论文标题
关于航空农业的根和液滴之间相互作用的实验观察
Experimental observations on interaction between a root and droplets in relation to aeroponic agriculture
论文作者
论文摘要
自动化或无土壤农业是一种相对较新的实践类型,在没有土壤的情况下种植植物,而通过雾化的喷雾系统向悬浮根提供了富含养分的水。喷出喷嘴易于使用(主要是)所需作物(或植物)生产的水(主要)供水(和肥料)。我们通过测量(a)喷雾漂移,(b)喷雾高度,(c)最大喷雾角,(d)喷雾宽度和(e)液滴尺寸,通过测量其(a)喷雾漂移,(b)喷雾漂移,(b)喷雾剂的(a),表征在重力上的喷嘴表征。在不同的入口压力下进行实验,并通过处理使用光学(或高速)摄像机捕获的图像来获得上述大多数参数,有时沿高功率激光源点亮的平面。我们还使用独特的聚乙烯海绵方法研究了不同垂直高度和不同水平平面的喷雾(或喷气式)行为。我们使用此方法研究了质量流量,吸收率和液滴尺寸动力学(作为时间和压力的函数)。在更简单和不透水的表面上,还研究了水滴/液滴相互作用。我们认为,这项研究可以推断到其他喷嘴(尤其是喷雾剂)以获得类似的特征参数。因此,这项研究对于为给定的顶篷选择所需的喷雾系统至关重要,并且预计在受控农业实践中(例如在温室和公寓室)中有所使用。
Aeroponics or Soil-less agriculture is a relatively new and recent type of practice, where plants are grown without soil while nutrient-rich water is provided via an atomized spray system to the suspended roots. Spray nozzles are easy-to-use in supplying water (and fertilizers) to (mainly) the roots and root hairs of the desired crop (or plant) for production. We characterize a spray nozzle delivering water vertically above against the gravity by measuring, experimentally, its (a) spray drift, (b) spray height, (c) maximum spray angle, (d) spray width, and (e) droplets sizes. Experiments were carried out at different inlet pressures and a majority of the above mentioned parameters were obtained by processing the images captured using optical (or high speed) camera, sometimes along a plane lighted by a high-power laser source. We also studied the spray (or jet) behaviour at different vertical heights and different horizontal planes using a unique polythene sponge method. We studied the mass flow rate, the absorption rate, and droplet size dynamics (as a function of time and pressure) using this method. The water drop/droplet interaction was also studied in the case of simpler porous and impervious surfaces as well. We believe that this study can be extrapolated to other nozzles (especially sprays) to obtain similar characteristic parameters. This study, hence, is critical in selecting the desired spray system for a given canopy and is also expected to be of some use in controlled agricultural practices such as in greenhouses and apartment rooms.