Low Carbon Concept of Sruni Village through The System of Renewable Energy

E. Setyowati, Nashrullah Dahlan Lubis, Subrata Aditama Kittie A.U, Agitta Raras Putri
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引用次数: 1

Abstract

Indonesia is the fourth most populous country in the world. The highest population density exists in urban areas and gradually becomes lower in periphery or rural. Therefore the city in Indonesia often looks slum because of over density. The village is the smallest part of a city. In crowded cities there are often slum villages. This paper highlights a model of slum villages in Wonosobo, Sruni village, and solutions to transform socio-cultural communities through renewable energy design based on low carbon concept. The method used is quantitative method based on demographic data of Sruni village, Wonosobo. Based on data and analysis, it is found that renewable energy that can be applied in Sruni village are sanitation, drainage and water waste management, solid waste, rain water harvesting, water wheel and solar panel energy. At the end of the discussion, it is concluded that there are needs to be re-densification or verticalization of the house, in order to obtain more public green open spaces. Meanwhile, based on quantitative analysis, Sruni village needs rain water harvesting system, additional 1 unit of communal Sewage Treatment Plant (STP) serving 80-100 households gray and black water, and 1 units of water wheels to accomodate electricity need of four inhabitant RTs in Sruni village .
从可再生能源系统看斯如尼村的低碳理念
印度尼西亚是世界上人口第四多的国家。人口密度在城市地区最高,在外围或农村逐渐降低。因此,由于人口密度过高,印尼的城市经常看起来像贫民窟。村庄是城市最小的部分。在拥挤的城市里往往有贫民窟。本文重点介绍了Sruni村Wonosobo贫民窟村庄的一个模型,以及通过基于低碳概念的可再生能源设计改造社会文化社区的解决方案。方法采用定量分析方法,以沃诺索博斯润尼村人口统计资料为基础。根据数据和分析,可以在Sruni村应用的可再生能源是卫生、排水和水废物管理、固体废物、雨水收集、水轮和太阳能电池板能源。在讨论结束时,得出的结论是需要对房屋进行重新致密化或垂直化,以获得更多的公共绿色开放空间。同时,根据定量分析,Sruni村需要雨水收集系统,增加1个公用污水处理厂(STP),为80-100户家庭提供灰水和黑水,以及1个水轮,以满足Sruni村4个居民的电力需求。
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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