01984nas|a2200241 i 450000500170000000800410001703500150005810000190007324500530009226000520014530000100019749000510020750001750025850200840043352008720051765000430138970000350143270000520146770000460151971000290156581000830159485600650167720260818095803.0271198s1988 th uzm rtt 00| a1eng d a.b102410730 aKanchana Ajson10aEnergy conservation in the Bangkok glass factory aBangkok :bAsian Institute of Technology,c1988 a96 p.1 aResearch studies project report ;vno. ET-88-5 aA research study (9 credits) submitted in partial fulfillment of the requirement for the degree of Master of Engineering, School of Environment, Resources and Development aResearch Studies Project Report (M. Eng.) - Asian Institute of Technology, 1988 aStudies on energy use at the Bangkok Glass factory, where a 360 tons of glass are produced each day, have been carried out. Energy auditing has been done in the thermal energy utilization unit . Break downs of energy consumption have been made. Energy analysis and availability analysis are applied to the melting units which are the most significant energy consumers. Both the first and second law efficiency of the melting units have been investigated. The important energy losses have been identified. Feasible energy conservation measures are applied. Use of waste heat instead of electrical energy to reduce oil viscosity can save about 1. 13 million baht/year. The cogeneration feasibility has been also investigated. The payback period of the cogeneration is less than 4 years while the system gives an internal rate of return of higher than 32 %. 0aEnergy conservationxThailandxBangkok1 aPrida Wibulswas, eChairperson1 aBhattacharya, Sribas C.,eExamination Committee1 aFoell, Wesley K., eExamination Committee2 aCEC, eScholarship Donor2 aAsian Institute of Technology.tResearch studies project report ;vno. ET-88-5 3Full-Textuhttp://203.159.5.9/ait-thesis/detail.php?q=B18819