Penggunaan Resistivity Meter Berbasis Boost converter Untuk Identifikasi Batuan Dasar Pancang Pondasi Bangunan di Pulau Tarakan

Abdul Muis Prasetia, Rachmad Aidil, Rahmat Faizal
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引用次数: 1

Abstract

The strength of the building foundation is strongly influenced by the type of soil layer that used as a foundation laying place. The higher the building to be built, the stronger the foundation to be made. This research was conducted to identify the bedrock of the existing soil layer in Tarakan City by using a boost converter-based resistivity meter with aim to minimize the impact of building damage caused by soil structure. Boost converter is a step-up DC-DC converter. Boost converter is able to produce an output voltage value greater than the input voltage without the need of transformer. The boost converter design is started by determining parameter based on the needs of resistivity meter. Resistivity data acquisition has been conducted at several points in Universitas Borneo Tarakan by using the Schlumberger configuration. Data processing has been done by using a matching curve. The results of the interpretation of the processing of geoelectric data are 4 soil layers with a depth of 12 meters. In the geoelectric estimation investigation area has a type of resistance between 6.08 -169.79 Ohm-meters. The layer that is expected to act as a bedrock is sand at a depth of 13.81 meters and sandstone sand at a depth of ± 8 meters, with these conditions, the construction of a foundation for the construction of lightweight buildings can already be built
基于Boost转换器的电阻电表的使用,以确定岛上建筑地基的地基
建筑物地基的强度受地基所采用的土层类型的影响很大。要建的楼越高,基础就越牢固。本研究利用升压变换器电阻率计,确定达拉干市现有土层的基岩,以减少土壤结构对建筑物破坏的影响。升压变换器是一种升压式DC-DC变换器。升压变换器不需要变压器就能产生大于输入电压的输出电压值。根据电阻率计的需要,确定升压变换器的参数,开始升压变换器的设计。利用斯伦贝谢的配置,在Universitas Borneo Tarakan的几个点进行了电阻率数据采集。采用匹配曲线对数据进行处理。地电资料处理的解释结果为4层土层,深度为12米。地电估算调查区电阻类型在6.08 ~ 169.79欧姆-米之间。预计作为基岩的层是深度为13.81米的砂土和深度为±8米的砂岩砂,有了这些条件,就可以建造轻型建筑的基础
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