农业工程学报
農業工程學報
농업공정학보
2010年
1期
31-35
,共5页
李亮%史海滨%贾锦凤%王长生%刘宏云
李亮%史海濱%賈錦鳳%王長生%劉宏雲
리량%사해빈%가금봉%왕장생%류굉운
灌溉%土壤含水率%盐%运移%HYDRUS-1D模型%荒地
灌溉%土壤含水率%鹽%運移%HYDRUS-1D模型%荒地
관개%토양함수솔%염%운이%HYDRUS-1D모형%황지
irrigation%soil moisture%salts%transport%HYDRUS-1D model%uncultivated land
该文以内蒙古河套灌区为背景展开荒地水盐运移规律研究.在田间试验基础上,分析荒地土壤水盐的运移机理,利用HYDRUS-1D模型对荒地上壤水盐的迁移规律进行了模拟.荒地做为灌区盐分的贮存地,成为灌区水盐平衡的重要调节因素,荒地水盐动态研究对于干旱灌区具有重要意义.结果表明,强蒸发是荒地水盐运移的原动力,5 cm土层EC值上升了66.10%,20 cm土层EC值上升了63.89%.荒地在作物生育期是积盐的过程,在秋浇期是流失盐分的过程.经检验,HYDRUS-1D模型对盐渍化地区荒地水盐在垂直方向运移的模拟具有较高的精度,为区域水盐管理和灌区的可持续发展提供科学依据.
該文以內矇古河套灌區為揹景展開荒地水鹽運移規律研究.在田間試驗基礎上,分析荒地土壤水鹽的運移機理,利用HYDRUS-1D模型對荒地上壤水鹽的遷移規律進行瞭模擬.荒地做為灌區鹽分的貯存地,成為灌區水鹽平衡的重要調節因素,荒地水鹽動態研究對于榦旱灌區具有重要意義.結果錶明,彊蒸髮是荒地水鹽運移的原動力,5 cm土層EC值上升瞭66.10%,20 cm土層EC值上升瞭63.89%.荒地在作物生育期是積鹽的過程,在鞦澆期是流失鹽分的過程.經檢驗,HYDRUS-1D模型對鹽漬化地區荒地水鹽在垂直方嚮運移的模擬具有較高的精度,為區域水鹽管理和灌區的可持續髮展提供科學依據.
해문이내몽고하투관구위배경전개황지수염운이규률연구.재전간시험기출상,분석황지토양수염적운이궤리,이용HYDRUS-1D모형대황지상양수염적천이규률진행료모의.황지주위관구염분적저존지,성위관구수염평형적중요조절인소,황지수염동태연구대우간한관구구유중요의의.결과표명,강증발시황지수염운이적원동력,5 cm토층EC치상승료66.10%,20 cm토층EC치상승료63.89%.황지재작물생육기시적염적과정,재추요기시류실염분적과정.경검험,HYDRUS-1D모형대염지화지구황지수염재수직방향운이적모의구유교고적정도,위구역수염관리화관구적가지속발전제공과학의거.
Water and salt transport was studied in the uncultivated land of Hetao Irrigation District in Inner Mongolia.Based on field experiment, mechanism of water and salt transport of the uncultivated land in the irrigation district was analyzed, and its water and salt transport dynamics were simulated with HYDRUS-1D model. The uncultivated land in the irrigation district had become salt storage area and the important regulator for water and salt balance in the irrigation district, and study on water and salt dynamic in uncultivated land was of significance for uncultivated irrigation district. The results showed that strong evaporation was the driving force for water and salt transport, EC values in soil layers of 5 cm had increased by 66.10%, and EC values in soil layers of 20 cm had increased by 63.89%. The uncultivated land underwent salt accumulating process in crop growing period but salt losing process in autumn irrigation period. Verification using the experiment data indicated that HYDRUS-1D model had a high precision for the simulation of water and salt transport of the uncultivated land in vertical direction. The results can serve as a scientific basis for regional water and salt management and sustainable development of the irrigation districts.