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Prediction of Tomato Momotarou Haruka flower-clusters occurrence using cumulative heat unit and cumulative solar radiation.

発表形態:
原著論文
主要業績:
主要業績
単著・共著:
共著
発表年月:
2021年
DOI:
10.1016/j.scienta.2021.110803
会議属性:
指定なし
査読:
有り
リンク情報:

日本語フィールド

著者:
Cong Chi DOAN and Muenhiro TANAKA
題名:
Prediction of Tomato Momotarou Haruka flower-clusters occurrence using cumulative heat unit and cumulative solar radiation.
発表情報:
Journal of the Japanese Society of Agriculture Machinery and Food Engineers 巻: 83 ページ: 87-94
キーワード:
tomato, Momotaro Haruka, flower-clusters occurrence, cumulative heat unit, solar radiation, mathematical models
概要:
The relationship between the occurrence of tomato flower-clusters and environmental factors in greenhouse cultivation was examined and the mathematical models for the duration of flower-clusters occurrence (DFO) were established. Tomato (Solanum lycopersicum L. Var. Culta. Momotarou Haruka) was cultivated by medium culture from September 2018 to May 2019. During cultivation, stem elongation speed gradually increased to 25.68 cm/week after 58 days of transplanting. DFO took 5 to 18 days, while cumulative heat unit (CHU) and cumulative solar radiation (CSR) ranged from 86.5 to 279.1 ℃. day, and 31.6 to 230MJ/m2, respectively. There was a strong significant relationship between CHU and DFO (r2=0.93, RMSE=0.73). Multiple regression analyses for DFO using CHU and CSR as explanatory variables indicated the high accuracy of estimation (r2=0.94, RMSE=0.71).
抄録:

英語フィールド

Author:
Cong Chi DOAN and Muenhiro TANAKA
Title:
Prediction of Tomato Momotarou Haruka flower-clusters occurrence using cumulative heat unit and cumulative solar radiation.
Announcement information:
Journal of the Japanese Society of Agriculture Machinery and Food Engineers Vol: 83 Page: 87-94
Keyword:
tomato, Momotaro Haruka, flower-clusters occurrence, cumulative heat unit, solar radiation, mathematical models
An abstract:
The relationship between the occurrence of tomato flower-clusters and environmental factors in greenhouse cultivation was examined and the mathematical models for the duration of flower-clusters occurrence (DFO) were established. Tomato (Solanum lycopersicum L. Var. Culta. Momotarou Haruka) was cultivated by medium culture from September 2018 to May 2019. During cultivation, stem elongation speed gradually increased to 25.68 cm/week after 58 days of transplanting. DFO took 5 to 18 days, while cumulative heat unit (CHU) and cumulative solar radiation (CSR) ranged from 86.5 to 279.1 ℃. day, and 31.6 to 230MJ/m2, respectively. There was a strong significant relationship between CHU and DFO (r2=0.93, RMSE=0.73). Multiple regression analyses for DFO using CHU and CSR as explanatory variables indicated the high accuracy of estimation (r2=0.94, RMSE=0.71).


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