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직·병렬연결시 리액터를 이용한 초전도 소자의 퀜치 특성
최효상,임성훈,조용선,남긍현,이나영,박형민,Choi, Hyo-Sang,Lim, Sung-Hun,Cho, Yong-Sun,Nam, Gueng-Hyun,Lee, Na-young,Park, Hyoung-Min 한국전기전자재료학회 2005 전기전자재료학회논문지 Vol.18 No.9
We investigated quench characteristics of superconducting elements connected in series and parallel each other. The serial and parallel connections of superconducting elements causes a difficulty in simultaneous quench due to slight difference between their critical current densities. In other to induce simultaneous quench, we fabricated four type circuits; serially connected circuit before parallel connection, the circuit connected in parallel before serial connection, serially connected circuit before parallel connection with reactors, the circuit connected in Parallel before serial connection with reactors. We confirmed that the simultaneous quenches occurred in serial and parallel connections of superconducting elements using reactors. In addition, the power burden of superconducting elements was smaller than those of serial and parallel connections of superconducting elements without reactors.
Operating Properties of Resistive Superconducting Fault CurrentLimiters with Various Pattern Shapes
최효상 한국전기전자재료학회 2003 전기전자재료학회논문지 Vol.16 No.12S
Quench behavior of resistive superconducting fault current limiters (SFCLs) with various pattern shapes was investigated. The pattern shapes employed were meander, bi-spiral, and spiral shapes of identical line width, gap and margin. SFCLs were fabricated from YBCO thin films grown on two-inch diameter Al2O3 substrates under the same conditions. The total length of current limiting paths was the shortest at the spiral shape due to its larger useless space. Inductance component of SFCLs with the spiral shape was around two times as high as those of other two shapes. This is not desirable since impedance characteristics of existing power systems can be changed. Resistance rise of current limiting elements was low at a spiral shape before the whole quench completion, which may act as a disadvantage for simultaneous quench in serial connection between current limiting elements, but the temperature tended to have similar values at higher voltages. On the other hand, bi-spiral shape was severe at insulation level between current limiting lines. When these aspects were considered, we concluded that a meander shape was appropriate to design for a resistive SFCL based on thin films except the concentration of electric field at edge areas of strip lines.
초전도 선재에서 초기 충진압력과 테이프화를 위한 가압이 임계특성에 미치는 영향
최효상,한태희,박성진,한병성 한국전기전자재료학회 1993 電氣電子材料學會誌 Vol.6 No.5
초기충진압력이 서로 다른 시편에 가한 가압횟수와 열처리시간의 혼합공정이 임계전류밀도 특성에 미치는 영향을 관찰하기 위하여 power-in-tube방법으로 초전도 선재를 제조하였다. 일정 초기충진압력에서 테이프화를 위한 열처리 및 가압이 혼합공정횟수가 증가할수록 임계전류밀도가 증가하였다. 초기충진압력이 1000kg/$cm^{2}$에서 Bi-2223 고온상 체적비가 가장 높게 나타났고 결정립이 판상으로 성장되었을 뿐만 아니라 C축과 직각방향으로 잘 배양되어 있음을 관찰할 수 있었다. 특히 초기충진압력 1000kg/$cm^{2}$의 시편을 두께를 줄이기 위하여 3회 가압하고 450시간 열처리하였을때 임계전류밀도가 5800A/$cm^{2}$를 나타내었으며 이를 중심으로 500, 2500kg/$cm^{2}$이 양측단으로 가우시안분포를 보였다. 결론적으로 시편의 임계특성은 적정 초기충진압력, Bi-2223 고온상 체적비, 테이프화를 위한 가압횟수, 결정의 일방향배열, 결정립의 성장등에 강하게 의존함을 알 수 있었다.
Phase transition between pressure and heat release oscillations in hybrid rocket combustion
최효상,이창진,강상훈 대한기계학회 2019 JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY Vol.33 No.12
To understand the initiating mechanism of low frequency instability (LFI) in hybrid rocket combustion, numerical calculation was performed using a direct numerical simulation (DNS). Special attention was paid to the effect of the equivalence ratio on the shift in the phase difference between pressure (p’) and heat release oscillations (q’). A change in the equivalence ratio was considered by varying the temperature and composition of the combustion gas that entered into the post combustion chamber. In the obtained results, additional combustion was successfully simulated along with a vortex generation over the backward step, and combustion pressure and heat release oscillations were clearly reproduced as small vortices that move downward. In addition, the obtained results confirmed that the phase difference between pressure and heat release oscillations shifted because of the changes in the propagation speed of the pressure wave when the temperature of the combustion gas changes.
하이브리드 로켓의 저주파불안정성에 미치는 당량비 영향 직접수치해석
최효상,이창진,강상훈 한국추진공학회 2019 한국추진공학회지 Vol.23 No.2
To understand the low frequency instability(LFI) characteristics in hybrid rockets combustion, effects of equivalence ratio variations on the phase shift between pressure and heat release oscillations were investigated by using the direct numerical simulation. The change in the equivalence ratio of the main chamber was simulated by the temperature and composition variation of the combustion gas introduced into the post-combustion chamber. In the results, additional combustion appeared along with vortex generation at the backward step, and combustion pressure and heat release oscillations were observed as the vortex moved. In addition, the results confirmed that the phase difference between the pressure and heat release oscillation shifts because of the changes in the propagation velocity of pressure wave as the temperature of combustion gas changes. 하이브리드로켓의 저주파수 연소불안정(LFI) 특성을 이해하기 위해, 주연소실의 연소 당량비 변화가 500 Hz대역의 압력 및 열방출 진동의 위상변화에 미치는 영향에 대해 직접수치해석을 수행하였다. 주연소실의 당량비 변화는 후연소실로 유입되는 연소가스의 온도 및 조성 변화로 모사하였다. 수치해석 결과, 후향 계단 하류에 와류 생성과 함께 추가적인 연소가 나타나며, 와류가 이동함에 따라 연소 압력 및 반응률의 진동이 관찰되었다. 또한, 유입유동의 온도가 변화하면 압력파의 전파속도도 함께 변화하므로 압력 및 반응률 진동 사이의 위상차가 천이하게 됨을 확인하였다.
Current and voltage loading tests off resistive SFCL
최효상,현옥배,김혜림,황시돌,박권배 한국초전도학회 2002 Progress in superconductivity Vol.3 No.2
We have performed the current and voltage loading tests of resistive superconducting fault current limiters (SFCLS) based on $YBa_2$$Cu_3$$O_{7}$(YBCO) films with the diameter of 2 inch. The SFCL consists of meander-type YBCO stripes covered with 200 nm Au layer grown in situ for current shunt and heat dispersion at hot spots. The minimum quench current of an SFCL unit was about 25 Apeak. Seven SFCL units were connected in parallel fur the current load ing tests at power source of 100 $V_{rms}$ $/2,000A_{rms}$. This SFCL units had maximum limiting current of 170 Apeak during the fault instant and then successfully controlled the fault current below 100 Apeak within 1~2 msec after short circuit. Increased short current also reduced the quench completion time with little change of current limiting characterization. We connected six SFCL units in series fur the voltage loading tests at power source of $1,200 V_{rms}$/170 $A_{rms}$ at this time. The shunt resistors were inserted into each SFCL unit to eliminate power imbalance originated from serial connection of SFCL units. Each SFCL unit was quenched simultaneously during the fault condition. The current increased up to 40 $A_{peak}$ and decreased to 14 $A_{peak}$ after 3 cycles. Quench was completed within 1 msec after the fault. We confirmed operating characteristics of 140 kVA($120 A_{rms}$ $\times$ 1,200 $V_{rms}$) SFCL and presented the manufacturing possibility of 3.3 kV SFCL using 4 inch YBCO films.BCO films.lms.