• Title/Summary/Keyword: Sub-ejector

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Comparison of Performance in CO2 Cooling System with an Ejector for Various Operating Conditions (다양한 운전조건에서 이젝터를 적용한 CO2 냉동기의 성능비교)

  • Kang, Byun;Cho, Hong-Hyun
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.23 no.7
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    • pp.505-512
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    • 2011
  • Recently, many researchers have analyzed the performance of the transcritical $CO_2$ refrigeration cycle in order to identify opportunities to improve the system energy efficiency. The reduction of the expansion process losses is one of the key issues to improve the efficiency of the transcritical $CO_2$ refrigeration cycle. In this study, the analytical study on the performance characteristics of $CO_2$ cycle with an ejector carried out with a variation of outdoor temperature, gascooler inlet air velocity, evaporator inlet air velocity, and evaporator inlet air temperature. As a result, the system performance could be improved over 85% by using an ejector for various operating condition because of the reduction of compressor work. Moreover, the cooling capacity increased about 18% for variable outdoor condition. Therefore, the high performance of an ejector system could be maintained for wide operating conditions and system reliability could be improved compared to that of a basic system.

Performance Analysis on the Ejector System in Flue-gas Discharge Channel of Marine Incinerator (소각기의 배기가스 유로에 이젝터를 적용한 시스템의 성능 분석)

  • Yun, Sang-Kook;Chang, Ho-Gil
    • Journal of Advanced Marine Engineering and Technology
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    • v.35 no.6
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    • pp.773-778
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    • 2011
  • The International Maritime Organization(IMO) could try to adopt more severe amendment to prevent any air pollution from various waste materials by marine incinerator. This study is to analyse the performance improvement through Ansys CFD about new invented system which has three flue-gas discharge channels and sub-ejector installed in the dischage channel in order to evacuate flue-gas well from the combustion chamber. The results showed that the discharge temperature of flue-gas was below the regulated value of IMO by the multi-channels, and the sub-ejector system installed in the discharge channel was highly effective one to improve the flue-gas discharge ability.

Performance Variation with Length of Internal Heat Exchanger in CO2 Cooling Cycle Using an Ejector (이젝터를 적용한 이산화탄소 냉동사이클의 내부열교환기 길이에 따른 성능 변화)

  • Kang, Byun;Cho, Hong-Hyun
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.24 no.2
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    • pp.147-154
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    • 2012
  • Recently, many researchers have studied the performance of the transcritical $CO_2$ refrigeration cycle in order to improve the system efficiency. In this study, the length of IHX in the $CO_2$ ejector cycle was varied so as to evaluate the performance improvement. As a result, compressor work and cooling capacity was increased by 3% and 5% as the length of internal heat exchanger was changed from 3 m to 15 m. The best COP was appeared at internal heat exchanger length of 12 m, and it was 3.01. Besides, the length of internal heat exchanger has a big effect to pressure lift ratio and entrainment ratio in the ejector $CO_2$ cycle and it may be changed with operating conditions and system specifications.

E-Machining of Engineering-to-Order Mold Park from e-Catalog (주문자 요구에 유연하게 대응하는 금형 부품의 전자 거래)

  • Mun, Du-Hwan;Jang, Kwang-Sub;Han, Soon-Hung;Kim, Jun-Hwan;Hwang, Ho-Jin
    • The Journal of Society for e-Business Studies
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    • v.12 no.1
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    • pp.1-24
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    • 2007
  • In the mold parts industry, customers typically place orders for order-made parts with some changes to the design specifications of ready-made parts within the extent of the manufacturing capability of the supplier. Being customized for ready-made parts, existing e-Catalog systems cannot support the above trade pattern. To solve this problem, an ETO (engineering-to-order) method is proposed here, enabling the trade of order-made parts in an e-Catalog system by utilizing the design and manufacturing knowledge of the part suppliers. After addressing technological challenges and solutions, we briefly describe application of the ETO method to two types of mold parts - ejector pins and mold bases.

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