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首页> 外文期刊>Journal of Horticulture and Forestry >Development of a low-cost tensiometer driven irrigation control unit and evaluation of its suitability for irrigation of lychee trees in the uplands of Northern Thailand in a participatory approach
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Development of a low-cost tensiometer driven irrigation control unit and evaluation of its suitability for irrigation of lychee trees in the uplands of Northern Thailand in a participatory approach

机译:参与式方法开发了低成本的张力计驱动的灌溉控制单元,并评估了其对泰国北部山地荔枝树灌溉的适用性

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In upland areas of Northern Thailand, lychee (Litchi chinensis, Sonn.) is one of the predominant fruit crops. Fruit development takes place during the dry season (January until June). Therefore, high lychee yields can only be obtained under irrigation. As water is an increasingly scarce resource in the hillsides, strategies for more efficient water use are fundamental for a sustainable increase in agricultural production. An Automatic Tensio Control (ATC) unit was developed to use soil matric potential to open and close the inlet valve of a micro-irrigation lateral. In order to test the functioning of the ATC in the field, four different irrigation regimes have been tested in cooperation with local farmers on 10 year old lychee trees on a commercial orchard in Mae Sa Mai, close to Chiang Mai, Thailand. Testing the ATC on station and under field conditions, it has proven its reliability in maintaining a favorable moisture regime in the soil. The irrigated lychee trees responded to ATC irrigation with a higher yield and higher fruit weight compared to the other treatments. ATC works without electric components, so that it can be operated in areas without electricity. Furthermore, it is assembled from cheap and simple materials. Thus, it can be easily copied and adapted to different agro-ecological and socio-economic environments.
机译:在泰国北部的高地地区,荔枝(荔枝(Litchi chinensis,Sonn。))是主要的水果作物之一。果实发育发生在干旱季节(1月至6月)。因此,仅在灌溉下才能获得高荔枝产量。由于山坡上的水资源日益稀缺,因此提高用水效率的策略对于农业生产的可持续增长至关重要。开发了一个自动张力控制(ATC)单元,以利用土壤基质势来打开和关闭微灌支路的进水阀。为了测试ATC在田间的功能,已与当地农民合作在泰国清迈附近湄沙迈商业果园的10年荔枝树上测试了四种不同的灌溉方式。在现场和野外条件下对ATC进行测试,已证明它在保持土壤中良好的水分状况方面具有可靠性。与其他处理相比,灌溉的荔枝树对ATC灌溉的响应更高,产量更高,果实重量更高。 ATC在没有电气组件的情况下工作,因此可以在没有电的区域中操作。此外,它是由廉价和简单的材料组装而成。因此,可以很容易地将其复制并适应不同的农业生态和社会经济环境。

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