Effect of concentration and temperature on the thermal conductivity of frozen acerola pulp

被引:1
|
作者
Pereira, Cristina Guimaraes [1 ]
de Oliveira Giarola, Tales Marcio [1 ]
de Siqueira Elias, Heloisa Helena [2 ]
Resende, Jaime Vilela [3 ]
机构
[1] Univ Fed Lavras, UGLA, Doutorado Ciencia Alimentos, Lavras, MG, Brazil
[2] Univ Fed Lavras, Posdoutoranda Ciencia Alimentos, Lavras, MG, Brazil
[3] Univ Fed Lavras, Engn Alimentos, Lavras, MG, Brazil
来源
SEMINA-CIENCIAS AGRARIAS | 2015年 / 36卷 / 01期
关键词
Frozen acerola pulp; thermal conductivity; hot wire probe; theoretical model; MODELS; FOODS; STATE;
D O I
10.5433/1679-0359.2015v36n1p187
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
The purpose of this work was the experimental determination of the thermal conductivity of acerola pulp at concentrations of 5.5, 7.5, 9.5, 11.5 and 13.5 degrees Brix and temperatures of 0, -5, -10, -15, -20, -25 and -30 degrees C. The methodology used involved a hot wire probe, and the experimental results were compared with values estimated by several theoretical models (series, parallel and Maxwell-Eucken models) to evaluate the error involved. We observed an influence both of the concentration and the temperature on the thermal conductivity of the pulp. An increase of the conductivity with a decrease in temperature and in the solids concentration was detected. We observed the greatest increases in the range of 0 to -10 degrees C. Linear and polynomial equations were adjusted for the direct determination of the thermal conductivity of the pulp in the range of temperature and concentration studied.
引用
收藏
页码:187 / 202
页数:16
相关论文
共 50 条
  • [41] Testing Study Concerning the Effect of Temperature on the Thermal Conductivity of Granite and Sandstone
    He, Yulong
    Zhao, Wen
    Zhang, Guangming
    2011 AASRI CONFERENCE ON INFORMATION TECHNOLOGY AND ECONOMIC DEVELOPMENT (AASRI-ITED 2011), VOL 3, 2011, : 417 - 420
  • [42] Temperature effect on the thermal and hydraulic conductivity of Korean bentonite buffer material
    Park, Seunghun
    Yoon, Seok
    Kwon, Sangki
    Lee, Min-Su
    Kim, Geon-Young
    PROGRESS IN NUCLEAR ENERGY, 2021, 137
  • [43] The Effect of Orientation, and Temperature on Thermal Conductivity in Nettle Fiber/Polyester Composites
    Koru, Murat
    Buyukkaya, Kenan
    Kan, Mehmet
    INTERNATIONAL JOURNAL OF THERMOPHYSICS, 2022, 43 (10)
  • [44] Study of thermal conductivity model for unsaturated unfrozen and frozen soils
    Yuan Xi-zhong
    Li Ning
    Zhao Xiu-yun
    Li Jing
    ROCK AND SOIL MECHANICS, 2010, 31 (09) : 2689 - 2694
  • [45] Thermal Conductivity of Frozen and Unfrozen Gas-Saturated Soils
    Chuvilin, Evgeny
    Davletshina, Dinara
    Bukhanov, Boris
    Grebenkin, Sergey
    GEOSCIENCES, 2023, 13 (11)
  • [46] Experimental Study and Simulation of Thermal Conductivity of Saturated Frozen Soil
    Ren, Zhifeng
    Wang, Enliang
    Liu, Jiankun
    JOURNAL OF THERMAL SCIENCE AND ENGINEERING APPLICATIONS, 2023, 15 (11)
  • [47] Alternative analytical solutions of the diffusion (thermal conductivity) equation for an arbitrary initial concentration (temperature) distribution
    R. Sh. Malkovich
    Technical Physics Letters, 2002, 28 : 923 - 924
  • [48] Thermal conductivity measurements of a traditional fermented dough in the frozen state
    Kumcuoglu, Seher
    Tavman, Sebnem
    Nesvadba, Paul
    Tavman, Ismail Hakki
    JOURNAL OF FOOD ENGINEERING, 2007, 78 (03) : 1079 - 1082
  • [49] Alternative analytical solutions of the diffusion (thermal conductivity) equation for an arbitrary initial concentration (temperature) distribution
    Malkovich, RS
    TECHNICAL PHYSICS LETTERS, 2002, 28 (11) : 923 - 924
  • [50] Thermal conductivity as influenced by the temperature and apparent viscosity of dairy products
    Goncalves, B. J.
    Pereira, C. G.
    Lago, A. M. T.
    Goncalves, C. S.
    Giarola, T. M. O.
    Abreu, L. R.
    Resende, J. V.
    JOURNAL OF DAIRY SCIENCE, 2017, 100 (05) : 3513 - 3525