Evaluation of Multi-Function Drainage Channels For Running Water Fish Culture For The Benefit of The Community In Pangururan District

Novdin Manoktong Sianturi
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Abstract

Pangururan Subdistrict in Samosir Regency requires rearranging its open land functions related to the meaning of the environment. From the civil engineering perspective, landslides can occur suddenly during the rainy season without being noticed by the people around the Pangururan sub-district, Samosir Regency. To realize this program, the community can add the function of the drainage channel into a mobile fish pond around the Pangururan Subdistrict, Samosir Regency, which still has a large area of land/settlements to become a running fish pond drainage channel. This can increase residents' income which is beneficial for the community around the drainage canal. In addition, the problem of overflowing water in the rainy season will be minimized. To implement this program, an analysis should be prepared in advance to evaluate the drainage channel that will function as a fish pond around Pangururan District, Samosir Regency. In line with the government's program in promoting and increasing the income of residents, the existing drainage channels should be utilized. Unproductive drainage channels can become productive drainage channels by cultivating freshwater fish along the drainage channel while simultaneously irrigating rice fields. Therefore, a wet section of the plan is made along 1000 meters where the condition of the drainage channel is planned according to the analysis. The depth of the drainage channel for running water fish ponds is 100 to 170 cm and the width of the top side from 100 cm to 150 cm, and the width of the sides below 100 cm. Based on the calculations, the first process that must be done is to first calculate the maximum planned rainfall, calculate the planned discharge, calculate the dimensions of the channel, and flood discharge (designated discharge), where QT = 0.278 x C x I x A = 6.69 m3/s at a speed of plan average flow. The flow velocity of the drainage channel is installed with a sluice so that the average velocity value is = 1/n R2/3 x S1/2 = 3.8 m/s, the cross-sectional area of a fish pond with a wet cross-section A = a x b = 1.904 m2, the cross-sectional area of the wet plan making fish ponds where the channel design discharge for fish ponds is QS = AS x V = 7.23 m3/s and the calculation of sluice gates with a width of 50 cm and a height of 170 cm for fish pond water with Q = (u x b x a  ) x 3 of 10.8 m/s.
邦古鲁兰地区活水养鱼多功能排水渠道的社区效益评价
Samosir摄政区的Pangururan街道需要根据环境的意义重新安排其开放土地的功能。从土木工程的角度来看,滑坡可能会在雨季突然发生,而不会被Pangururan街道周围的人注意到,Samosir Regency。为了实现这一计划,社区可以在Samosir摄政区Pangururan街道周围增加排水渠的功能,使其成为一个流动的鱼塘排水渠,该街道仍然有大片的土地/定居点。这可以增加居民的收入,这对排水渠周围的社区是有益的。此外,雨季溢水的问题将被最小化。为了实施这一计划,应事先准备一份分析报告,以评估将在萨莫西尔摄政区庞古鲁兰区周围用作鱼塘的排水渠。根据政府促进和增加居民收入的计划,应该利用现有的排水渠道。通过沿排水渠养殖淡水鱼,同时灌溉稻田,使非生产性排水渠成为生产性排水渠。因此,根据分析,沿1000米规划排水通道条件的湿段。活水鱼塘排水通道深度为100 ~ 170厘米,上侧宽度为100 ~ 150厘米,100厘米以下两侧宽度为100厘米。根据计算,首先要做的是首先计算最大计划降雨量,计算计划流量,计算渠道尺寸,洪水流量(指定流量),其中QT = 0.278 x C x I x A = 6.69 m3/s,流速为计划平均流量。排水通道的流速是安装闸,平均速度值= 1 / n R2/3 x S1/2 = 3.8 m / s,鱼池的横截面积与湿截面x = a b = 1.904平方米,湿计划使鱼塘的横截面积,鱼塘的通道设计流量Q = x V = 7.23立方米/秒,计算闸门的宽50厘米,高170厘米鱼池水与Q = (u x b) x 3 10.8 m / s。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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