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首页> 外文期刊>International Journal of Innovative Research in Science, Engineering and Technology >Crop Water Requirement using Single and Dual Crop Coefficient Approach
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Crop Water Requirement using Single and Dual Crop Coefficient Approach

机译:使用单次和二次作物系数法的作物需水量

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The determination of crop coefficients and reference crop evapotranspiration are important for estimating irrigation water requirements of any crop in order to have better irrigation scheduling and water management. The purpose of this study is to determine the crop water requirement of cauliflower, using single and dual crop coefficient approach using FAO-56 Penman–Monteith Method. Meteorological data like maximum temperature, minimum temperature, relative humidity, sunshine hours and wind speed for Vadodara region are used to determine Reference crop evapotranspiration. Crop Coefficient (Kc) can be utilized as single Kc which is influenced by moderate effect of evaporation and transpiration together. Dual Kc is expressed by soil evaporation coefficient (Ke) and basal crop coefficient (Kcb), separately. Kc values for all growth stages are determined using both approaches. Micro irrigation systems are used to irrigate the fields. Cauliflower water requirements (ETc) are 256 mm and 237 mm for single and dual crop coefficient approach, respectively during the growing season. The study reveals that maximum differences between ETc of single and dual Kc values were observed at initial stage. The dual crop coefficient approach is more precise and it is best for real time irrigation scheduling, for soil water balance computations, and for research studies where effects of every day variations in soil surface wetness and the resulting impacts on daily ETc and the soil water profile are important. Dual crop coefficient approach is best suited for high frequency irrigation systems like micro irrigation systems. These results can be useful for agricultural planning and efficient management of irrigation for cultivation of cauliflower.
机译:作物系数的确定和参考作物的蒸散量对于估算任何作物的灌溉需水量至关重要,以便具有更好的灌溉计划和水管理。本研究的目的是使用单因素和双重作物系数方法(采用FAO-56 Penman-Monteith方法)来确定花椰菜的作物需水量。 Vadodara地区的气象数据(例如最高温度,最低温度,相对湿度,日照时间和风速)用于确定参考作物的蒸散量。作物系数(Kc)可以作为单一Kc使用,受蒸发和蒸腾作用的中等影响。双重Kc分别由土壤蒸发系数(Ke)和基础作物系数(Kcb)表示。使用两种方法都可以确定所有生长阶段的Kc值。微型灌溉系统用于灌溉田地。单季和双季作物系数法的花椰菜需水量(ETc)分别为256毫米和237毫米。研究表明,在初始阶段观察到单个和双重Kc值的ETc的最大差异。双重作物系数法更为精确,最适合于实时灌溉计划,土壤水平衡计算以及研究工作,在这些研究中,土壤表面湿度每天变化的影响及其对每日ETc和土壤水剖面的影响是重要的。双重作物系数方法最适合于高频灌溉系统,例如微灌系统。这些结果可用于农业计划和花椰菜种植灌溉的有效管理。

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