Effect Of Pressure Divider Valve On Hydram Pump Efficiency

Rudy Sutanto, I. B. Alit
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Abstract

Hydram pump is a pump that does not require external energy as the main source of propulsion, to raise water from a low place to a high place. The working mechanism of the hydram pump is to multiply the force of the water blow in the air tube, where there is a change in the kinetic energy of the water into dynamic pressure which causes a water hammer. Dynamic pressure will be forwarded into the air tube which functions as an amplifier. However, the work of this pump cannot pump all the incoming water, so some of the water is pumped and some is discharged through the waste valve. This study aims to determine the effect of using a pressure divider valve on the input power, output power and efficiency of the hydram pump. The hydram pump used in this study was an air tube with a height of 60 cm and a diameter of 3 inches. The height of the waterfall is 2 m from the pump body and the output height is 4 m. The pressure divider valve is installed at a height of 2 m from the pump body. Pressure divider valve tube lengths: 20, 25, 30, 35, 40, 45 and 50 cm. The method used in this research is the experimental method. The results showed that the highest input power was obtained at 5.53 watts when using a tube length of 20 cm and the lowest input power was obtained at 5.32 watts when using a tube length of 50 cm. the highest output power that can be pumped at 1.75 watts occurs when using a tube length of 20 cm. While the lowest output power pumped at 1.56 watts occurred when using a tube length of 50 cm. The highest D'Aubuisson efficiency was obtained at 31.6% when using a tube length of 20 cm. The lowest efficiency was obtained at 29.3% when using a tube length of 50 cm.
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分压阀对液压泵效率的影响
水力泵是一种不需要外部能源作为主要推进源的泵,可将水从低处提升到高处。水力泵的工作机制是将水在空气管中的打击力成倍增加,水的动能在空气管中转变为动态压力,从而产生水锤。动压将进入空气管,起到放大器的作用。然而,该泵的工作无法抽走所有的进水,因此一部分水被抽走,另一部分通过排污阀排出。本研究旨在确定使用分压阀对水力泵输入功率、输出功率和效率的影响。本研究中使用的水力泵是一个高度为 60 厘米、直径为 3 英寸的空气管。分压阀安装在距离泵体 2 米的高度。分压阀管长:20、25、30、35、40、45 和 50 厘米。本研究采用的方法是实验法。结果表明,使用长度为 20 厘米的管子时,输入功率最高,为 5.53 瓦;使用长度为 50 厘米的管子时,输入功率最低,为 5.32 瓦。而使用长度为 50 厘米的电子管时,输出功率最低,为 1.56 瓦。使用长度为 20 厘米的导管时,奥比松效率最高,为 31.6%。使用长度为 50 厘米的导管时,效率最低,为 29.3%。
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