Thermal analytical model of latent thermal storage with heat pipe heat exchanger for concentrated solar power

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WEB OF SCIENCE

49
Citations

SCOPUS

54

초록

An analytical model is developed for predicting the transient thermal behavior of a latent thermal energy storage (LTES) system in which circular fins are attached to the heat pipes. Thermal energy is stored or released by the heat pipe heat exchanger, and pure conduction is assumed for the charging and discharging modes. Considering the thermal environment required to concentrated solar power (CSP), potassium nitrate (KNO3), which has a phase-change temperature of 335 degrees C, is used as the phase-change material (PCM). Themal model used to estimate the heat transfer rate and the transient temperature variation in the PCM contained in each row of the heat pipe heat exchanger. Both melting and solidification are simulated under pure conduction. Row-by-row heat transfer is considered to assist estimation of row number of the entire LTES system. The developed model is also evaluated by comparing its predictions with the experimental results of a valid previous study. The discrepancies were observed to be less than 8%. (C) 2013 Elsevier Ltd. All rights reserved.

키워드

Latent thermal storagePhase-change materialSolar power plantHeat pipeThermal modelingThermal resistanceENERGY-STORAGESYSTEMSOLIDIFICATIONENHANCEMENT
제목
Thermal analytical model of latent thermal storage with heat pipe heat exchanger for concentrated solar power
저자
Jung, Eui GukBoo, Joon Hong
DOI
10.1016/j.solener.2013.11.008
발행일
2014-04
유형
Article
저널명
Solar Energy
102
페이지
318 ~ 332