Abstract
As a result of this study, we reached the following conclusions. With appropriate setting of oil pressure and flow rate, it operated same rotation speed with existing cooler by electrical transmission. In initial operation, a temperature of a cold storage is lower rapidly. As an internal temperature of a cold storage is lower, a decreasing rate of temperature is lower. As a result of comparing the both type, the cooler of oil pressure type showed the following results. The decreasing rate of temperature was more faster and shorter operating time was more shorter than existing cooler of electric type. The actual case of a cold storage, the cooler of oil pressure type can prevent quality deterioration and decrease power consumption. As an internal temperature of a cold storage is lower, power consumption increased rapidly, the oil pressure type showed lower power consumption. COP of two of these types decreased continuously as the internal temperature of a cold storage being reach setting temperature, and that of oil pressure type showed higher amount about 25%. As a setting temperature is lower, the number of refrigerator's operating times are less and operating time is longer, so power consumption is increased in the maintenance of a cold storage's internal temperature, power consumption of hydraulic type showed lower amount about 21~25% in two of these types.
냉동냉장창고 내 열부하 감소를 위한 유압 구동식 냉각기의 특성을 실험적으로 평가한 결과 고내 온도강하에 있어서 초기에는 급격하게 이루어지고, 설정온도가 낮아질수록 온도 강하율은 적게 나타났다. 기존 전기 구동식과 비교한 결과 유압식이 더 빠른 온도 강하율과 냉동기 운전시간이 짧게 나타나 실제냉동창고의 경우, 입고 물품의 품질저하 방지 및 전력 절감에 기여할 수 있을 것으로 판단되었다. 그리고 고내 설정온도가 낮을수록 소비동력은 급격히 증가하였고, 유압식이 더 적은 동력을 소비하는 것으로 나타났으며, 두 방식 모두 설정온도에 도달함에 따라 성능계수는 지속적으로 저하하였고, 유압식이 최대 25%정도 높게 나타났다. 고내 온도유지에 있어서는 설정온도가 낮을수록 냉동기의 운전 횟수가 적고, 운전시간이 길어 소비동력이 많아지는 것으로 나타났으며, 유압식이 약 21~25%정도 적게 나타났다.