• 제목/요약/키워드: Mixed refrigerant

검색결과 70건 처리시간 0.039초

동적 모사를 이용한 천연가스 액화 공정에서 혼합냉매 공정 제어 연구 (A Study of Mixed Refrigerant Process Control in Liquefied Natural Gas Process using Dynamic Simulation)

  • 이재용;박찬국
    • 한국가스학회지
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    • 제19권6호
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    • pp.99-104
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    • 2015
  • 천연가스의 이송을 위해 현재까지 가장 효율적인 방법은 액화를 통한 운반이다. 천연가스를 액화하기 위해서는 $-160^{\circ}C$이하로 냉각시켜야 하는데, 그 방법에는 여러 가지가 있다. 본 논문에서는 가장 대표적인 액화 공정인 C3MR 공정에 대한 제어 방법에 대해 연구하였다. 천연가스 액화 공정의 제어는 천연가스 품질을 유지할 수 있는 도구이며 안정된 운전을 보장하는 수단이다. C3MR 공정을 분석하고 제어 밸브에 대한 제어 변수를 선택하고 제어 변수의 계단 응답 결과를 통해 혼합냉매의 제어 구조를 도출 하였다. 도출된 제어 결과를 동적 모사를 통해서 임의로 외란을 주어 정상상태를 유지하는 결과를 확인 하였다.

혼합 공조 시스템의 EER(A) 평가 (Evaluation of energy efficiency ratio in the mixed air conditioner system)

  • 김병순;이승홍
    • 설비공학논문집
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    • 제11권4호
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    • pp.542-548
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    • 1999
  • Instead of testing split air conditioners, an empirically based calculation procedure may be used to estimate the Energy Efficiency Ratio at ARI A test conditions. Typically, the system involving the indoor unit well sold and the given outdoor unit is called the matched system. All other systems involving a given outdoor unit and other indoor units are called the mixed systems. To estimate the EER(A) for the mixed systems, EER(A) for the matched system must be known, Generally, the EER(A) for the matched system is known. This procedure relies on independent measurements and calculations made on an outdoor unit in conjunction with a matched indoor and a mixed indoor coil. A heat pump simulation model was used to quantify the effects of individual system components on the system performance. The procedure is applicable to all air-conditioning units having rated cooling capacities less than 19,000W and charged with refrigerant 22.

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선박용 해수 열교환방식 A/C 응축기의 부식원인 (Study on the corrosion of A/C condenser in the ship)

  • 백상민;양정현;김기준;문경만;이명훈
    • 한국마린엔지니어링학회:학술대회논문집
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    • 한국마린엔지니어링학회 2006년도 전기학술대회논문집
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    • pp.283-284
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    • 2006
  • The ship performs heat exchange using seawater to keep main engine and auxiliary machinery at optimum temperature. In heat exchanger, refrigerant located outside of copper tube is cooled by seawater flowing through inside of copper tube. On the other hand, seawater erosion and corrosion nay occasionally cause the corrosion of the copper tube in A/C(Air Conditioner) condenser. This corrosion of copper tube makes seawater and refrigerant mixed, seriously damaging A/C system. In this study, accordingly, the exact ive mechanism of the corrosion on the condenser entailing serious problems occasional is investigated through the electrochemical polarization experiments on the condenser's component materials. According to the experiments, the corrosive procedures on the copper tube was verified by the fact that passive film of the copper tube surface which is destroyed by the pressure of sucked seawater, is damaged by the corrosive ingredients in the seawater.

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HFC-134a를 대체냉매로 사용한 자동차 냉방시스템의 성능해석 (Performance Analysis of an Automotive Air Conditioning System Using HFC-134a as an Alternative Refrigerant)

  • 한도영;조영두
    • 설비공학논문집
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    • 제7권3호
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    • pp.406-420
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    • 1995
  • As concerns increase over the dangers of environmental destruction on a global scale, CFC regulations have finally been carried out and some CFC's are expected to be phased out by the end of 1995. The research for alternative refrigerants is very demanding. The major activities related to alternative refrigerants are focused on two different areas; one is the development of mixed refrigerants by using the existing refrigerants, and the other is the development of new HFC refrigerants. One of the most promising alternative refrigerant for CFC-12 is HFC-134a. HFC-134a has often been used as a replacement of CFC-12 for automotive air-conditioners. However, due to different thermodynamic properties of HFC-134a, performances of the replaced system are degraded compared with those of the CFC-12 system. Sometimes, the complete redesign of the system is required. In order to analyse and design the new system effectively, the developement of a system simulation program, in which HFC-134a can be selected as a refrigerant, is recommended. Therefore, the summary of this research is as follows : (1) The various thermodynamic properties of HFC-134a are ana lysed and programmed. (2) The model for serpentine heat exchanger is developed and programmed. (3) These subroutines are integrated to develop to develop an automotive air conditioning system simulation program which is verified by the test results. (4) The verified program is used to analyse the performance of a selected automotive air conditioning system.

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FLNG개념설계 단계에서 SMR 및 DMR 액화공정의 잠재적 폭발위험도 비교 (Potential Explosion Risk Comparison between SMR and DMR Liquefaction Processes at Conceptual Design Stage of FLNG)

  • 유원우;채민호;박재욱;임영섭
    • 한국해양공학회지
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    • 제32권2호
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    • pp.95-105
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    • 2018
  • An FLNG (floating liquefied natural gas) or LNG FPSO (floating production, storage and offloading) unit is a notable offshore unit with the increasing demand for LNG. The liquefaction process on an FLNG unit is the most important process because it determines the economic feasibility, but would be a hazard source because of the large quantity of hydrocarbons. While a high efficiency process such as C3MR has been preferred for onshore liquefaction processes, a relatively simple process such as the SMR (single mixed refrigerant) or DMR (dual mixed refrigerant) liquefaction process has been selected for offshore units because they require a more compact size, lighter weight, and higher safety due to their space limitation for facilities and long distance from shore. It is known that an SMR has the advantages of a simple configuration, small footprint, and lower risk. However, with an increased production rate, the inherent safety of SMR needs to be evaluated because of its small train capacity. In this study, the potential explosion risks of the SMR and DMR liquefaction processes were evaluated at the conceptual design stage. The results showed that an SMR has a lower overpressure than a DMR at the same frequency, only with a small production capacity of 0.9 MTPA. With increased capacity, the overpressure of the SMR was higher than that of the DMR. The increased number of trains increased the frequency in spite of the small amount of equipment per train. This showed that the inherent risk of an SMR is not always lower than that of a DMR, and an additional risk management strategy is recommended when an SMR is selected as the concept for an FLNG liquefaction process compared to the DMR liquefaction process.

냉열을 이용한 랭킨 사이클 방식의 발전시스템에서 혼합냉매유체 조성비의 적용한계 분석 (A Feasibility Study on the Mixed Refrigerant Composition in the Rankine Cycle Empowered by Cold Energy)

  • 정문;조은비;황인주;강춘형
    • 한국유체기계학회 논문집
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    • 제19권3호
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    • pp.14-18
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    • 2016
  • The power generation system using cold energy, which evolves in a large amount during the vaporization process of the liquefied natural gas, was designed in favor of the Rankine cycle with a mixed refrigerant as the working fluid. In this study it is intended to identify the allowable limits of the working fluid composition in respect of equipment safety in the Rankine cycle-type power generation system driven by the cold energy. The thermodynamic properties of the working fluid, which is a hydrocarbon mixture, were calculated with the Peng-Robinson model. In the steady state simulation of the power generation system by using a commercial tool Aspen HYSYS, the feed conditions of LNG Test Bed Train No.1 along with some necessary assumptions were incorporated. The results indicated that deterioration of the mechanical performance of the equipment as well as its safety would be brought about if contents of $C_2H_6$ and $C_3H_8$ in the mixture become, respectively, too high or too low.

LNG 액화공정 초구조 모델 최적화 연구 (A Study on the Superstructure Optimization of LNG Liquefaction Process)

  • 손희창;임영섭
    • 한국가스학회지
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    • 제24권1호
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    • pp.1-9
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    • 2020
  • LNG사업에서 액화공정의 운전비용은 큰 비중을 차지하기 때문에 적합한 액화공정을 선정하고 그 운전조건을 결정하는 것은 중요한 일이다. 현재까지 다양한 구성의 액화공정들이 개발되어 왔기 때문에 이들을 최적화하고 비교하여 최적의 액화공정을 선택하는 것은 많은 시간과 노력을 요하는 일이다. 다양한 구조 및 선택 사항을 포함한 초구조 모델을 사용한 초구조 최적화를 수행하면 공정 구성에 대한 선택과 최적의 운전변수를 한 번에 최적화하는 것이 가능하다. 본 연구에서는 SMR 액화공정에 대한 다양한 선택지를 포함하는 초구조 모델을 만들고 이를 최적화하였다. 결과적으로 초구조 모델이 개별적인 액화공정에 준하는 최적 포인트를 도출하는 것을 확인하였다.

오토캐스케이드 방식을 적용한 극저온 칠러 시스템의 실험적 연구 (An Experimental Study of Cryochiller System Using Autocascade)

  • 차동안;권오경;윤재호;김대열
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2007년도 춘계학술대회B
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    • pp.1980-1985
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    • 2007
  • The purpose of this study is to investigate the performance of an autocascade refrigeration system using the refrigerant mixtures of R-134a(64${\sim}$72wt%), R-23(20${\sim}$25wt%) and R-14(8${\sim}$12wt%) as working fluids by experiment. The experimental apparatus consisted of a autocascade system with a compressor, condenser, evaporator, gas-liquid separator and cascade condenser, etc. Two main causes to this failure were considered as follows. First, the pressure ratio in the compressor was extremely increased at the beginning of the experiment. Second, the outlet temperature in compressor was higher than its limited temperature. For a stable operation of the compressor, a portion of the mixed refrigerant was by-passed at the inlet of the heat exchanger and transferred directly to the suction of the compressor in the modified system. The experimental parameters were changed weight of R-134a(1800g, 2800g), R-23(700, 800, 900g) and R-14(300, 400, 500g). The results showed that the best performance in case of R-134a of 2800g, R-23 of 900g and R-14 of 500g.

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수평 평활관 및 전열촉진관내 대체 냉매 R-407C의 응축 열전달 특성에 관한 연구 (Heat Transfer Characteristics of R-407C During Condensing Inside Horizontal Smooth and Micro-Fin Tubes)

  • 노건상;오후규
    • 대한기계학회논문집B
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    • 제23권2호
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    • pp.210-217
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    • 1999
  • This paper reports the experimental results on heat transfer characteristics of R-22 and R-407C(HFC-32/125/134a 23/25/52 wt%) condensing inside horizontal smooth and finned tubes. The test condensers used In the study are double pipe heat exchangers of 7.5 mm ID, 9.5 mm OD smooth tube, and 60 finned micro-fin tube with 8.53 mm ID, 9.53 mm OD. Each of these tubes was 4 000 mm long tubes connected with an U-bend. These U type two-path test tubes are divided In 8 local test sections for the identification of the local condensing heat transfer characterisitcs and pressure drop, U-bend effects on condensing flows. Inlet quality is maintained 1.0, and refrigerant mass velocity is varied from 102.0 to $301.0kg/m^2{\cdot}s$. From the results, it was found that the pressure drop of the R-407C Increased, and heat transfer coefficient decreased compared to those of R-22. In comparison condensing heat transfer characteristics of micro-fm tube with those of smooth tube, increasing of condensing heat transfer coefficient was found outstanding compared to the increasing ratio of pressure drop. Furthermore, pressure drop In U-bend showed at most a 30 % compared to the total pressure drop in the test section.