DOI QR코드

DOI QR Code

Characteristics of the Newly Developed Rain Shelter for Grapevine and Growth of 'Campbell Early'

신개발 포도 비가림 시설의 특성과 '캠벌얼리'의 생육

  • Lee, Yun Sang (Chungcheongbukdo Agricultural Research and Extension Services) ;
  • Kim, Seung Deok (Chungcheongbukdo Agricultural Research and Extension Services) ;
  • Lee, Seok Ho (Chungcheongbukdo Agricultural Research and Extension Services) ;
  • Hong, Seong Taek (Chungcheongbukdo Agricultural Research and Extension Services) ;
  • Lee, Jae Wung (Chungcheongbukdo Agricultural Research and Extension Services) ;
  • Hong, Eui Yon (Chungcheongbukdo Agricultural Research and Extension Services) ;
  • Kim, Dae Il (Department of Horticultural Science, Chungbuk National University)
  • Received : 2015.04.08
  • Accepted : 2015.09.18
  • Published : 2015.09.30

Abstract

Fruit cracking and vine leaf spot of grapes tend to occur when the plants were directly exposed to rain under outdoor culture. Rain shelter facility can be an alternative method to prevent the cracking and disease of grape, but it also has some limitations in practical usages. We designed rain shelter facility which can completely shut out the rain and ventilate naturally, and it was upgraded to meet the standards of disaster prevention against snow and wind load. The newly developed rain shelter has two-story roof structure, and the $2^{nd}$ floor roof was equipped over $1^{st}$ floor roof at a distance of 40cm. For natural ventilation and water proof, the upper roof protruded about 50cm from the ridge of a $1^{st}$ floor roof. The various tests were carried to examine such as grape quality, brown spot and fruit cracking of Campbell Early under the conventional and the newly developed rain shelter facility which was built about $100{\ss}{\check{S}}$. In comparison of temperature between the conventional and the newly developed rain shelter facility when outside temperature was more than $34^{\circ}C$, the inside temperature was recorded as $40.7^{\circ}C$ and $37.4^{\circ}C$, respectively. There was no significant difference between the two facilities when outside was below $32^{\circ}C$ The quality such as soluble solids and marketable fruit was increased, and fruit cracking of grapes and vine leaf spot also drastically diminished in the newly developed rain shelter.

노지 포도재배는 강우에 직접 노출되어 열과와 병 발생이 많아진다. 그래서 도입된 것이 간이 비가림 재배이지만, 이것 역시 열과와 병 발생을 예방하는 데는 한계가 있다. 따라서 간이비가림 시설의 문제점을 보완하기 위해서 완전하게 강우를 차단하면서 자연적인 환기가 가능한 비가림 시설을 개발하여 적설하중과 풍하중을 내재 해 규격에 맞추었다. 개선된 비가림 시설의 특성을 검증하기 위해서 $100m^2$ 규모의 시설을 설치한 다음 관행 비가림 시설과 시설 내외부 온도 분포와 그에 따른 포도캠벨얼리의 품질, 갈반병 발생 및 열과율 등을 조사하여 비교하였다. 관행 비가림 시설과 개선된 비가림 시설의 온도 조사결과 외기온이 $34^{\circ}C$ 이상일 경우 시설 내부온도가 관행 최대 $40.7^{\circ}C$, 개선 시설은 $37.4^{\circ}C$로 측정되어 개선 시설이 3정도 낮았고, $32^{\circ}C$ 이하에서는 관행과 개선 시설 간에 온도 차이가 없었다. 과실 품질은 개선된 비가림 시설이 관행 비가림 시설보다 당도와 상품과율이 높았다. 개선된 비가림 시설이 관행에 비해 열과율과 갈반병 발병율이 현저히 낮았다.

Keywords

References

  1. Fei Du, Weiping Deng, Min Yang, Haining Wang, Ruzhi Mao, Jianhui Shao, Jinxiang Fan, Yunde Chen, Yang Fu, Chengyun Li, Xiahong He, Youyong Zhu, Shusheng Zhu. 2015. Protecting grapevines from rainfall in rainy conditions reduces disease severity and enhances profitability. Crop Protection. 67:261-268. https://doi.org/10.1016/j.cropro.2014.10.024
  2. Gwon, G.H., S.H. Oh, H.K. Yoon, J.S. Seo and J.T. Jang, 2005. Study on grape fruit cracking for the establishment of prevention system. National R&D Reports of RDA. pp. 74 (in Korean).
  3. Jung S.M., K.S. Park, J.C. Nam, E.S. Kim, S.C. D.H. Hong, Cho, Y.S. Park, S.J. Park, S.W. Nam, J.W. Lee, S.H. Jeon and S.Y. Lee. 2014. Improving cultivation models for grapevine (Heukgoosul, Heukboseok, Cheongsoo, Cheonghyang, Jarang, Campbell Early, Koyho, MBA) under rain shelter. National R&D Reports of RDA. pp. 58 (in Korean).
  4. Kim B.S., Y.K. Na, K.C. Cho, I.T. Hwang and J.G. Kim 2006. Effect of Irrigation methods on fruit cracking of tetraploid grape in protected cultivation. J. of Bio-environment Control. 15(I):186-191 (in Korean).
  5. Kim, S.H., I.M.Choi, J.G. Cho, J. H. Han, J. H. Hwang, H. H. Seo and H. K. Yun, 2011. Correlation analysis between fruit quality of 'Campbell early' grapes and climatic factors. Korean Journal of Agricultural and Forest Meteorology. 13:93-100 (in Korean). https://doi.org/10.5532/KJAFM.2011.13.2.093
  6. KREI(Korea Rural Economic Institute). 2015. Agricultural outlook 2015 Korea. p. 207-213 (in Korean).
  7. Lee J.C., J.H. Kim, C.J. Yun and M.D. Cho, 1999. Studies on standardization in cultivation under rain shelter for the improvement of grape fruit quality. National R&D Reports of Ministry of Agriculture and Forestry pp. 123 (in Korean).
  8. Park, J.H., K.S. Han, J.S. Lee, S.T. Seo, H.I. Jang and H.T. Kim 2004. Occurrence tendency and decrease of fruits brix according to increasing grapevine leaf spot disease caused by Pseudocercospora vitis.Research in Plant Disease 10:341-344 (in Korean). https://doi.org/10.5423/RPD.2004.10.4.341
  9. Park, J. S., 1993. Plant pathology. New edition. Hyangmunsa. pp. 506 (in Korean).
  10. Rual Development Administration(RDA). 2012. Research and investigation analysis Standard of the agricultural science and technology. p.619-656 (in Korean).
  11. Seo, H.H., and H.S. Park, 2003: Fruit quality of 'Tsugaru' apples influenced by meteorological elements. Korean Journal of Agricultural and Forest Meteorology 5:218-225 (in Korean).
  12. Son I.C. and D.I. Kim 2010. Effects of bagging periods on pericarp characteristics and berry cracking in 'Kyoho' grape (Vitis sp.). Korean Journal of Horticultural. Science & Technology. 28:381-386 (in Korean).
  13. Yum, S.H. S.J. Park, Y.C. Lee, H.J. Kim, H. Chun, S.Y. Lee, Y.I. Kang, and N.G. Yoon, 2004. The environment and fruit quality according to dimensions in a rain-protecting tree structure for grapevine cultivation. Proceedings of the Korean Society for Bio-Environment Control Conference 2004 Nov.:72-75 (in Korean).
  14. Yum, S.H., S.H. Lee, K.W. Kim, N.G. Yun, H.J. Kim, H. Chun, S.Y. Lee, S.J. Park and M.K. Park, 2007. A study on determination of the optimized specification of pipes in rain-sheltering greenhouse for a large-grain grapevine cultivation. Proceedings of the Korean Society for Bio-Environment Control Conference 2007 May. 01:72-75 (in Korean).