Analytical function describing the behaviour of a thermocline storage tank: A requirement for annual simulations of solar thermal power plants

被引:0
|
作者
Bayón, Rocío [1 ]
Rojas, Esther [1 ]
机构
[1] Concentrating Solar Systems Unit - Thermal Storage, CIEMAT-PSA, Av. Complutense 40, Madrid,28040, Spain
关键词
Heat storage - Stream flow - Tanks (containers) - Scattering parameters - Solar heating - Distribution functions - Solar thermal energy;
D O I
暂无
中图分类号
学科分类号
摘要
Thermocline tank behaviour during dynamic processes of charge/discharge and stand-by periods has been described in dimensionless form by means of the Logistic Cumulative Distribution Function (CDF). The Logistic-CDF parameter, S, has been correlated with both thermocline tank features and operation conditions (i.e. dimensionless velocity, v∗, and time, t∗) with the help of a single-phase one-dimensional numerical model previously developed and validated. For the dynamic processes, it has been found that S becomes independent on v∗ when v∗ > 2500, but it always increases proportionally with v∗t∗ due to the progress of thermocline zone inside the tank. For adiabatic stand-by periods, in which v∗ = 0, S parameter proportionally increases with t∗ whereas zc∗ varies in order to keep constant the stored energy inside the tank. In terms of thermocline thickness it has been demonstrated that it is proportional to S parameter but its exact value strongly depends on the temperature accuracy that determines thermocline zone limits. This parameterised Logistic-CDF provides a general analytical equation for the outlet temperature of the storage liquid, which allows implementing thermocline storage systems in the annual performance simulations of solar thermal power plants. © 2013 Elsevier Ltd. All rights reserved.
引用
收藏
页码:641 / 648
相关论文
共 50 条
  • [21] Optimal Design of a Molten Salt Thermal Storage Tank for Parabolic Trough Solar Power Plants
    Gabbrielli, R.
    Zamparelli, C.
    JOURNAL OF SOLAR ENERGY ENGINEERING-TRANSACTIONS OF THE ASME, 2009, 131 (04): : 0410011 - 04100110
  • [22] Stratification Analysis and Behaviour of a Real Industrial Thermocline Thermal Energy Storage Tank for Cogeneration Purposes
    Fernandez, Francisco J.
    Diaz, Jose
    Folgueras, Maria B.
    Suarez, Ines M.
    PROCESSES, 2021, 9 (01) : 1 - 20
  • [23] A temperature threshold evaluation for thermocline energy storage in concentrated solar power plants
    Fasquelle, T.
    Falcoz, Q.
    Neveu, P.
    Hoffmann, J. -F.
    APPLIED ENERGY, 2018, 212 : 1153 - 1164
  • [24] Thermocline storage for concentrated solar power plants: Descriptive review and critical analysis
    Chekifi, Tawfiq
    Boukraa, Moustafa
    JOURNAL OF ENERGY STORAGE, 2022, 55
  • [25] ANALYSIS OF A LATENT THERMOCLINE ENERGY STORAGE SYSTEM FOR CONCENTRATING SOLAR POWER PLANTS
    Nithyanandam, Karthik
    Pitchumani, Ranga
    Mathur, Anoop
    PROCEEDINGS OF THE ASME 6TH INTERNATIONAL CONFERENCE ON ENERGY SUSTAINABILITY - 2012, PTS A AND B, 2012, : 517 - +
  • [26] An efficient tank size estimation strategy for packed-bed thermocline thermal energy storage systems for concentrated solar power
    Zhao, Bingchen
    Cheng, Maosong
    Liu, Chang
    Dai, Zhimin
    SOLAR ENERGY, 2017, 153 : 104 - 114
  • [27] Single-tank thermal energy storage systems for concentrated solar power: Flow distribution optimization for thermocline evolution management
    Lou, Wanruo
    Fan, Yilin
    Luo, Lingai
    Journal of Energy Storage, 2020, 32
  • [28] Single-tank thermal energy storage systems for concentrated solar power: Flow distribution optimization for thermocline evolution management
    Lou, Wanruo
    Fan, Yilin
    Luo, Lingai
    JOURNAL OF ENERGY STORAGE, 2020, 32
  • [29] Thermocline thermal storage systems for concentrated solar power plants: One-dimensional numerical model and comparative analysis
    Modi, Anish
    David Perez-Segarra, Carlos
    SOLAR ENERGY, 2014, 100 : 84 - 93
  • [30] COMPARISON OF TWO-TANK INDIRECT THERMAL STORAGE DESIGNS FOR SOLAR PARABOLIC TROUGH POWER PLANTS
    Kopp, Joseph
    Boehm, R. F.
    ES2009: PROCEEDINGS OF THE ASME 3RD INTERNATIONAL CONFERENCE ON ENERGY SUSTAINABILITY, VOL 2, 2009, : 683 - 688