1. 시설형태별 온도분포는 Type 1의 경우 지붕의 환기구가 없기 때문에 중력환기는 거의 일어나지 않고, 풍력환기에만 의존하게 되므로 풍속이 약한 경우는 온도가 상승하였다. Type 2 및 Type 3는 지붕의 환기구를 통하여 중력환기가 일어나기 때문에 대체로 온도 분포도 균일한 편으로 나타났다. 2. 시설형태별 평면 광분포는 Type 1가 가장 높고 Type 2, Type 3순으로 나타났다. 즉 일사투과율에 의한 지면 일사 도달율과 직접적으로 관련되기 때문에 Type 1, Type 2, Type 3순으로 지면온도 상승에 영향을 주었다. 3. 환기모델과 열수지 모델을 도입하여 환기량 및 실내온도 변화를 구한 결과, 시설형태별 풍속의 변화에 따른 내외기온차 변화는 Type 1이 가장 크고 Type 2, Type 3순이었다. Type 1의 경우 다른 형태에 비하여 풍속이 1 ㎧로 증가하면 급격히 내외기온차가 감소하였다. 4. 실측치를 사용하여 모델에 의한 풍속변화에 따른 환기량의 변화를 추정한 결과, Type 3 및 Type 2가 상대적으로 Type 1보다 낮은 경향을 나타냈다. 5. 전체적으로 개량형인 Type 2 및 Type 3은 관행형인 Type 1보다 효율적이라고 판단된다. 특히, 성력화의 차원에서 보면 Type 3이 Type 2보다 월등히 우수하기 때문에 자연적인 강우차단 능력이 보장된다면 Type 3이 Type 2보다 효율적이라고 사료된다.
Cultivation using rain shelter is very popular in summer because rain shelter has a simple structure using less materials than any other regular greenhouse. Although it has a main advantage of easy construction in terms of labour, time and cost, it has some disadvantage of poor ventilation and rain fall inflow. Therefore, the rain shelters being able to overcome the problems, to some extent, are necessary to propagate for practical purpose. Three characteristic types of rain shelter were analyzed using measured and simulated environment data. Type 1 was a conventional type with an arched roof, and Type 2 and Type 3 were improved ones which were designed to have three arched roofs and three sawtooth like roofs with the openings for ventilation, respectively. The distribution of inside temperature measured was relatively uniform in Type 2 and 3 by the natural ventilation through the openings of the roof compared to Type 1 which had no openings. The relative light transmittance measured in Type 2 and 3 showed lower than that in Type 1, which suppressed the rise of inside temperature, For more accurate comparison, the differences between inside and outside temperatures to various wind speeds were calculated by the model. The difference in Type 1 was the greatest at lower wind speed below 1 ㎧, that is, the highest in inside temperature, but decreased rapidly as wind speed increased above 1 ㎧. Measured temperatures generally showed the same trends as calculated ones by the model. As a whole, the improved rain shelters(Type 2 and 3) showed better performance than the conventional one in ventilation as well as inside temperature.