power Engineering in China, 2010, 4 (4): : 469 - 474
  • [43] Natural convection mechanism evaluation inside a shell and tube thermal energy storage (TES) devise inclination
    Elmeriah, Abderrahmane
    Nehari, Driss
    Mohamed, Aichouni
    Remlaoui, Ahmed
    REVUE DES COMPOSITES ET DES MATERIAUX AVANCES-JOURNAL OF COMPOSITE AND ADVANCED MATERIALS, 2018, 28 (02): : 257 - 276
  • [44] A comparison of experimental thermal stratification parameters for an oil/pebble-bed thermal energy storage (TES) system during charging
    Mawire, Ashmore
    Taole, Simeon H.
    APPLIED ENERGY, 2011, 88 (12) : 4766 - 4778
  • [45] Pumped thermal energy storage and bottoming system part A: Concept and model
    Abarr, Miles
    Geels, Brendan
    Hertzberg, Jean
    Montoya, Lupita D.
    ENERGY, 2017, 120 : 320 - 331
  • [46] The heat capacity of low-temperature phase change materials (PCM) applied in thermal energy storage systems
    Rolka, Paulina
    Przybylinski, Tomasz
    Kwidzinski, Roman
    Lackowski, Marcin
    RENEWABLE ENERGY, 2021, 172 (172) : 541 - 550
  • [47] Optimising PCM thermal storage systems for maximum energy storage effectiveness
    Amin, N. A. M.
    Belusko, M.
    Bruno, F.
    Liu, M.
    SOLAR ENERGY, 2012, 86 (09) : 2263 - 2272
  • [48] Challenges of integrating hydrogen energy storage systems into nearly zero-energy ports
    Vichos, Emmanouil
    Sifakis, Nikolaos
    Tsoutsos, Theocharis
    ENERGY, 2022, 241
  • [49] Thermoeconomic cost allocation in simple trigeneration systems including thermal energy storage
    Pina, Eduardo A.
    Lozano, Miguel A.
    Serra, Luis M.
    ENERGY, 2018, 153 : 170 - 184
  • [50] Nanofluids in Thermal Energy Storage Systems: A Comprehensive Review
    Peer, Mohamed Shameer
    Cascetta, Mario
    Migliari, Luca
    Petrollese, Mario
    ENERGIES, 2025, 18 (03)