• Title/Summary/Keyword: 스트레이너

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Strainer Cleaning Using Blasting of Detonating Cords (도폭선 발파를 통한 스트레이너 재생)

  • Yang, Hyung-Sik;Kim, Jong-Gwan;Choi, Mi-Jin;Lee, Kyung-Jin;Doo, Joon-Kee;Kim, Jeong-Gyu
    • Explosives and Blasting
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    • v.27 no.1
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    • pp.1-6
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    • 2009
  • The strainer can be clogged by dusts in a well. As a result, the permeability of a strainer is extremely reduced. This paper is intended to propose a cleaning method of strainer using blasting pressure of the detonating cords and to examine the applicability of this method. The pressure range that was not expected to affect the strainer was estimated. Test results of $3,000\;kg/cm^2$ pressure with a diameter of 12 cm without damage to the strainer was found to be appropriate. The mortar attached to the strainer was almost completely eliminated.

Comparison of Flow Characteristics for the Development of a C-Type Strainer with Its Inlet and Outlet on a Straight Line (유입·유출구가 일직선상인 C형 스트레이너 개발을 위한 유동특성 비교)

  • Shin, Byung-kyun;Kwon, Chang-Hee
    • Journal of Digital Convergence
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    • v.14 no.11
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    • pp.257-265
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    • 2016
  • The purpose of this study was to develop a strainer that could protect a flow system by blocking the introduction of foreign substances into the pipe of industrial or architectural facilities. Strainers are installed at the front tip of valves, machines, or pumps in the piping line of clean water, oil, or gas. There are Y-type, U-type, and T-type strainers. The study identified problems with the Y-type strainers, develop a "C-type strainer with its inlet and outlet on a straight line" as a more improved new model, and compared them in functions in a full-scale strainer test. The study conducted a full-scale strainer test according to four situations at the flow laboratory of Korea Research Institute of Standards and Science by using the old Y-type strainer and C-type strainer 50A. The test results show that the C-type strainer had a higher capacity coefficient(Kv) than the Y-type one, recording 74.9% when there was no screen, 54.5% when there were no foreign substances in the screen, 54.2% when there was a 15% accumulation of foreign substances, and 52.4% when there was a 30% accumulation of foreign substances. The investigator conducted a test only with the 50A type due to the limitations of life-size strainers, but the results demonstrate that the C-type strainer had better flow characteristics than the Y-type one.

Seismic Evaluation for Strainer in the Primary Cooling System (일차 냉각계통 스트레이너에 대한 내진 건전성 평가)

  • 정철섭
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.13 no.3
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    • pp.295-304
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    • 2000
  • To evaluate the structural integrity for the strainer under seismic loading the seismic analysis and design were performed for T-type strainer in accordance with ASME, Section Ⅲ, Class 3(ND). Since there are no specified design requirements for the strainer in ASME Code, the strainer body was analysed according to ND-3500, valve design. Flanged joints connected with PCS piping were designed according to ND-3658.3. And the criteria for the cover flange was governed by the Appendix XI. Both a frequency analysis and an equivalent static seismic analysis of the strainer were carried out using the finite element computer program, ANSYS. The frequency analysis results show the fundamental natural frequency is greater than 33Hz, thus justifying the use of the equivalent static analysis through which membrane and bending stresses are obtained in the critical points near the branch connection area. The results of the seismic evaluation fully satisfied with the structural acceptance criteria of the ASME Code. Accordingly the structural integrity on the strainer body and flanges were proved.

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Concentration of water flow to improve flowmeter accuracy and International Performance Standards (Q2/Q1) 1.6multiple Correlation of Reliability Securing (유량계측 정확도 향상을 위한 유로집중과 국제성능기준 전이유량비(Q2/Q1)1.6배수 신뢰성 확보의 상관관계)

  • Seo, Man Je
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.237-237
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    • 2020
  • 수도계량기(이하 "수량계")는 액체용 적산부피계로 물 사용량을 적산 계량하기 위한 기계기구 또는 장치이며 수량계 검정기준에 의해 검사기준 합격제품을 사용하서 수도요금을 징수합니다. 사실상 국내계량에 관한 법률에 의거하여 전이유량비가 6.3배수(2014년) > 4.0배수(2016년) > 1.6배수(2017년)로 점점 향상되며 2017년 기준으로 국제법정계량기구(OIML)의 성능과 같은 1.6배수까지 향상되어 국내의 수량계 기술기준이 많은 부분 향상되었습니다. 그러나 국제법정계량기구(OIML)는 현재 1.6배수의 80배수까지 검사기준에 합격에 반하여 현제 국내의 검사기준은 1.6배수의 100배수까지만 합격기준을 가지고 있습니다. 이러한 기준은 점차 발전해가고 있는 후발국가에 속하는 자국의 검사기준이 너무 갑작스럽게 국제법정계량기구(OIML)의 기준보다 높은 검사기준을 시행하며 많은 문제가 발생한 것 같습니다. 위와 같은 문제를 해결하기 위하여 여러 복합적인 부품으로 이루어진 수량계의 유량 및 유속에 영향력이 있다고 보여지는 특정 부품 혹은 부위의 개선 및 개발로 해결할 수 있지 않을까 하는 의구심에 연구를 시작되었습니다. 유량 및 유속에 영향을 끼치는 유입부의 스트레이너, 내부 임펠러의 변경으로 성능검사에서 영향을 끼치는지를 유체역학 및 유동해석 등을 통하여 테스트 후 각각 단계 및 상황별 목업금형을 제작하여 현재 국내검사기준으로 진행되는 성능테스트인 기차테스트를 진행하였습니다. 먼저 수량계의 특성상 수량계 내부의 유량을 유체역학 및 유동해석으로 정확히 뽑아내는 것이 불가능하여 유입부 유출부의 유량의 흐름을 기준으로 유체역학 및 유동해석을 진행하였습니다. 테스트 후 그 결과 값으로 유입부의 스트레이너의 삽입 각도를 0°, 90°, 135°, 180°, 270°로 각각 제작하여 테스트를 진행하였으며, 내부 임펠러는 straight, SR, SL, SL R70, SL R60, R75, SR R65 형상으로 각각 제작하여 테스트를 진행하였습니다. 전반적으로 기존의 수량계보다 높은 성능을 보여주었으며, 특정 스트레이너의 삽입각도 및 임펠러의 형상에서는 기존보다 훨씬 유수율이 절감되는 결과값이 나왔습니다. 그로 인해 검사기준에 쉽게 부합할 수 있으며 물 사용량을 보다 정확히 계측하여 정확한 수도요금을 부과하여 국세 낭비로 인한 경제적 손실을 감소할 수 있을 것 같습니다.

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Design and Test of ASME Strainer for Coolant System of Research Reactor (연구용 원자로 냉각계통의 ASME 스트레이너 설계 및 성능시험)

  • Park, Yong-Chul;Park, Jong-Ho
    • The KSFM Journal of Fluid Machinery
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    • v.2 no.3 s.4
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    • pp.24-29
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    • 1999
  • The ASME strainers have been newly installed at the suction side of each reactor coolant pump to get rid of the foreign materials which may damage the pump impeller or interfere with the coolant path of fuel flow tube or primary plate type heat exchanger. The strainer was designed in accordance with ASME SEC. III, DIV. 1, Class 3 and the structural integrity was verified by seismic analysis. The screen was designed in accordance with the effective void area from the result of flow analysis for T-type strainer. After installation of the strainer, it was confirmed through the field test that the flow characteristics of primary cooling system were not adversely affected. The pressure loss coefficient was calculated by Darcy equation using the pressure difference through each strainer and the flow rate measured during the strainer performance test. And these are useful data to predict flow variations by the pressure difference.

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Development of Y Strainer Type Automatic Flow Rate Regulating Valve (Y 스트레이너형 자동 정유량 조절 밸브의 개발)

  • Yoon, Joon-Yong;Kwon, Woo-Chul
    • The KSFM Journal of Fluid Machinery
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    • v.10 no.1 s.40
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    • pp.49-55
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    • 2007
  • An 'Y' strainer type automatic flow rate regulating valve, which functions are to remove impurities from hot water inside the pipe and to maintain a constant flow rate regardless of variations of the differential pressure between valve inlet and outlet at the same time, is developed for distributing hot water equally to several pipes with district heating or central heating system. Numerical analysis of the three dimensional turbulent flow field in a valve shape is carried out to confirm the flow field whether the designed regulator shape is acceptable or not. The final developed valve improves installation time and cost and maintenance ability comparing with set-up 'Y' strainer and regulator separately. Tolerance for the nominal flow rate is also satisfied within ${\pm}5%$.

Porous modeling for the prediction of pressure drop through a perforated strainer (타공형 스트레이너의 압력강하 예측을 위한 다공성모델링)

  • Jung, Il-Sun;Park, Jae-Hyun;Bae, Jae-Hwan;Kang, Sangmo
    • Journal of Advanced Marine Engineering and Technology
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    • v.37 no.4
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    • pp.358-367
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    • 2013
  • In the present paper, we apply a porous modelling technique to accurately predict the pressure drop through the strainer by replacing all or some of the filter composed of perforated plates with porous media and there imposing the streamwise and transverse loss coefficients required according to the Forchheimer law and then confirm its effectiveness. At first, the streamwise coefficient is obtained by performing a simple simulation on the pipe flow mimicking the hole flow. Subsequently, the transverse coefficient is obtained by setting a unit pattern to have common flow loss characteristics with the repeated shape patterns in the filter, then performing numerical simulations on the prototype and porous model of the unit shape pattern, and finally comparing their results of pressure drop. To validate the applied modeling technique, we perform the numerical simulation with the two specified loss coefficients on a whole shape of strainer and compare the modeling results with those of the corresponding prototype numerical simulation. Comparison indicates that the modeling technique can predict the pressure drop and flow characteristics comparatively accurately and save the number of nodes closely related to the computational cost (CPU and memory) by about 3~4 times compared with the prototype simulation.