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Simulation Modeling of Automatic Production Lines with Intermediate Buffers

Research Abstract
A production line is an important class of manufacturing system when large quantities of identical or similar products are to be produced. The performance of a production line is highly influenced by machine failures. When a machine fails, it is then be unavailable during a certain amount of time required to repair it. Analysis of production lines divides into three types: analytical, approximation and simulation models. The analytical and approximation models have assumptions which make these models unrealistic such as reliable workstations, certain processing distribution, the first workstation cannot be starved and the last workstation cannot be blocked. The main problems in production lines treatment are the calculation of throughput and average levels of buffers because of the great size of state space. An analytical model is reviewed to clarify the limitations to use such treatment in real production lines. Simulation modeling of production lines is considered very important for designers interested in: Workload Allocation Problem (WAP), Server Allocation Problem (SAP), and Buffer Allocation Problem (BAP). This paper studies and analyzes the performance keys, which effect on production lines. A simulation model is developed by using ARENA software and used to analyze and test several bottlenecks that are causing severe congestions in different areas on the production line and could resolve all of these bottlenecks. In this paper, an actual cement production line is studied. After a simulation time of 13 days, a simulation results show the line bottlenecks, workstations utilization, buffer capacities and the line production rate. The outputs clarify redesign of allocation of buffers, which verify an optimum size could be made; it might be taken into consideration when designers implement such lines. Finally modified better workstations utilization, buffer capacities and the line production rate with an increase about 15% of the production rate and economizing of 37 % from buffer capacities.
Research Authors
M. Heshmat, Mahmoud A. El-Sharief, M. G. El-Sebaief
Research Journal
International Journal of Scientific & Engineering Research
Research Rank
1
Research Vol
Vol. 4, Issue. 7
Research Year
2013

Simulation Modeling of Automatic Production Lines with Intermediate Buffers

Research Abstract
A production line is an important class of manufacturing system when large quantities of identical or similar products are to be produced. The performance of a production line is highly influenced by machine failures. When a machine fails, it is then be unavailable during a certain amount of time required to repair it. Analysis of production lines divides into three types: analytical, approximation and simulation models. The analytical and approximation models have assumptions which make these models unrealistic such as reliable workstations, certain processing distribution, the first workstation cannot be starved and the last workstation cannot be blocked. The main problems in production lines treatment are the calculation of throughput and average levels of buffers because of the great size of state space. An analytical model is reviewed to clarify the limitations to use such treatment in real production lines. Simulation modeling of production lines is considered very important for designers interested in: Workload Allocation Problem (WAP), Server Allocation Problem (SAP), and Buffer Allocation Problem (BAP). This paper studies and analyzes the performance keys, which effect on production lines. A simulation model is developed by using ARENA software and used to analyze and test several bottlenecks that are causing severe congestions in different areas on the production line and could resolve all of these bottlenecks. In this paper, an actual cement production line is studied. After a simulation time of 13 days, a simulation results show the line bottlenecks, workstations utilization, buffer capacities and the line production rate. The outputs clarify redesign of allocation of buffers, which verify an optimum size could be made; it might be taken into consideration when designers implement such lines. Finally modified better workstations utilization, buffer capacities and the line production rate with an increase about 15% of the production rate and economizing of 37 % from buffer capacities.
Research Authors
M. Heshmat, Mahmoud A. El-Sharief, M. G. El-Sebaief
Research Journal
International Journal of Scientific & Engineering Research
Research Rank
1
Research Vol
Vol. 4, Issue. 7
Research Year
2013

Monument Presentation Using Digital Architectural Photogrammetry

Research Abstract
NULL
Research Authors
Prof. Dr. Klaus Hanke and Eng. Mostafa Ebrahim
Research Department
Research Journal
CIPA International Symposium in Goeteborge, Sweden
Research Pages
NULL
Research Publisher
CIPA
Research Rank
3
Research Vol
NULL
Research Website
NULL
Research Year
1997

Documentation of the World Heritage by Using the Digital projector approach

Research Abstract
NULL
Research Authors
Prof. Dr. Klaus Hanke and Eng. Mostafa Ebrahim
Research Department
Research Journal
Al-Azhar Engineering Fifth International Conference AEIC’97 in Cairo
Research Pages
NULL
Research Publisher
Al-Azhar University
Research Rank
2
Research Vol
NULL
Research Website
NULL
Research Year
1997

Rapid thermodynamic simulation model for optimum performance of a four-stroke, direct- injection, and variable-compression-ratio 5 diesel engine

Research Authors
Abou Al-Sood, M. M. Ahmed, M., Abdel-Rahim,Y.M
Research Journal
Energy and Environmental Engineering

Research Member
Maher Mustafa Hamed Aboul Seoud
Research Rank
3
Research Year
2012
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