期刊文献+

用负压计拟定滴灌马铃薯灌溉计划的方法研究 被引量:35

Scheduling drip irrigation for potato with tensiometers
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摘要 对马铃薯进行了6个灌水频率处理和5个水势处理的田间滴灌试验。发现在灌水频率为1次/d,土壤水势为-25kPa时,马铃薯的产量最高。试验进一步分析了各处理的土壤水分变化特点,并结合马铃薯的根系分布特征,得出了用以拟定滴灌马铃薯灌溉计划的负压计的埋设方法,提出了用负压计拟定滴灌马铃薯灌溉计划的具体方案。 A field experiment with six irrigating frequency treatments and five soil water potential treatments was conducted for potato under drip irrigation. The results suggest that the tuber yield of potato was the highest when the irrigation frequency was once every day and the targeted soil water potential was-25 kPa. Through the analysis of soil water variations and root system distribution features under these two treatments, the suggestion for tensiometer placement in potato field under drip irrigation was proposed, and the idiographic methods of scheduling drip irrigation with tensiometers was presented.
出处 《干旱地区农业研究》 CSCD 北大核心 2005年第3期58-64,共7页 Agricultural Research in the Arid Areas
基金 国家杰出青年科学基金(40125002) 国家自然科学基金(40071020)
关键词 灌溉计划 负压计 滴灌 马铃薯 灌水频率 土壤水分 irrigation scheduling tensiometer drip irrigation potato
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参考文献12

  • 1Clark G A, Albregts E E, Stanley C D, et al. Water requirements and crop coefficients of drip-irrigated strawberry plants [J]. Transactions of the ASAE, 1996, 39(3): 905-913.
  • 2Shock C C, Feibert Erik B C, Saunders L D. Irrigation criteria for drip-irrigated onions [J]. HortScience, 2000, 35(1): 63-66.
  • 3Wilson C R, Pemberton B M, Ransom L M. The effect of irrigation strategies during tuber initiation on marketable yield and development of common scab disease of potato in Russet Baurbank in Tasmania [J]. Potato Research, 2001, 44: 243-251.
  • 4Coelho E F, Or D. Flow and uptake patterns affecting soil water sensor placement for drip irrigation management [J]. Soil Soc. Am. J., 1996, 60: 1039-1049.
  • 5Haise H R and Hagan R M. Soil, plant and evaporative measurements as criteria for scheduling irrigation [A]. Hagan R M, Haise H R, Edminster T W. Irrigation of Agricultural lands[C]. Wis.: ASA. Madison, 1967. 577-604.
  • 6Phene C J, Howell T A. Soil sensor control of high-frequency irrigation systems [J]. Transactions of the ASAE, 1984, 27(2): 392-396.
  • 7Levin I, Sarig S, Meron M. Tensionmeters location in controlled automated drip irrigation of cotton[A]. ASAE. Proceedings of the 3rd international Drip/Trickle irrigation Congress[C]. 1985.
  • 8Funt R C, Schmittgen M C, Schwab G O. Raised beds and microirrigation influence peach production [J]. HortScience, 1997, 32(4): 677-682.
  • 9Shae J B, Steele D D. Gregor B L. Irrigation scheduling methods for potatoes in the Northern Great Plains [J]. Transactions of the ASAE, 1999, 42(2): 351-360.
  • 10Shalhevet J, Shimshe D, Meir T. Potato Irrigation Reuirements in a Hot Climate using Sprinkler and Drip Method [J]. Agronomy Journal, 1983, 75:13-16.

二级参考文献6

  • 1Meshkat M.Warner R C.Workman S R.Evaporation reduction potential in an undisturbedsoil irrigated with surface drip and sand tube ittigation[J].Transactions of the ASAE,2000,43(1):79-86
  • 2Clark G A.Albregts E E.Stanley C D.et al.Water requirements and crop coefficients of drip-irrigated strawberry plants[J].Transactions of the ASAE,1996,39(3):905—913.
  • 3Shock C C.Feibert E B C,Saunders L D.Irrigation criteria for drip—irrigated onions[J].Hort Science,2000,35(1):63—66.
  • 4Wilson C R,Pemberton B M,Ransom L M.The effect of irrigation strategies during tuber Initiation on marketable yield and development of common scab disease of potato in Russet Baurbank in Tasmania[J].Potato Research.2001,44:243—251.
  • 5Phene C J,Sanders D C.High—frequency trickle irrigation and row spacing effects on yield and quality of potatoes[J].Agron J,1976,68:602—607.
  • 6Kang Yaohu.Wang F,Liu S.Effects of drip irrigation frequency on soil wetting pattern and root distribution of potato in north China plain[A].Proceedings of the 2002 ASAE Annual International Meeting/VX CIGR World Congress.ASAE Paper No:022282.

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