Abstract

Background. Low-pressure water spray by impact on a hard surface is convenient for crystallization of water on vertical surfaces and horizontal nozzles with icicles. In the previous works of the author, it was noticed the effect of an impact surface roughness on spray flow hydrodynamics, therefore, in this paper we investigate the effect of surface topography on the dispersion impact characteristics. The direction of drops movement along and across significantly affects the scattering drops parameters on the ribbed surfaces. This fact can be used in the irrigation of surfaces. Objective. The work aims to investigate the effect of an impact surface topography and shape on the spray droplets flow hydrodynamics after the impact. Methods. The experiments were conducted at a constant geometric height in the vessel 250–260 w.c. with the distance change from the impact surface to the hole from which water jet discharged at a cost in the range of 0.46–of 2.75 g/s. The height and the maximum radius of the droplets dispersion after impact were measured according to the evidence of the drops on a paper. Results. We carried out the experimental studies of the drops dispersion characteristics: of the primary drops (after the discharge from small diameter holes) and of the secondary ones – after hitting the ribbed surfaces (flat, round, a roof), the convex and concave segment surfaces of sphere and cylinder. The drops scatter in 1.5–3 times further in the direction along the rib than in the perpendicular direction. We see farthest flying drops when using the ribbed roof. Impact on the surface with small ribs at low water flow rates and low heights of the jet fall does not give the desired results. The maximal height of the drops rising upward across the ribs is at a smaller distance from the impact center. The linear dependence of water flow on the pressure for the hole of1.6 mm diameter in the investigated range of water pressures was confirmed. Conclusions. Under nozzles irrigation, there is a possibility of atomized flow distribution in the directions that allows ensuring the devices design requirements, for example, with pipes irrigation the ribs are placed along the edges of the pipes. Adjacent holes for the water flow are placed at a distance less than the maximum radius of the secondary droplets dispersion, given the lower irrigation density with increasing radius. If the vertical surfaces are irrigated, the distance from the impact center to the surface is selected depending on the irrigation density requirements and on the irrigation elementary point over the impact surface.

Highlights

  • Low-pressure water spray by impact on a hard surface is convenient for crystallization of water on vertical surfaces and horizontal nozzles with icicles

  • Висота піднімання крапель угору за слідами на вертикальній площині для поверхні No 4 при G 0,46 г/с залежно від відстані В від точки удару по горизонталі до площини

  • Design of ice-free nanostructured surfaces based on repulsion of impacting water droplets / L

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Summary

Background

Low-pressure water spray by impact on a hard surface is convenient for crystallization of water on vertical surfaces and horizontal nozzles with icicles. Impact on the surface with small ribs at low water flow rates and low heights of the jet fall does not give the desired results. Якщо виконання сопла форсунки дуже малого діаметра є технологічно складним, у багатьох випадках, коли немає особливих вимог до однорідності крапель, може бути використаний гравітаційний чи штучний (тиском із водогону) метод диспергації при невеликому напорі рідини, зокрема до 300—400 мм в.ст. При використанні теплоти кристалізації води для підігріву повітря в системах вентиляції, опалення та в теплових насосах, коли її замерзання відбувається в бурульках і плівках, подача води повинна бути невеликою [1, 2]. Тому зазначений напір можна отримати використанням гравітації при підтриманні постійного рівня в резервуарі, що дає змогу забезпечити автономність систем підігріву повітря теплотою кристалізації води і виробництва льоду.

Попередні роботи
Дослідна установка і методика проведення вимірювань
Розпилення ударом об ребристі поверхні
Розпилення ударом об округлі предмети
Список літератури
ВНИЗ ЧЕРЕЗ МАЛОЕ ОТВЕРСТИЕ

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