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040 _bEnglish.
_cCvSU-CCAT Campus Library.
_erda.
050 _aUM TJ 288
_bD48 2019
245 _aDevelopment of Automated Smoking Machine for Small-scale Tinapa Processing /
_bMichael James M. Andres, [and five others]
_c2019
260 _aRosario, Cavite :
_bCavite State University-CCAT Campus,
_c2019
300 _axviii, 91 leaves :
_billustrations ;
_c28 cm
500 _aProject Design (BSEE)--Cavite State University-CCAT Campus, 2019.
_aProject Design (BSCpE)--Cavite State University-CCAT Campus, 2019.
_aProject Design (BSAE)--Cavite State University-Main Campus, 2019.
504 _aIncludes bibliographical references and appendices.
520 _aANDRES, MICHAEL JAMES M., ANTONIO, ROGELROSE M., HERNARTE, PATRICK RONALD S., DE GUZMAN, ERROL R., MONES, JOHN LESTER D. and RAMOS JR., MICHAEL M. Development of Automated Smoking Machine for Small-scale Tinapa Processing. Design Project. Bachelor of Science in Electrical Engineering and Bachelor of Science in Computer Engineering. Department of Engineering. Cavite State University-CCA T Campus, Rosario, Cavite. June 2019. Adviser: Engr. Gee Jay C. Bartolome. Technical Critic: Mr. Juniel M. Arcal and Engr. Kevin P. Titiwa. The study was conducted to develop an automated smoking machine for tinapa processing which integrates the functions of a biomass-fired smoke generator and smoking chamber through automation and control. The machine maintains and monitors the conditions both for hot and cold smoking, wherein specific temperature range are critical. During hot smoking, the smoke temperature is maintained between 77°C to 85°C while in cold smoking, temperature ranges from 30°C to 60°C. The smoking machine has a theoretical capacity of 50 kg per batch of operation. Preliminary and subsequent testing and evaluation activities proved that the machine can precisely maintain the desired processing conditions. The tendency of the smoke to travel from the generator to the smoking chamber was also proven and the distribution may potentially be kept uniform within the chamber. The economic analysis of the machine revealed an initial investment of Php 197,421.00 was taken as the sum of the cost for machine construction, automated control system, and electrical equipment and a projected annual cost of Php199,948.09. Some basic assumptions revealed that a calculated break-even point of 74,630.65 kg of tinapa, a payback period of 3.22 years and a benefit-cost ratio of 1.019. Moreover, the return on investment (ROI) for this machine was also computed at 16.18 percent.
650 _aSmoke generators
_95192
650 _aThermal chambers
_95193
650 _aSmoked food
_95194
650 _aBiomass-fluid generator
_95195
700 _aAndres, Michael James M., author
_95196
700 _aAntonio, Rocelrose M., author
_95197
700 _aBernarte, Patrick Ronald S., author
_95198
700 _aDe Guzman, Errol R., author
_95199
700 _aMones, John Lester D., author
_95200
700 _aRamos, Michael Jr M., author
_95201
700 _aBartolome, Gee Jay C., adviser
_94765
700 _aArcal, Juniel M., critic
_95202
700 _aTitiwa, Kevin P., critic
_95203
942 _2lcc
_cT/M/D
_hTJ 288
_iD48 2019
_kUM
999 _c1719
_d1719