首页> 外文期刊>International Journal of Marine Engineering Innovation and Research >Technical Analysis Ballast Water Treatment By Using Economizer Utilizing Main Engines Exhaust Heat To Comply With International Ship Ballast Water Management At Mv. Leader Win
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Technical Analysis Ballast Water Treatment By Using Economizer Utilizing Main Engines Exhaust Heat To Comply With International Ship Ballast Water Management At Mv. Leader Win

机译:用康乐器利用主要发动机废热来遵守MV的国际船舶压载水资源,促进技术分析镇流器水处理。 领导者赢

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emBased on the International Ballast Water Management regulations (IBWM), waste water ballast itself has the attention of some researchers to reduce the amount of waste species present in the ballast water with a variety of methods, as of biological, physical, mechanical, and chemical. The decision-making tools such as ballast water heater, flow-through system and others where possible these tools can minimize waste species in ballast water at a certain temperature or pressure of the flow according to the calculations./emem /ememThis study was aimed to calculate and analysis the effectiveness of the system treatment between Option 1 (Economizer & Bundle) and Option 2 (Economizer & Heat Excharger) then it will compare. First option is using economizer and bundles to transfer a heat from a source heat of exhaust gas then medium by thermal oil circulated. The second option is using economizer and heat excharger where a same heat source , but sea water from ballast tank sirculated to heat excharger. And from economizer to heat excharger is using thermal oil as a heat medium. For all calculation and anaalysis is using softwere HTRI./emem /ememFirst option having a duty 2.503 MegaWatts at economizer and 1.9567 MegaWatts at bundles. Over design 2.01% at Economizer and 7.1%5 at bundles. Pessure drop 63.287 kPa at thermal oil after economizer and 68.196 kPa after bundles. Treatment time to this option is 44.424 hors. Second option having a duty 3.38 MegaWatts at economizer and 3.1227 MegaWatts at heat excharger. Over design 5.85% at Economizer and 3.49%5 at heat excharger. Pessure drop 38.697 kPa at thermal oil after economizer and 28.476 kPa after heat excharger. Treatment time to second option is 42.03 hours./emem /ememOption 2 (Economizer & Heat Excharger) is more optimum than option in analytical techniques. /ememBy analysis of /ememtreatment system/emem, are expected this thesis can be applied to either the /ememMV. Leader Win Vessel/emem to /ememcomply with/emem the operational needs according to standard employability./emem/em.
机译:野蛮的镇流器水管理法规(IBWM),废水镇流器本身关注一些研究人员,以各种方法减少压载水中存在的废物量,如生物,物理,机械和化学品。镇流器热水器,流通系统等的决策工具可以在可能的情况下最小化镇流器水中的废物在一定的温度或根据计算的压力./mem / Ememthis研究旨在计算和分析选项1(康乐器束)和选项2(康乐器&热交换器)之间的系统处理的有效性。然后它将比较。首先选择是使用经济化器和束来通过热油循环从废气的源热传递热量。第二种选项是使用经济化器和热交换器,其中相同的热源,但是从压载槽悬挂到热交换器的海水。从经济化器到热交换器,使用热油作为热介质。对于所有计算和AnaAlex使用Softwere HTRI./emem / Ememfirst选项,在康乐器和1.9567兆瓦举行的1.5.567兆瓦。在康乐公司的4.01%和捆绑上的7.1%5。经济化器后热油和68.196 kPa在捆绑后,Pessure Drop 63.287 KPA。这种选择的治疗时间是44.424匹斯特。第二个选项在康乐器和3.1227兆瓦的散热器上有一个职责3.38兆瓦。在康乐器和3.49%的热交换器上以3.49%的5.85%的设计。热油后Pessure跌落38.697 KPA,发热后28.476 KPA。第二种选项的治疗时间为42.03小时./MEM / EmemOption 2(康乐器和amp;热交换器)比分析技术中的选项更为最佳。 / Ememby分析/ Ememtreatment System / EMEM,预计本论文可以应用于/ ememmv。领导者赢得船只/ EMEM与/ Ememomply按照标准就业能力./MEM/EM。

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