UZUN SÜRELI SAVAŞLARDA YIĞIN ÜRETİMİN ÖNEMİNİN SİSTEM DİNAMİKLERİ ÇERÇEVESİNDE İNCELENMESİ: PASIFIK CEPHESİ ÖRNEĞİ

Uzun süre devam eden savaşların sonuçları geliştirilen stratejilerin yanında ülke kaynaklarının doğru kullanımına da bağlıdır. Bir ülke ekonomik açıdan kuvvetli değilse uzun soluklu bir mücadeleyi kazanması beklenemez. Bu çalışmada yığın üretimin etkisini görmek amacıyla sistem dinamikleri çerçevesinde Stella 9.1.4 yazılımı ile 2. Dünya Savaşı Pasifik Cephesi kara ve deniz savaşları için iki faklı model hazırlanmıştır. Kara savaşları için alternatif senaryolara göre model çalıştırılmış ve sonuçları incelenmiştir

A REVIEW OF THE IMPORTANCE OF MASS PRODUCTION IN THE LONG TERM WARS IN THE CONTEXT OF THE SYSTEM DYNAMICS: PACIFIC FRONT EXAMPLE

The results of the long term wars depend upon the right usage of the country resources in addition to war strategies. If a country is not powerful economically, it cannot be expected to win a long term campaign. In this study, two different models for WWII Pacific Front ground and sea battles have been prepared with Stella 9.1.4 software in the framework of the system dynamics by understanding the effect of mass production. Then, the model has been run in according to the different scenarios for ground battles and the results have been analyzed

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  • ANSORGE, Sven - Olivier HENRY - Amine KAMEN (2010), “Recent progress in lentiviral vector mass production”, Biochemical Engineering Journal, 48, pp.362–377.
  • ASERE, Liva – Andra BLUMBERGA (2015), “Government and municipality owned building energy efficiency system dynamics modelling”, Energy Procedia, 72, pp.180 – 187.
  • ASPINWALL, Michael J. – John S. KING – Steven E. MCKEAND – Bronson P. BULLOCK (2011), “Genetic effects on stand-level uniformity and above- and belowground dry mass production in juvenile loblolly pine”, Forest Ecology and Management, 262, pp.609–619.
  • BATTAIA, Olga - Alexandre DOLGUI – Nikolai GUSCHINSKY - Genrikh LEVIN (2012), “A decision support system for design of mass production machining lines composed of stations with rotary or mobile table”, Robotics and Computer-Integrated Manufacturing, 28, pp.672– 680.
  • BOEHM, Kurt J. – A.R. RAFFRAY – N.B. ALEXANDER - D.T. GOODIN (2011), “Modeling results for mass production layering in a fluidized bed”, Fusion Engineering and Design, 86, pp.259–269.
  • CHAN, Stephen L. – Barbara J. VOGEL (1988), “Mathematical modelling problems in aerospace simulation of multiple aircraft information, communication, and decision in air combat”, Mathematical Computing Modelling, 11, pp.865-870.
  • CHEN, Lihua - Chunming HUANG – Gang XU – Stuart L. HUTTON - Lei MIAO (2013a), “Macroporous TiO2 foam with mesoporous walls”, Materials Characterization: 75, pp.8–12.
  • CHEN, Qiuping – Qiuling CHEN - Gabriele MACCIONI (2013b), “Fabrication of microfluidics structures on different glasses by simplified imprinting technique”, Current Applied Physics, 13, pp.256-261.
  • CHEN, Yani – Hongbin ZHAO – Leimei SHENG – Liming YU – Kang AN – Jiaqiang XU - Yoshinori. ANDO - Xinluo ZHAO (2012), “Mass-production of highly-crystalline few-layer graphene sheets by arc discharge in various H2–inert gas mixtures”, Chemical Physics Letters, 538, pp.72–76.
  • DEMİR, Mehmet Hulusi – Şevkinaz GÜMÜŞOĞLU (1994), Üretim/İşlemler Yönetimi, İstanbul: Beta Basımevi.
  • ERSOY, Mesiha Saat – Abdullah ERSOY (2011), Kalite Yönetimi Toplam Kalite Yönetimi Ve Kalite Denetimi, Ankara: İmaj Yayınevi.
  • FECIORU-MORARIU, Marian – Bogdan MEREU – Sylvie BAKEHE – Jiri KALAS – Oliver KLUTH - Thomas EISENHAMMER (2012), “High quality amorphous Si solar cells for large area mass production Micromorph tandem cells”, Journal of Non-Crystalline Solids, 358, pp.2264–2267.
  • GHORBANI, H. – A.M. RASHIDI – S. RASTEGARI - S. MIRDAMADI - M. ALAEI (2011), “Mass production of multi-wall carbon nanotubes by metal dusting process with high yield”, Materials Research Bulletin, 46, pp.716–721.
  • HA, Sol - Nam-Kug KU - Myung-Il ROH - Ho-Jin HWANG (2015), “Multibody system dynamics simulator for process simulation of ships and offshore plants in shipyards”, Advances in Engineering Software, 85, pp.12–25.
  • HAGHSHENAS, Hossein – Manouchehr VAZIRI – Ashkan GHOLAMIALAM (2015), “Evaluation of sustainable policy in urban transportation using system dynamics and world cities data: A case study in Isfahan”, Cities, 45, pp.104–115.
  • HARA, Motoaki – Masanori UEDA - Yoshio SATOH (2013), “A thin-film bulk acoustic resonator and filter with optimal edge shapes for mass production”, Ultrasonics, 53, pp.90–96.
  • http://en.wikipedia.org/wiki/Military_production_during_World_War_II , (01.12.2014).
  • http://en.wikipedia.org/wiki/World_War_II_casualties , (01.12.2014).
  • http://tr.wikiquote.org/wiki/Mustafa_Kemal_Atat%C3%BCrk/Ekonomi , (20.05.2015).
  • https://tr.wikipedia.org/wiki/II._D%C3%BCnya_Sava%C5%9F%C4%B1, (18.11.2015).
  • HUANG, Chun-Hisen - Ruey-An DOONG (2012), “Sugarcane bagasse as the scaffold for mass production of hierarchically porous carbon monoliths by surface self-assembly”, Microporous and Mesoporous Materials, 147, pp.47–52.
  • IBARRA-CASTRO, Leonardo – Luis ALVAREZ-LAJONCHÈRE – Carlos ROSAS – Iveth G. PALOMINO-ALBARRÁN – G. Joan HOLT - Adolfo SANCHEZ-ZAMORA (2011), “GnRHa-induced spawning with natural fertilization and pilot-scale juvenile mass production of common snook”, Centropomus undecimalis (Bloch, 1792), Aquaculture, 319, pp.479–483.
  • JEHL, X. – B. ROCHE – M. SANQUER – B. VOISIN – R. WACQUEZ – V. DESHPANDE – B. PREVITALI – M. VINET – J. VERDUIJN – G.C. TETTAMANZI – S. ROGGE – D. KOTEKAR-PATIL – M. RUOFF – D. KERN – D.A. WHARAM – M. BELLI – E. PRATI - M. FANCIULLI (2011), “Mass Production of Silicon MOS-SETs: Can We Live with NanoDevices’ Variability?”, Procedia Computer Science, 7, pp.266–268.
  • JEON, Chanwoong – Jeongjin LEE – Juneseuk SHIN (2015), “Optimal subsidy estimation method using system dynamics and the real option model: Photovoltaic technology case”, Applied Energy, 142, pp.33–43.
  • JU, M. – Y-J. LEE – J. LEE – B. KIM – K. RYU – K. CHOI – K. SONG – K. LEE – C. HAN – Y. JO - J. YI (2012), “Double screen printed metallization of crystalline silicon solar cells as low as 30 mm metalline width for mass production”, Solar Energy Materials & Solar Cells, 100, pp.204–208.
  • KASADA, Ryuta – Saerom KWON – Satoshi KONISHI – Yoshiteru SAKAMOTO – Toshihiko YAMANISHI – Kenji TOBITA (2015), “A system dynamics model for stock and flow of tritium in fusionpower plant”, Fusion Engineering and Design, 98-99, pp.1804-1807.
  • LAMPRECHT, James. (2000), Quality and Power in the Supply Chain What Industry Does for the Sake of Quality, Elsevier Inc.
  • LEE, S. – W. HAN – Y. PARK (2015), “Measuring the functional dynamics of product-service system: A system dynamics approach”, Computers & Industrial Engineering, 80, pp.159– 170.
  • LIU, Changxin – Zhihui XIE – Fengrui SUN – Lingen CHEN (2015), “System dynamics analysis on characteristics of iron-flow in sintering process”, Applied Thermal Engineering, 82, pp.206- 211.
  • MANIVASAKAN, Palanisamy – Arumugam KARTHIK - Venkatachalam RAJENDRAN (2013), “Mass production of Al2O3 and ZrO2 nanoparticles by hot-air spray pyrolysis”, Powder Technology, 234, pp.84–90.
  • MANIVASAKAN, Palanisamy – Venkatachalam RAJENDRAN – Prema Ranjan RAUTA – Bhakta Bandhu SAHU – Bharati Krushna PANDA (2011), “Effect of mineral acids on the production of alumina nanopowder from raw bauxite”, Powder Technology, 211, pp.77–84.
  • MEIER, J. – U. KROLL – S. BENAGLI – L. FESQUET – J. STEINHAUSER – D. BORELLO – J-B. ORHAN – Y. DJERIDANE – E. VALLAT-SAUVAIN – M. FECIORU-MORARIU – B. MEREU – J. KALAS – J. HOETZEL – P. LOSIO – M. KUPICH – O. KLUTH – T. EISENHAMMER – D. WEIDMAN – S. MARJANOVIC - G. KOHNKE (2012), “From R&D to Mass Production of Micromorph Thin Film Silicon PV”, Energy Procedia, 15, pp.179 – 188.
  • ORJI, Ifeyinwa Juliet – Sun WEI (2015), “An innovative integration of fuzzy-logic and systems dynamics in sustainable supplier selection: A case on manufacturing industry”, Computers & Industrial Engineering, 88, pp.1–12.
  • PRETORIUS, L. - J.H.C. PRETORIUS - S.J. BENADE (2015), “ A system dynamics approach to technology interaction: From asymptotic to cyclic behaviour”, Technological Forecasting & Social Change, 97, pp.223–240.
  • RASHWAN Wael – Waleed ABO-HAMAD – Amr ARISHA (2015), “A system dynamics view of the acute bed blockage problem in the Irish health care system”, European Journal of Operational Research, 247, pp.276–293.
  • RUSSELL, Roberta S. – Bernard W. TAYLOR (2011), Operations Management, New Jersey: John Wiley & Sons Inc.
  • SEKHARAN, Chandra N. – Ma ZHİ-HAİ – Udaya B. VEMULAPATI – William J. PORTHOUSE JR - Allen IRWIN (1996), “MasPaWS - A Massively Parallel War Simulator”, Simulation Practice and Theory, 4, pp.265-282.
  • SHAH, A. – J. MEIER – A. BUECHEL – U. KROLL – J. STEINHAUSER - F. MEILLAUD (2006), “Towards very low-cost mass production of thin-film silicon photovoltaic solar modules on glass”, Thin Solid Films, 502, pp.292-9.
  • SHAIKH, Shoyeb Mohamad F. – Ji Yeon LIM – Rajaram S. MANE - Sung-Hwan HAN – Swapnil B. AMBADE - Oh-Shim JOO (2012), “Wet-chemical polyaniline nanorice mass-production for electrochemical supercapacitors”, Synthetic Metals, 162, pp.1303 – 1307.
  • STONE, George – Eugene RESSLER - Edward LAVELLE (1996), “Intelligent Simulation of the Battlefield (ISB)”, Expert Systems With Applications, 11(2), pp.227-236.
  • TILLMAN, E. - C.B. ENGLE (1996), “An Historical Reenactment of the Battle of Gettysburg on Janus (Army)”, Mathl. Comput. Modeling, 23 (I/2), pp.1-8.
  • TSAI, Jung-Ting - Shun-Tian LIN (2013), “Silver powder effectiveness and mechanism of silver paste on silicon solar cells”, Journal of Alloys and Compounds, 548, pp.105–109.
  • TÜTEK, Hülya H. – Şevkinaz GÜMÜŞOĞLU (2008), Sayısal Yöntemler Yönetsel Yaklaşım, İstanbul: Beta Basımevi.
  • WANG, Lei – Wen LIU – Yi-Wen ZHANG – Fei QIU – Ning ZHOU – Ding-Li WANG – Zhi-Mou XU – Yan-Li ZHAO - Yong-Lin YU (2012), “DFB LDs at DWDM wavelengths fabricated by a novel nanoimprint process for mass production and tolerance simulation”, Microelectronic Engineering, 93, pp.43–49.
  • XU, Xiangju. – Shaoming HUANG – Yali HU – Jianding LU - Zhi YANG (2012), “Continuous synthesis of carbon nanotubes using a metal-free catalyst by CVD”, Materials Chemistry and Physics, 133, pp.95– 102.
  • YEHESKEL, Jacob - Michael EPSTEIN (2011), “Thermolysis of methane in a solar reactor for massproduction of hydrogen and carbon nano-materials”, Carbon, 49, pp.4695 – 4703.
  • YU, Xiaoliu – Yulei WANG – Gongyuan WEI - Yingying DONG (2012), “Media optimization for elevated molecular weight and mass production of pigment-free pullulan”, Carbohydrate Polymers, 89, pp.928– 934.
  • YUNNA, Wu – Chen KAIFENG – Yang YISHENG – Feng TIANTIAN (2015), “A system dynamics analysis of technology, cost and policy that affect the market competition of shale gas in China”, Renewable and Sustainable Energy Reviews, 45, pp.235–243.
  • ZHANG, Qiang – Meng-Qiang ZHAO – Jia-Qi. HUANG – Jing-Qi. NIE - Fei. WEI (2010), “Mass production of aligned carbon nanotube arrays by fluidized bed catalytic chemical vapor deposition”, Carbon, 48, pp.1196 – 1209.
  • ZHOU, Zhihua – Changhua ZHAN – Yanyan WANG – Yanjie SU – Zhi YANG - Yafei ZHANG (2011), “Rapid mass production of ZnO nanowires by a modified carbothermal reduction method”, Materials Letters, 65, pp.832–835.
  • ZHU, Wancheng – Guangdong LI – Qiang ZHANG – Lan XIANG - Shenlin ZHU (2010), “Hydrothermal mass production of MgBO2(OH) nanowhiskers and subsequent thermal conversion to Mg2B2O5 nanorods for biaxially oriented polypropylene resins reinforcement”, Powder Technology, 203, pp.265–271.
Gümüşhane Üniversitesi Sosyal Bilimler Dergisi-Cover
  • Yayın Aralığı: Yılda 3 Sayı
  • Başlangıç: 2010
  • Yayıncı: GÜMÜŞHANE ÜNİVERSİTESİ