Assessment of Traffic Noise Impact and Noise Barrier Effectiveness in Residential Areas: Case Study of the Kunciran–Cengkareng Toll Road
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The construction of the Kunciran Batu Ceper Cengkareng toll road is part of the construction of the Jakarta Outer Ring Road II. One of the environmental impacts due to the operation of the new toll road is noise from vehicle sounds. This research aims to determine the traffic movement pattern and noise levels that occur in the Banjar Wijaya residential area. Traffic movement observations were carried out on two lanes from 06.00 to 19.00. The noise intensity was obtained using a traffic noise prediction calculation model, namely the CoRTN model and using a Sound Level Meter (SLM) tool. The noise intensity from the noise prediction with the CoRTN model was 51.40 dB (A) during the research, Data from BUJT Kunciran Cengkareng 49.55 dB (A). Noise intensity using the Sound Level Meter tool: during RPL 72.40 dB (A), research 75.18 dB (A). The noise intensity with the CoRTN Model is smaller than the Sound Level Meter tool. The procurement of sound barrier construction adjacent to the Banjar Wijaya residential is appropriate because the noise intensity value at the location is above the noise level standard for housing and settlement areas of 55 dB (A).
Attenborough, K, 1982, Predicted Ground Effect For Highway Noise, Journal of Sound and Vibration 81 (3): 413–423.
https://doi.org/10.1016/0022-460X(82)90249-8
Badan Pengatur Jalan Tol, 2008, Analisa Dampak Lingkungan Hidup Pembangunan Jalan Tol Ruas JORR II.
Baliante, Meylinda, 2020, Analisa Tingkat Kebisingan Lalu Lintas Di Jalan Raya Ditinjau Dari Tingkat Baku Mutu Kebisingan yang diizinkan, Jurnal Sipil Statik Vol.8 No. 2.
Departemen Pekerjaan Umum, 2005, Pd T-16-2005-B, Mitigasi Dampak Kebisingan Akibat Lalu Lintas Jalan.
Departemen Permukiman dan Prasarana Wilayah, 2004, Pd T-10-2004-B, Prediksi Kebisingan Akibat Lalu Lintas.
Department of Transport, 1988, Calculation of Road Traffic Noise, Her Majesty’s Stationery Office, London.
Federal Highway Administration (FHWA). 2000. Highway Noise Barrier Design Handbook.
Lipscomb, D. M. (ed.), 1978). Noise and Audiology. University Park Press, Baltimore.
Louis F. Cohn, 1981. Highway Noise Barriers, Transportation Research Board, Washington DC.
Malkhamah, Siti, 1993, Kecepatan Kendaraan Optimal Yang Menghasilkan Tingkat Kebisingan Minimal, Jurnal Forum Teknik Sipil, Jilid 17, No. gabungan.
Manual Kapasitas Jalan Indonesia (MKJI), 2007.
Menteri Lingkungan Hidup, 1996, Kep-48/MENLH/11/1996, tentang Buku Tingkat Kebisingan.
Oglesby, H Clarkson and R. Gary Hicks, Highway Engineering – Alih bahasa oleh Purwo Setianto, Jakarta, Penerbit Erlangga, 1982.
Peraturan Menteri Kesehatan, 1987, No. 718/MENKES/PER/XI/1987, Kebisingan Yang Berhubungan Dengan Kesehatan.
Peraturan Menteri Perhubungan, 2015, No. 111, Tata Cara Penetapan Batas Kecepatan.
Peraturan Pemerintah, 2015, No. 79, Jaringan Lalu Lintas dan Angkutan Jalan.
Siswanto, 1991, Dampak Kebisingan Terhadap Kesehatan.
Standart Nasional Indonesia, 2009, SNI 7231, Metode Pengukuran Intensitas Kebisingan di Tempat Kerja.
Shukla, Arvind Kumar, 2011, An Approach For Design Of Noise Barriers On Flyover In Urban Areas In India, International Journal for Traffic and Transport Engineering, 1(3): 158 – 167.
Susanti Djalante, 2010. Analisis Tingkat Kebisingan di Jalan Raya yang Menggunakan Alat Pemberi Isyarat Lalu Lintas (APIL), Studi kasus: Simpang Ade Swalayan.
Undang-Undang Republik Indonesia, 2009, No. 22, tentang Lalu Lintas dan Angkutan Jalan.
Warpani, Suwardjoko, 1988, Rekayasa Lalu Lintas. Penerbit ITB, Bandung. ISBN 979-9299-66-7
