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利用 AquaCrop 模型模拟水稻的耐盐产量响应。

Simulating yield response of rice to salinity stress with the AquaCrop model.

机构信息

Institute of Water and Flood Management, Bangladesh University of Engineering and Technology, Dhaka-1000, Bangladesh.

出版信息

Environ Sci Process Impacts. 2015 Jun;17(6):1118-26. doi: 10.1039/c5em00095e. Epub 2015 Apr 13.

Abstract

The FAO AquaCrop model has been widely applied throughout the world to simulate crop responses to deficit water applications. However, its application to saline conditions is not yet reported, though saline soils are common in coastal areas. In this study, we parameterized and tested AquaCrop to simulate rice yield under different salinity regimes. The data and information required in the model were collected through a field experiment at the Bangladesh Agricultural Research Institute, Gazipur. The experiment was conducted with the BRRI Dhan28, a popular boro rice variety in Bangladesh, with five levels of saline water irrigation, three replicates for each level. In addition, field monitoring was carried out at Satkhira in the southwest coastal region of Bangladesh to collect data and information based on farmers' practices and to further validate the model. The results indicated that the AquaCrop model with most of its default parameters could replicate the variation of rice yield with the variation of salinity reasonably well. The root mean square error and mean absolute error of the model yield were only 0.12 t per ha and 0.03 t per ha, respectively. The crop response versus soil salinity stress curve was found to be convex in shape with a lower threshold of 2 dS m(-1), an upper threshold of 10 dS m(-1) and a shape factor of 2.4. As the crop production system in the coastal belt of Bangladesh has become vulnerable to climate induced sea-level rise and the consequent increase in water and soil salinity, the AquaCrop would be a useful tool in assessing the potential impact of these future changes as well as other climatic parameters on rice yield in the coastal region.

摘要

粮农组织 AquaCrop 模型已在世界各地广泛应用,用于模拟作物对亏缺灌溉水的响应。然而,尽管沿海地区普遍存在盐碱土,但该模型在盐碱条件下的应用尚未见报道。本研究旨在对 AquaCrop 进行参数化和测试,以模拟不同盐度条件下水稻的产量。模型所需的数据和信息是通过在孟加拉国农业研究院 Gazipur 的田间试验收集的。该试验采用了孟加拉国广受欢迎的籼稻品种 BRRI Dhan28,进行了 5 个盐水平灌溉和 3 个重复的试验。此外,在孟加拉国西南部沿海地区的 Satkhira 进行了田间监测,以根据农民的实践收集数据和信息,并进一步验证模型。结果表明,大多数默认参数的 AquaCrop 模型可以合理地模拟盐度变化对水稻产量的影响。模型产量的均方根误差和平均绝对误差仅分别为 0.12 吨/公顷和 0.03 吨/公顷。发现作物对土壤盐胁迫的响应曲线呈凸形,下限为 2 dS m(-1),上限为 10 dS m(-1),形状因子为 2.4。由于孟加拉国沿海地区的作物生产系统对气候引起的海平面上升和随之而来的水和土壤盐分增加变得脆弱,AquaCrop 将成为评估这些未来变化以及其他气候参数对沿海地区水稻产量潜在影响的有用工具。

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