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[太阳能] 潜热储能系统的传热及热力学优化研究

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发表于 2007-3-23 23:21:15 | 显示全部楼层 |阅读模式 来自: 中国辽宁沈阳

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潜热储能系统的传热及热力学优化研究  论文
# @$ ^0 ~" w$ c5 g来源《新能源》
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潜热储能系统的传热及热力学优化研究
Study on Heat Transfer and Thermodynamics Optimization of Latent Thermal Storage System
张正国  余晓福  王世平 
摘 要:介绍了相变潜热储能系统的组成、特点及其传热和热力学优化研究.% F" K; z- {0 t2 R0 ?
关键词:潜热储能 传热 热力学优化 相变储能2 G/ a) [& P0 E

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基金项目:教育部重点基金和广东省自然科学基金资助$ T# L  C8 M5 l% a
参考文献:
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[5]Kurklu A. Energy Conversion and Management, 1997,38(4) :333~340
+ Y7 i) v  r# `) I, h+ \1 B1 ?[6]Gong Zhen xiang, Mujumdar A S. Cyclic heat transfer in a novel storage unit of multiple phase change materials. Applied Thermal Engineering, 1996,16(10) :807~815
2 K) w6 M) k. s- U/ A! Q[7]Takeuchi H, Pyatenko A.Yamagishi Y, et al.Characteristic of microencapsulated phase change material slurry as energy transportation refrigerant. Thermal Science & Engineering, 1998,6(1): 163~1674 ~6 O1 F- K5 x4 Y3 i% Q
[8]Bedecarrats J P, Strub F, Falcon B, et al.Phase change thermal energy storage using spherical capsules: performance of atest plant.Int J Refrig, 1996,19(3) :187~196
: o$ }! {, t- C9 A4 ?3 `  i6 D& q5 x3 E- p[9]Jotshi C K, Hsieh C K, Goswami D Y, et al.Thermal storage in ammonium alum/ammonium nitrate eutectic for solar space heating applications. Journal of Solar Energy Engineering,1998,120: 20~ 245 [4 |6 w) I9 \, ^: y3 c5 W
[10]Royon L, Guiffant G, Flaud P. Investigation of heat transfer in a polymeric phase change materials for low level heat storage. Energy Conversion and Management, 1997,38(6): 517~524
0 g. [. j! u$ U- Q' B7 w[11]Flaud P, et al. ANVAR Patent 854012929,19876 I: W7 _6 v5 {9 m' x: ?" G0 Y
[12]Kamimoto M, Abe Y, Sawata S, et al. Latentthermal storage unit form-stable high density polyethylene, part I:performance of the storage unit. J Solar Energy Engineering, 1986, 108:282~289
, ?% `+ S/ A2 F  u[13]Inaba H, Yoneda A, Horibe A, et al. Thetransient latent heat storage characteristics of the shaped-stabilized polyethylene by condensed heat.日本机械学会论文集(B篇),1996.63:282~289
$ L& Y2 E* p5 [[14]Zhang Yuwen, Faghri A. Semi-analytical solution of thermal energy storage system with conjugate laminar forced convection. Iht J Heat Mass Transfer, 1996,39(4): 717~724: t: Q1 [, k6 p% F
[15]赫俏,张仁元.相变储能换热器中传热问题的研究@热力发电,1997(4):15~19
7 P* u. P/ Z7 m/ W* V7 i8 v8 B[16]Bejan A. Advanced Engineering Thermodynamics. New York: John Wiley & Sons, 1988
3 S: F) @; }( j/ G( d[17]王剑锋,陆国强.陈光明.组合式相变材料储能系统性能研究.新能源,1997,19(4):7~11
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[19]Gong Zhenxiang, Mujumdar A. Enhancement of energy charge-discharge rates in composite slabs of different change materials. Iht J Heat Mass Transfer, 1996,39(4): 725~735
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