Prediction of Thermal Diffusivfties of Fish Meat Paste Products 5. Thermal Diffusivities of Red Muscled Fish Meat Paste Products

연제품류의 열확산도 추정에 관한 연구 5. 적색육 어육 연제품의 열확산도

  • HAN Bong-Ho (Department of Food Science and Technology, National Fisheries University of Pusan) ;
  • CHOI Soo-Il (Department of Food Science and Technology, National Fisheries University of Pusan) ;
  • KIM Jong-Chul (Department of Food Science and Technology, National Fisheries University of Pusan) ;
  • BAE Tae-Jin (Department of Food Science and Technology, National Fisheries University of Pusan) ;
  • CHO Hyun-Duk (Department of Food Science and Technology, National Fisheries University of Pusan)
  • 한봉호 (부산수산대학 식품공학과) ;
  • 최수일 (부산수산대학 식품공학과) ;
  • 김종철 (부산수산대학 식품공학과) ;
  • 배태진 (부산수산대학 식품공학과) ;
  • 조현덕 (부산수산대학 식품공학과)
  • Published : 1988.12.01

Abstract

In Previous paper, an experimental equation for prediction of thermal diffusivity of white muscled fish meat paste products was suggested. In this paper, another experimental equation for red muscled fish meat paste products was derived. The thermal diffusivities of products with water contents of 44.74 to $82.83\%$ and lipid contents of 0.35 to $23.38\%$ could be deduced as following equations ; $$\alpha_{80.39^{\circ}C}=0.0759{\cdot}10^{-6}{\cdot}X_w+0.0836{\cdot}10^{-6},\;m^2{\cdot}s^{-1}$$ $$\alpha_{100.63^{\circ}C}=0.0820{\cdot}10^{-6}{\cdot}X_w+0.0853{\cdot}10^{-6},\;m^2{\cdot}s^{-1}$$ $$\alpha_{120.09^{\circ}C}=0.0830{\cdot}10^{-6}{\cdot}X_w+0.09140{\cdot}10^{-6},\;m^2{\cdot}s^{-1}$$ The experimental equation derived from these equations was ; $$\alpha=(0.9795+.8996{\cdot}X_w){\cdot}\alpha_w-0.0709{\cdot}10^{-6}{\cdot}X_w-0.0779{\cdot}10^{-6},\;m^2{\cdot}s^{-1}$$ The errors of the thermal diffusivities of red muscled fish meat paste products predicted with this equation were less than ${\pm}\;0.52\%$ compared with those measured. A new experimental equation for products of white and red muscled fish meat paste could be discribed as follow ; $$\alpha=(1.096+0.5318{\cdot}X_w){\cdot}\alpha_w-0.0057{\cdot}10^{-6}{\cdot}X_w-0.0992{\cdot}10^{-6},\;m^2{\cdot}s^{-1}$$ The errors of the thermal diffusivities predicted with this equation were less than ${\pm}\;0.13\%$ compared with those measured.

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