• 제목/요약/키워드: 청과물

검색결과 88건 처리시간 0.022초

차압통풍 예냉 청과물의 냉각특성 (Cooling Characteristics of Fruits and Vegetables for Pressure Cooling)

  • 윤홍선;박경규
    • 한국식품저장유통학회지
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    • 제4권3호
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    • pp.237-243
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    • 1997
  • Numerous variables affect product cooling rate of pressure cooling system for fruits and vegetables. These include carton vent area, initial and desired final product temperature, flow rate and temperature of the cooling air, product size, shape and thermal properties and product configuration(whether in bulk or packed in shipping cartons). This study was carried out to determine the influence of each of these variables as they affect cooling time. The opening ratio and number of the vent hole were recomended as 4∼10% and 2∼4ea., respectively, for a minimum alt flow resistance and for a uniform air flow pattern. In the cooling experiment for tomatoes and mandarins, optimum air flow rate was 0.04 m3/min.kg in terms of energy saving. The cooling air temperature should be about 2$^{\circ}C$ less than the desired final product temperature for reducing cooling time.

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저장기간에 따른 사과 과육의 기계적 특성 및 초음파 파라미터 (Mechanical Property and Ultrasonic Parameter Changes of the Apple Flesh during Storage)

  • 김기복;김만수;정현모;이상대;박정길
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 2003년도 동계 학술대회 논문집
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    • pp.463-469
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    • 2003
  • 과실은 재배기술, 재배환경의 영향으로 형상, 색택, 병충해로 인한 상해 정도가 다르게 나타나기 때문에 상품성이 매우 다양하게 결정된다. 또한 수확, 저장, 포장, 수송, 상하차 등 유통과정에서 기계적 손상이 발생할 수 있으며 유통기간이 길어짐에 따라 호흡 및 증산작용 등과 같은 생리적 작용으로 인하여 부패 및 변질이 발생하며 이러한 유통과정 중에서 발생하는 과실의 품질저하가 상당한 수준에 이르고 있으나, 이에 대한 관심은 매우 낮은 실정이다. 또한, 대부분의 청과물은 수확 후 소비되기까지 장기간의 저장으로 품질 변화가 발생할 수도 있다. (중략)

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청과물의 품온예측모델 개발 (Development of the Numerical Model for Temperature Prediction of Fruits)

  • 김의웅;김병삼;남궁배;정진웅;김동철;금동혁
    • Journal of Biosystems Engineering
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    • 제20권4호
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    • pp.343-350
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    • 1995
  • In order to design efficient and effective pressure cooling system for fruits and vegetables, a numerical model for temperature prediction of fruits was developed. This model was extended to study the various factors affecting product cooling time, such as product depth, approach air temperature, entering air velocity and initial product temperature. Also, selection of these factors were examined with respect to the efficiency of the pressure cooling system, the overall precooling cost and the final quality of the product. When designing a pressure cooling system for a particular product, the range of the factors must be selected carefully according to the thermal and physiological properties.

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청과물 퇴적층에서의 공기유동 정압강하 (Static Pressure Drop of Airflow in Packed-bed of Fruits and Vegetables)

  • 김의웅;김병삼;남궁배;정진웅;김동철;금동혁
    • Journal of Biosystems Engineering
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    • 제21권1호
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    • pp.44-51
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    • 1996
  • The purpose of this paper is to obtain the basic data for design of pressure cooling system. Static pressure drop, as a function of superficial velocity, was measured for different stacking methods and stacking heights of some fruits and vegetables. At given superficial velocity, sphericity and void fraction had a much greater influence on static pressure drop than average diameter of spherical fruits such as apple, peach, tomato and kiwi fruit. Among cylindrical vegetables such as cucumber, carrot, radish and chinese cabbage, cucumber showed different pattern of static pressure drop because of its bended shape, radish showed less static pressure drop than other vegetables because its large sizes of voids. When cucumber and spinach were stacked vertically and horizontally to air flow, a much greater static pressure drop was shown in vertical than in horizontal type, therefore static pressure drop was affected not only by void fraction but also by void shape. Also, in packed-beds of fruits and vegetables, static pressure drop could be estimated very well by Ramsins equation.

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청과물 저온저장고의 설계에 관한 연구 (1) -자연환기를 이용한 제주산밀감저장고의 설계- (On the Design of Cold Storage for Fruits and Vegetables (1) -Design of Natural Ventilating Type Store for Citrus Furits in Jejudo-)

  • 허종화;김효경
    • 대한설비공학회지:설비저널
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    • 제5권4호
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    • pp.272-280
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    • 1976
  • A natural ventilating type store was designed for the economic and effective storage of citrus fruits in Jejudo. The material used for the wall is scoria, widely distributed in Jejudo and known for high strength and insulation. Design condition was chosen for the period till March of a year and the dry bulb temperature was taken from TAC $5\%$ base. The temperature of the store can be maintained below the limiting temperature of $8^{\circ}C$ for the time length of $7\frac{1}{2}$ hours under the condition of the atmospheric temp, $15.3^{\circ}C$ and the solar insolation. The limiting temperature can he recovered to the initial temperature $(7^{\circ}C)$ by the natural ventilation for 8 hours in the night.

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차압예냉에서 청과물 상자의 적재방법에 따른 송풍저항 예측모델 개발 (An air flow resistance model for a pressure cooling system based on container stacking methods)

  • 김의웅;김훈;한재웅;이효재
    • 한국식품저장유통학회지
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    • 제20권3호
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    • pp.289-295
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    • 2013
  • 차압예냉시스템을 설계하기 위해서는 송풍저항을 정확하게 예측해야 하며, 송풍저항은 청과물의 적재방법에 따라 크게 달라진다. 본 연구는 차압예냉시스템에서 송풍량에 따른 송풍저항식과 상자의 적재방법별로 송풍저항을 측정할 수 있는 모델을 개발하기 위하여 수행되었다. 공을 퇴적한 모형상자에서의 송풍저항은 빈 상자에서의 송풍저항과 공 퇴적층만의 송풍저항을 합한 값보다 1.5배 정도 높게 나타났다. 또한, 적재상자에서의 송풍저항은 통기폭 방향 적재상자수의 증가에 따라 지수적으로 증가하였으나, 적재길이와 적재높이의 영향은 거의 받지 않았다. 상자를 2열로 적재하는 차압예냉시스템에서 송풍저항은 1개 상자에서의 송풍저항을 기초로 예측이 가능하였으며, 예측모델을 제시하였다.

모의 수송 환경에서의 청과물 골판지 상자의 진동 피로에 따른 내구성 (Durability of Corrugated Fiberboard Container for Fruit and Vegetables by Vibration Fatigue at Simulated Transportation Environment)

  • 김만수;정현모;김기복
    • Journal of Biosystems Engineering
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    • 제30권2호
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    • pp.89-94
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    • 2005
  • The compression strength of corrugated fiberboard container for packaging the agricultural products rapidly decreases because of various environmental conditions during distribution of unitized products. Among various environmental conditions, the main factors affecting the compression strength of corrugated fiberboard are absorption of moisture, long-term accumulative load, and fatigue caused by shock and vibration. An estimated rate of damage for fruit during distribution is about from 30 to 40 percent owing to the shock and vibration. This study was carried out to characterize the durability of corrugated fiberboard container for packaging the fruit and vegetables under simulated transportation environment. The vibration test system was constructed to simulate the land transportation using truck. After the package with corrugated fiberboard container was vibrated by vibration test system at various experimental conditions, the compression test for the package was performed. The compression strength of corrugated fiberboard container decreased with loading weight and vibrating time. The multiple nonlinear regression equation for predicting the decreasing rate of compression strength of corrugated fiberboard containers were developed using four independent variables such as input acceleration level, input frequency, loading weight and vibrating time. The influence of loading weight on the decreasing rate of corrugated fiberboard container was larger than other variables.

청과물 저장에 관한 연구(제1보) -통기량 조절에 따른 저장실내 기체조성 및 생리화학적 변화에 대하여- (A Study on the Storage of Fresh Fruits and Vegetables (I) -Changes of the Internal Atmosphere in Storage Room and the Biochemical Changes of Apple Fruits by Controlled Ventilation-)

  • 손태화;최종욱;김성달
    • 한국식품과학회지
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    • 제4권1호
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    • pp.13-17
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    • 1972
  • This experiment was conducted to observe the changes of composition of atmosphere in storage room by controlled ventilation under normal and sub-atmospheric conditions, and the biochemical changes in apple texture under these conditions. The results were as follows; 1) By controlled ventilation, concentration of carbon dioxide in storage room was optionally regulated and constantly maintained. 2) Among compositions of internal atmosphere of apple, especially, concentration of ethylene was much decreased at apple stored under sub-atmospheric condition than that stored under normal atmospheric condition. 3) Acidity of apple stored under sub-atmospheric condition was much greater than that of apple stored under normal atmospheric condition. 4) Respiratory quotients of apple, which was stored under normal and sub-atmospheric conditions, were shown to be high. But decarboxylation of added pyruvate was found more active in slices prepared from apple stored under sub-atmospheric condition.

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상자포장 청과물의 송풍저항 특성 (Resistance to Air Flow through Packed Fruits and Vegetables in Vented Box)

  • 윤홍선;조영길;박경규
    • Journal of Biosystems Engineering
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    • 제20권4호
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    • pp.351-359
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    • 1995
  • In pressure cooling system, produce were packed in vented box and cooled rapidly by producing a difference in air pressure on opposite faces of stacks of vented box. So, energy requirements and performance of pressure cooling system depended upon the air flow rate and the static pressure drop through packed produce in vented box. The static pressure drop across packed produce in vented box normally depended upon air flow rate, vent area of box and conditions of produce bed (depth, porosity, stacking patterns, size and shape of products) in box. The objectives of this study were to investigate the effect of vent area and air flow rate on airflow resistance of empty box and packed produce in vented box, and to investigate the relationship between the air flow resistance of packed products in vented box and sum of air flow resistance of empty box only and products in bulk only. Mandarins and tomatoes were used in the experiment. The airflow rate were in the range of 0.02~1.0$m^3$/s.$m^2$, the opening ratio of vent hole were in the range of 2.5~20% of the side area. The results were summerized as follows. 1. The pressure drops across vented box increased in proportion to superficial air velocity and decreased in proportion to opening ratio of vent hole. A regression equation to calculate airflow resistance of vented box was derived as a function of superficial air velocity and opening ratio of vent hole. 2. The pressure drops across packed produce in vented box increased in proportion to superficial air velocity and decreased in proportion to opening ratio of vent hole. 3. Because of the air velocity increase in the vicinity of vent hole in box, the airflow resistances of packed products in vented box were always higher than sum of air flow resistance of empty box only and products in bulk only. 4. Based on the airflow resistance of empty box and products in bulk, a regression equation to calculate airflow resistance of packed products in vented box was derived.

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산물퇴적 청과물의 송풍저항 특성 (Resistance to Air Flow through Fruits and Vegetables in Bulk)

  • 윤홍선;조영길;박판규;박경규
    • Journal of Biosystems Engineering
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    • 제20권4호
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    • pp.333-342
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    • 1995
  • The resistance to air flow through fruits and vegetables in bulk was an important consideration in the design of the pressure cooling system. The amount of resistance to air flow through produce in bulk normally depended upon air flow rate, stacking depth, porosity, stacking patterns and shape and site of product. But, there was not enough information relating the effects of those factors on air flow resistance. The objectives of this study were to investigate the effect of stacking depth, stacking patterns, porosity and airflow rate on airflow resistance and to develop a statistical model to predict static pressure drop across the produce bed as a function of air flow rate, stacking depth, bed porosity, and product size. Mandarins and tomatoes were used in the experiment. The airflow rate were in the range of 0.1~1.0 ㎥/s.$m^2$, the porosity were in the range of 0.25~0.45, the depth were in the range of 0.3~0.9m and the equivalent diameters were 5.3cm and 6.3cm for mandarins, and 6.5cm and 8.5cm for tomatoes. Three methods of stacking arrangement were used i.e. cubic, square staggered, and staggered stacking arrangement. The results were summarized as follows. 1. The pressure drops across produce bed increased in proportion to stacking depth and superficial air velocity and decreased in proportion to porosity. 2. The increasing rates of pressure drop according to stacking patterns with the increase of superficial air velocity were different one another. The staggered stacking arrangement produced the highest increasing rate and the cubic stacking arrangement produced the lowest increasing rate. But it could be assumed that the stacking patterns had not influenced greatly on pressure drops if it was of equal porosity. 3. The statistical models to predict the pressure drop across produce bed as a function of superficial air velocity, stacking depth, porosity, and product diameter were developed from these experiments.

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