Epf. Eko Yulipriyono
Jurusan Teknik Sipil FT. UNDIP Jl. Prof. Soedarto SH., Tembalang, Semarang 50275

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ANALISIS DAN KOORDINASI SIMPANG KARTINI DAN SIMPANG SIDODADI, SEMARANG Ainul Misbahul Munir; Fariz Hadiyanto; Bambang Riyanto; Epf. Eko Yulipriyono
Jurnal Karya Teknik Sipil Volume 3, Nomor 1, Tahun 2014
Publisher : Departemen Teknik Sipil, Fakultas Teknik Universitas Diponegoro

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Abstract

Volume growth in road traffic is increasing rapidly, especially in the city of Semarang. This makes the occurrence of congestion in the city of Semarang at peak hours, especially at intersections. The problems at the intersection can be overcome by the use of lights at signalized intersections so there is no conflict and clash, but the use of a signal at the intersection also raises its own problems, such as delays and queues occur, especially if there are a lot of adjacent signalized intersections in the road as well as on the road Dr.Cipto Mangunkusumo Semarang who are familiar with the way Dr.Cipto. This study aims to smooth traffic flow on roads Dr.Cipto coordinated way Kartini intersection and Sidodadi intersection. The data was collected by surveying directly at the two junctions at peak hours in the morning, afternoon, and evening. The data is taken from the volume of vehicles that pass through each intersection, signal timing, vehicle travel speed through two intersections, queue length, and geometric intersection. The survey results are then processed using the guidelines Indonesian Highway Capacity Manual (MKJI) in 1997 to obtain the performance of the existing condition, then performed traffic control and compared the results of its performance in optimal condition and scenario conditions. Best performance at each intersection are then used to create a draft of coordination between the two junctions. Results in the condition of existing intersection analysis showed unsatisfactory performance, at the intersection of Kartini shows the degree of saturation is still high in some approach, a large value of the vehicle stop, and delay simpangnya was still great. In planning the optimal conditions has a better performance than optimal conditions seen from the DS and the average intersection delay is smaller than the existing condition, while the condition of scenario planning produces a worse performance than the optimal conditions, so the recommended optimal conditions for used in coordination signalized intersections Kartini and Sidodadi. To perform coordination between the two signalized intersections, planning done is create two junctions cycle time has the same value, the morning peak hour cycle time changed to 82 seconds, the peak daylight hours to 75 seconds, and afternoon peak hours to 100 seconds. Of the distance between the intersection and the vehicle speed obtained offset value is 36 seconds while the bandwidth at peak hours in the morning for 25 seconds, 22 seconds during peak hours, and the afternoon peak hour by 32 seconds. While the efficiency of the coordination of the two junctions of 30.48% for the morning, 29.33% for the day, and 32% for the afternoon. Estimated at morning peak hour north approach can release 2238 vehicles/hour, the afternoon peak hour of 2160 vehicles/hour, and the afternoon peak hour of 2376 vehicles/hour. Coordination performance was good enough for the level of short-term treatment. Thus, it can be concluded that the performance of intersections to be better in terms of the initial conditions.
ANALISA DAMPAK LALU-LINTAS PENGEMBANGAN RS TELOGOREJO DI JL. K.H. AHMAD DAHLAN SEMARANG Aziz Zahwan; Riko Firmanda Muslim; Bambang Riyanto; Epf. Eko Yulipriyono
Jurnal Karya Teknik Sipil Volume 2, Nomor 1, Tahun 2013
Publisher : Departemen Teknik Sipil, Fakultas Teknik Universitas Diponegoro

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Abstract

Telogorejo Hospital is a hospital located in the city center (CBD) with a lot of activity around it, so the traffic is congested. Currently, the private hospital is under developing with targeted towards an international hospital. Therefore it is important to assess the impact of traffic caused by the development. At the beginning of the calculation, we evaluated the performance of intersections and roads around the site development. Then proceed with the calculation of estimated towing vehicle movement and percentage growth. Both were included in the analysis of the performance of intersections and roads no hotspot at the post opening. The method of analysis used is MKJI (Indonesia Jalan Capacity Manual) 1997 dedicated to vehicle traffic. From the analysis it is known that the existing conditions in 2012 was the performance of intersections and roads hotspot is still good. It can be seen from the value of DS was still below 0.75, the speed on the road is still higher than 20 kilometer per-hour, and delay at the no hotspot intersection is still less than 30 seconds / smp. At the time of its unveiling in 2014, there is a condition on the Anggrek intersection at workingday at morning peak hours its DS value greater than 0.75 is 0.88. While the results of the analysis of the long-term 5 years after opening in 2019, Anggrek intersection performance became much worse that is the highest DS value of 1,04, but the intersection Theresiana still good. Technical solutions to address the intersection of Anggrek at the opening is to provide non-permanent median on the major approach of limiting the right turn movement on each approach and also a straight movement in South Seroja approach. The median was installed as weekday morning peak hour. In the segment of Road Anggrek is made diversion parking from the road. While the solution to the current problems five years after opening is to install a non-permanent median at the Anggrek  intersection so there is no right turn movement on each approach and also the straight movement in South Seroja  approach. It also made a major widening in line at 1 m on each side and minor lane widening at 0.5 m in each side. Simpang Theresiana good condition at present, at the opening, as well as five years after opening no problems whatsoever so there is no meaningful treatment. It's just that every Sunday morning there is a market there for people who can not be predicted future conditions, thus requiring further research.
PENERAPAN MANAJEMEN LALU LINTAS SATU ARAH PADA RUAS JALAN SULTAN AGUNG – SISINGAMANGARAJA – DR.WAHIDIN KOTA SEMARANG UNTUK PEMERATAAN SEBARAN BEBAN LALU LINTAS Ramadhania Ramanasari; Nurul Qomariyah; Djoko Purwanto; Epf. Eko Yulipriyono
Jurnal Karya Teknik Sipil Volume 3, Nomor 1, Tahun 2014
Publisher : Departemen Teknik Sipil, Fakultas Teknik Universitas Diponegoro

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Abstract

Semarang is a capital city of Central Java with high rate of civil growth & mobility. This caused growth of vehicles in Semarang city which keep increasing and has impact in the vehicle’s cumulation on one segment of certain road, such as Dr. Wahidin street and Sultan Agung street . It indicates that on the segment of the road occured a high traffic density that there is a possibility in the upcoming years an increase will happen again. The purpose of the research is to identify the performance of the road’s segment and junction and to find the solution of efficient traffic spread with planned two one way traffic management scenarios. This research begins with literature study and preliminary survey which continued with collecting data through traffic counting, observation, and related measurements. Performance analysis of road’s segments and junctions in existing condition and planned scenario using MKJI 1997. As the result of analysis comparation between existing condition with 2 scenarios which the first scenario (segment of Dr. Wahidin street, Sisingamangaraja street, and Sultan Agung street enforced one way system) and the second scenario (segment of Dr. Wahidin street, Sisingamangaraja street, and Sultan Agung street enforced one way system with contra flow on segment of Dr. Wahidin street and Sultan Agung street) gained that the best scenario is the first scenario. First scenario can decrease the DS of Sultan Agung Street become about 0,21-0,33 and Dr.Wahidin Street about 0,33-0,48. Also after being compared using scoring method, the first scenario got highest score for road’s segment and junctions. So that, scenario 1 can be recommended.