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BIM-Integrated Construction Safety Risk Assessment at the Design Stage of Building Projects Indah Suci Rahayu
Jurnal KaLIBRASI - Karya Lintas Ilmu Bidang Rekayasa Arsitektur, Sipil, Industri Vol. 5 No. 2 (2022): KaLIBRASI September 2022
Publisher : Fakultas Teknik Universitas Borobudur

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (587.634 KB) | DOI: 10.37721/kalibrasi.v5i2.1121

Abstract

The construction industry has a higher rate of work accidents than other industries. As a proactive approach to safety management, Construction Hazard Prevention through Design (CHPtD) can significantly eliminate or reduce construction safety risks. This method consists of three indices namely Likelihood, Consequence and Exposure. Likelihood and consequence index of 19 construction jobs using 2018 injury and death data. Only 4 types of work are shown in this case. The findings conclude that the index of relative mortality frequency (RFI) of roofers (47-2180) and the index of relative frequency of day-going injuries (RDAIFI) of construction workers (47-2060) are relatively high. In addition, construction equipment operators relative day-to-day injury severity (RDAIS) rates (47–2070) are 3.3 times that of roof operators (47–2180). These results validate that using plug-ins in Revit can quickly calculate the construction safety risks of various design plans in a very short time and show that the plug-ins developed have very good engineering application value.
Plumbing Work in Green Market Based on Value Engineering Indah Suci Rahayu
Jurnal KaLIBRASI - Karya Lintas Ilmu Bidang Rekayasa Arsitektur, Sipil, Industri Vol. 6 No. 1 (2023): KaLIBRASI March 2023
Publisher : Fakultas Teknik Universitas Borobudur

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.37721/kalibrasi.v6i1.1122

Abstract

The green traditional market concept begins with the structure of the market section. This concept consists of various ideas that make markets environmentally friendly, these ideas include composting buildings, open gardens, bathrooms/toilets, parking areas and planting in the market. Understanding Value Engineering in general is a management technique that uses a systematic approach, creative and organized effort that is directed to analyze the function of a system with the aim of achieving the required function at the lowest possible cost. However, this remains within the established technical functions and limits. The method used is value engineering with the aim of understanding and identifying obstacles in the application of value engineering and lean six sigma methods in dirty water installation work in market buildings with the concept of green building. The research instruments were arranged in the form of variables which were formulated in the form of questions (questionnaires). Cost efficiency was obtained in clean and dirty water installation work of a savings of 9.8%.
Peningkatan Kualitas Menggunakan Pendekatan Lean Six Sigma Untuk Konstruksi Gedung Di Indonesia Indah Suci Rahayu; Humiras Hardi Purba; Budi Susetyo
Konstruksia Vol 14, No 2 (2023): Jurnal Konstruksia Vol 14 No. 2 Tahun 2023
Publisher : Universitas Muhammadiyah Jakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24853/jk.14.2.73-82

Abstract

Indonesia melalui kota Jakarta sedang gencar dibangun. Berdasarkan survei konsultan konstruksi, pembangunan merupakan langkah terbaik untuk memenuhi kualitas hidup masyarakat luas. Kinerja pembangunan harus meningkatkan kualitas baik sarana maupun prasarana. Tujuan dari penelitian ini adalah untuk menganalisis faktor dan pengaruh evaluasi metode lean six sigma pada pekerjaan gedung perkantoran. Diperlukan metode lean six sigma yang digunakan untuk menganalisis fungsi-fungsi yang dibutuhkan dengan kinerja yang berkualitas untuk pekerjaan gedung perkantoran. Metode Structural Equation Modeling-Partial Least Square (SEM-PLS) dianalisis menggunakan software SmartPls untuk menganalisis faktor-faktor yang mempengaruhi kualitas dan waktu. Hasil dari penelitian ini adalah faktor-faktor yang terjadi pada pekerjaan suprastruktur, material, tenaga kerja, dan manajemen proyek: Y1 =0,529X1 + 0,073X2 - 0,231X3 + 0,072X4 + 0,017X5 - 0,036X6 + 0,125X7 danY2= -0,038X1 + 0,001X2 - 0,199X3 - 0,024X4 + 0,390X5 + 0,357X6 - 0,108X7. Penilaian penerapan Lean Six Sigma dari nilai Non-Conformance Report (NCR) sebesar 181, data sigma untuk cacat yang dihasilkan oleh pekerjaan suprastruktur dengan nilai DPMO sebesar 6.725,624 atau setara dengan 3,99 sigma.