Your search found 6 records
1 Pascual, C. M.. 1988. On-farm irrigation method study. Paper presented at the National Workshop on Irrigation Management for Crop Diversification, Ternate, Cavite, Philippines, 5-7 October 1988. 23p.
Farms ; Irrigation systems ; Flood irrigation ; Irrigation practices ; Crops ; Irrigation efficiency / Philippines
(Location: IWMI-HQ Call no: P 167 Record No: H04606)
https://vlibrary.iwmi.org/pdf/H_4606.pdf

2 Pascual, C. M.; Francisco, A. N.; Simbahan, G. C. 1988. Optimum farm ditch density for irrigating diversified crops. Paper presented at the National Workshop on Irrigation Management for Crop Diversification, Ternate, Cavite, Philippines, 5-7 October 1988. 18p.
Diversification ; Crops ; Irrigation design ; Tertiary level irrigation ; Regression analysis / Philippines
(Location: IWMI-HQ Call no: P 168 Record No: H04601)
https://vlibrary.iwmi.org/pdf/H_4601.pdf

3 Pascual, C. M.; Francisco, A. N.; Simbahan, G. C. 1989. Optimum farm ditch density for irrigated diversified crops. In Valera, A. (Ed.) Crop diversification in irrigated agriculture in the Philippines: Proceedings of a national workshop, Puerto Azul Beach and Country Club, Ternate Centre, The Philippines, 5-9 October 1989. pp.75-83.
Irrigated farming ; Diversification ; Crops ; Optimization ; Rice ; Models / Philippines
(Location: IWMI-HQ Call no: IIMI 631.7.2 G732 VAL Record No: H006100)
https://publications.iwmi.org/pdf/H006100.pdf
(0.15 MB)
Regression models were developed to determine the optimum farm ditch density for irrigating diversified crops. Size of turnover service area, shape, factor, orientation of main farm ditches, average farm size and farms with direct access to farm ditches were the physical factors that exhibited significant effects on the length of farm ditches. Optimum farm ditch density in two study sites had an average of 100 meter/ha regardless of size of turnout service area. Since models are subjective, physical and field observations have to be employed. Preliminary results of this study indicate the need for providing on-farm facilities if dry season diversified cropping is to be undertaken in gravity-type-rice-based irrigation systems.

4 Pascual, C. M.. 1989. On-farm irrigation method at the Loag Vintar River Irrigation System. In Valera, A. (Ed.) Crop diversification in irrigated agriculture in the Philippines: Proceedings of a national workshop, Puerto Azul Beach and Country Club, Ternate Centre, The Philippines, 5-9 October 1989. pp.84-92.
Irrigation systems ; River basins ; Regression analysis / Philippines
(Location: IWMI-HQ Call no: IIMI 631.7.2 G732 VAL Record No: H006101)
https://publications.iwmi.org/pdf/H006101.pdf
(0.15 MB)

5 Magliano, A. R.; Cablayan, D. M.; Undan, R. C.; Moya, T. B.; Pascual, C. M.. 1990. Technical consideration for rice-based farming systems: Main irrigation system management. In Intercountry workshop on irrigation management for rice-based farming systems, Colombo, Sri Lanka, 12-14 November 1990. 15p.
Irrigation systems ; Rice ; Farming systems / Philippines
(Location: IWMI-HQ Call no: IIMI 631.7.2 G000 INT Record No: H08066)

6 Maglinao, A. R.; Cablayan, D. M.; Undan, R. C.; Moya, T. B.; Pascual, C. M.. 1993. Main irrigation system management for rice-based farming systems in the Philippines. In Miranda, S. M.; Maglinao, A. R. (Eds.), Irrigation management for rice-based farming systems in Bangladesh, Indonesia and the Philippines: Proceedings of the Tri-Country Workshop held in Colombo, Sri Lanka, 12-14 November 1990. Colombo, Sri Lanka: IIMI. pp.59-97.
Irrigation systems ; Irrigation management ; Rice ; Farming systems ; Crop production / Philippines
(Location: IWMI-HQ Call no: IIMI 631.7.8 G570 MIR Record No: H013404)
https://publications.iwmi.org/pdf/H013404.pdf
(1.37 MB)

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