DOI QR코드

DOI QR Code

Development of heat exchanger for underground water heat. II - Design and manufacture for heat exchanger of underground water -

지하수 이용을 위한 열교환기 개발. II - 지하수이용 냉·난방기 설계제작 -

  • Published : 2002.03.30

Abstract

This study was conducted to develop the heat exchanger by utilizing the heat energy of underground water(15℃), which might be used for cooling and heating system of the agricultural facilities. We developed the heat exchanger by using the parallel type plat fin tube made of Aluminum(Al 6063), which was named Aloo-Heat(No. 0247164, offered by Korean Intellectual property Office). The trial manufactures were made from Aloo-heat which was 600mm, 700mm length respectively, and It were welded to the end "U" type in order to direct flow of the underground water. The performance test was carried out under the condition of open space and room temperature with the change of flow rate of the underground water and air. The results are as follows. 1. The trial manufactures had convection heat value from 33 to 156 W/m2℃, and It was coincided with design assumption. 2. The amount of energy transfer was increased with the increment of the area of heat transfer, the air flow, the gap of temperature inlet & outlet the underground water and the air. 3. The heat value was 6,825W when the air flow was 6,000m3/h and the gap of temperature between inlet and outlet of the underground water was 6℃, and It dropped from 25.8℃ to 23.2℃(-2.6℃ difference). The convection heat value was 88.5W/m2℃. 4. The heat value was 2.625W when the air flow was 4,000m3/h and the gap of temperature between inlet and outlet the underground water was 2℃, and It dropped from 27℃ to 22.5℃(-4.5℃ difference). The convection heat value was 33.6W/m2℃. 5. Correlation values(R2) of the testing heat values of the trial manufacture type I, II, and III were 0.9141, 0.8935, and 0.9323 respectively, and correlation values(R2) of the amount of the air flow 6,000m3/h, 5,000m3/h, 4,000m3/h were 0.9513, 0.9414, and 0.9003 respectively.

개발된 알루히트를 이용하여 지하수 이용 열교환기를 개발하였다. 시작기는 600mm, 700mm 알루히트 19개의 끝을 U자 용접을 하여 지하수가 직렬흐름이 되도록 2가지로 제작하였다. 성능시험은 개방된 공간에서 지하수 유량과 공기양의 변화를 주면서 상온에서 실시하였다. 1. 시작기의 열전달 계수는 33~156(W/m2℃) 범위로 나타나 설계가정 값에 잘 일치하는 것으로 판단되었다. 2. 열전달 면적이 증가할수록, 지하수 입·출구의 온도 차이가 클수록, 공기의 입·출구 온도 차이가 클수록, 또 송풍량이 증가할수록 에너지 전달량이 증가하였다. 3. 지하수 입·출구 온도 차이가 6℃ 이고 송풍량이 6,000m3/h일 때 전달 열용량은 6,825W였으며, 공기의 입·출구 온도 차이는 25.8℃에서 23.2℃로 -2.6℃의 강화 효과가 있었고, 대류열전달계수는 88.5W/m2℃ 였다. 4. 지하수 입·출구 온도 차이가 2℃ 이고 송풍량이 4,000m3/h일 때 전달 열용량은 2,625W으로 작았지만, 공기의 입·출구 온도 차이는 27℃에서 22.5℃로 -4.5℃의 강화 효과가 있었고, 대류열전달계수는 33.6W/m2℃였다. 5. 시작기 I, II, III의 전달 열용량 데이터 각각의 상관계수 R2은 0.9141, 0.8935, 0.9393이었으며, 공기유량이 6,000m3/h, 5,000m3/h, 4,000m3/h일 때 각각의 데이터 상관계수 R2은 0.9513, 0.9414, 0.9003으로 신뢰할 수 있었다.

Keywords