Prasetyaningtyas, Matahari (2022) Analisis Risiko Kecelakaan Kerja Dengan Menggunakan Task Deman Assessment (TDA) Pada Proyek Jembatan Sidorejo Kawasan Industri Terpadu Batang. Other thesis, Institut Teknologi Sepuluh Nopember.
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Abstract
Pekerjaan konstruksi merupakan salah satu pekerjaan yang berisiko tinggi terutama pada tahap pelaksanaan pekerjaan konstruksi. Sektor konstruksi merupakan penyumbang angka kecelakaan kerja tinggi di Indonesia. Kecelakaan kerja pada proyek konstruksi merupakan risiko yang dapat terjadi kapanpun dan tidak bisa dihilangkan sepenuhnya. Kecelakaan kerja memiliki dampak dari ringan hingga dampak serius, seperti kematian. Risiko kecelakaan kerja yang tinggi menyebabkan perlunya analisis risiko kecelakaan kerja agar dapat dilakukan upaya pengendalian kecelakaan kerja. Analisis risiko pada penelitian ini dilakukan pada Proyek Jembatan Sidorejo Kawasan Industri Terpadu Batang. Proyek Jembatan Sidorejo Kawasan Industri Terpadu Batang dibangun di atas jalan tol Semarang-Batang dengan arus lalu lintas yang padat dan melibatkan sumber daya manusia yang banyak. Hal itu dapat memicu terjadinya risiko kecelakaan kerja. Metode yang digunakan alam penelitian ini adalah TDA (Task Demand Assessment). Identifikasi risiko dan sumber penyebab terjadinya kecelakaan kerja dilakukan berdasarkan penelitian sebelumnya dan divalidasi melalui wawancara. Selanjutnya TDA digunakan untuk mendapatkan variabel risiko dengan nilai risiko tertinggi. Variabel risiko dengan skala risiko tinggi didapatkan, yaitu pekerja jatuh dari ketinggian ketika pekerjaan erection girder dan pekerja tertimpa mobile launcher atau material girder ambruk ketika pekerjaan erection girder. Upaya pengendalian risiko untuk meminimalisir kecelakaan kerja adalah penutupan lalu lintas ketika pekerjaan erection girder dilakukan, pembatasan pekerja, penambahan scaffolding, dan penundaan pekerjaan ketika cuaca tidak mendukung.
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Construction work is one of the high-risk jobs, especially at the stage of implementation of construction work. The construction sector is a contributor to the high number of work accidents in Indonesia. Work accidents on construction projects are risks that can occur at any time and cannot be completely eliminated. Work accidents have an impact from minor to serious impacts, such as death. The high risk of work accidents makes it necessary to analyze the risk of work accidents and the factors that cause work accidents so that risk control can be accomplished. The risk analysis in this study was accomplished at the Integrated Industrial Area Bridge Batang. The Sidorejo Bridge Integrated Industrial Area Batang was built on the Semarang-Batang toll road with heavy traffic flow and involves a lot of human resources. This can trigger the risk of work accident. The method used in this research is the TDA (Task Demand Assessment). The identification of risks and their causes are based on previous research and validated through interviews. Furthermore, TDA is used to obtain the risk variable with the highest risk value. The risk variable with the high risk scale was obtained, namely the worker fell from a height when working on the erection girder and workers are hit by a mobile launcher or girder collapses when working on the erection girder. Risk control to minimize work accidents are the installation of safety nets, traffic closures when erection girder work is carried out, worker restrictions, addition of scaffolding, and postponement of work when the weather is not favorable.
| Item Type: | Thesis (Other) |
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| Uncontrolled Keywords: | Analisis Risiko, Kecelakaan Kerja, Task Demand Assessment (TDA), Risk analysis, Task Demand Assessment (TDA), Work Accident |
| Subjects: | H Social Sciences > HD Industries. Land use. Labor > HD61 Risk Management |
| Divisions: | Faculty of Civil, Planning, and Geo Engineering (CIVPLAN) > Civil Engineering > 22201-(S1) Undergraduate Thesis |
| Depositing User: | Mr. Marsudiyana - |
| Date Deposited: | 19 Jan 2026 00:53 |
| Last Modified: | 19 Jan 2026 00:53 |
| URI: | http://repository.its.ac.id/id/eprint/129684 |
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