Alternative Heat Transfer Enhancement Techniques for Latent Heat Thermal Energy Storage System: A Review

被引:24
作者
Jegadheeswaran, Selvaraj [1 ]
Sundaramahalingam, Athimoolam [2 ]
Pohekar, Sanjay D. [3 ]
机构
[1] Bannari Amman Inst Technol, Sathyamangalam 638401, Erode, India
[2] Bannari Amman Inst Technol, Dept Mech Engn, Sathyamangalam 638401, Erode, India
[3] Symbiosis Int Deemed Univ, Symbiosis Ctr Res & Innovat, Pune 412115, Maharashtra, India
关键词
Direct contact heat exchange; Dynamic melting; Electrohydrodynamics; PCMflux; Screw heat exchangers; Ultrasonic waves; PHASE-CHANGE MATERIAL; PERFORMANCE ENHANCEMENT; CONDUCTIVITY ENHANCEMENT; CHARGING PROCESS; ERYTHRITOL/EXPANDED GRAPHITE; ULTRASONIC VIBRATIONS; TRANSFER COEFFICIENTS; NUMERICAL-SIMULATION; RELEASE PERFORMANCE; PCM CAPSULES;
D O I
10.1007/s10765-021-02921-x
中图分类号
O414.1 [热力学];
学科分类号
摘要
Various enhancement techniques are proposed in the literature to alleviate heat transfer issues arising from the low thermal conductivity of the phase change materials (PCM) in latent heat thermal energy storage systems (LHTESS). The identified techniques include employment of fins, insertion of metal structures, addition of high conductivity micro/nanoparticles, micro-encapsulation, macro-encapsulation and cascaded PCMs arrangement. However, these conventional techniques tend to reduce the storage capacity as they generally add additional components/materials into the storage medium. On the other hand, if techniques such as direct contact heat exchange, ultrasonic vibration, electrohydrodynamics and movable PCM are employed, the storage volume would remain unaffected. Hence, the said techniques seem to have gained importance in PCM research in recent times. Although several review papers elaborating conventional techniques are available, none can be found on the aforementioned alternative class. Driven by the current scenario, this review paper intends to summarize past research on alternative heat transfer enhancement techniques employed for LHTESS. The critical analysis of the potential of each technique in enhancing the phase change heat transfer rate and their practical applicability are presented. Further, the present review evaluates relative merits/demerits and challenges/issues/limitations of these techniques to provide guidelines for future research.
引用
收藏
页数:48
相关论文
共 160 条
[61]   Thermally activated wall panels with microencapsulated PCM: comparison of 1D and 3D models [J].
Klimes, L. ;
Charvat, P. ;
Ostry, M. .
JOURNAL OF BUILDING PERFORMANCE SIMULATION, 2019, 12 (04) :404-419
[62]   Vibrational Heat Transfer Intensification in an Annulus with a Deformable Boundary [J].
Kozlov, Nikolai .
SHOCK AND VIBRATION, 2019, 2019
[63]   Investigation of heat transfer coefficients in a liquid-liquid direct contact latent heat storage system [J].
Kunkel, Sven ;
Teumer, Tobias ;
Doernhofer, Patrick ;
Wunder, Frederik ;
Repke, Jens-Uwe ;
Raedle, Matthias .
JOURNAL OF ENERGY STORAGE, 2020, 28
[64]   Determination of heat transfer coefficients in direct contact latent heat storage systems [J].
Kunkel, Sven ;
Teumer, Tobias ;
Doernhofer, Patrick ;
Schlachter, Kerstin ;
Weldeslasie, Yohana ;
Kuehr, Martin ;
Raedle, Matthias ;
Repke, Jens-Uwe .
APPLIED THERMAL ENGINEERING, 2018, 145 :71-79
[65]   Performance Characteristics of a Seawater Ice-Making Device Using a Scraped Surface Double Tube Evaporator [J].
Lee, Hyun-Kyung ;
Choi, Kwang-Hwan ;
Yoon, Jung-In ;
Moon, Choon-Geun ;
Jeon, Min-Ju ;
Lee, Joon-Hyuk ;
Lee, Kwang-Seok ;
Son, Chang-Hyo .
APPLIED SCIENCES-BASEL, 2018, 8 (11)
[66]   Enhancement of Heat Transfer by Ultrasound: Review and Recent Advances [J].
Legay, Mathieu ;
Gondrexon, Nicolas ;
Le Person, Stephane ;
Boldo, Primius ;
Bontemps, Andre .
INTERNATIONAL JOURNAL OF CHEMICAL ENGINEERING, 2011, 2011
[67]   Investigation on the dynamic characteristics of a direct contact thermal energy storage charging process for use in conventional air-conditioning systems [J].
Li, Xiao-Yan ;
Zhao, Qiao-Qiao ;
Qu, Dong-Qi .
APPLIED THERMAL ENGINEERING, 2015, 91 :172-180
[68]   Review on thermal performances and applications of thermal energy storage systems with inorganic phase change materials [J].
Lin, Yaxue ;
Alva, Guruprasad ;
Fang, Guiyin .
ENERGY, 2018, 165 :685-708
[69]   Graphene Aerogels Enhanced Phase Change Materials prepared by one-pot method with high thermal conductivity and large latent energy storage [J].
Liu, Lin ;
Zheng, Ke ;
Yan, Yang ;
Cai, Zihe ;
Lin, Shengxuan ;
Hu, Xiaobin .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2018, 185 :487-493
[70]   Thermal conductivity enhancement of phase change materials for thermal energy storage: A review [J].
Liu, Lingkun ;
Su, Di ;
Tang, Yaojie ;
Fang, Guiyin .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2016, 62 :305-317