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A 2-kW COIL With a Square Pipe-Array JSOG and Nitrogen Buffer Gas

机译:具有方管阵列JSOG和氮气缓冲气体的2kW线圈

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A 2-kW-class chemical oxygen-iodine laser (COIL) using nitrogen buffer gas has been developed and tested since industrial applications of COIL devices will require the use of nitrogen as the buffer gas. The laser, with a gain length of 11.7 cm, is energized by a square pipe-array jet-type singlet oxygen generator (SPJSOG) and employs a nozzle bank with a designed Mach number of 2.5. The SPJSOG has advantages over the traditional plate-type JSOG in that it has less requirements on basic hydrogen peroxide (BHP) pump, and more important, it has much better operational stability. The SPJSOG without a cold trap and a gas-liquid separator could provide reliable operations for a total gas flow rate up to 450 mmol/s and with a low liquid driving pressure of around 0.7 atm or even lower. The nozzle bank was specially designed for a COIL using nitrogen as the buffer gas. The cavity was designed for a Mach number of 2.5, in order to provide a gas speed and static temperature in the cavity similar to that for a traditional COIL with helium buffer gas and a Mach 2 nozzle. An output power of 2.6 kW was obtained for a chlorine flow rate of 140 mmol/s, corresponding to a chemical efficiency of 20.4%. When the chlorine flow rate was reduced to 115 mmol/s, a higher chemical efficiency of 22.7% was attained. Measurements showed that the SPJSOG during normal operation could provide a singlet oxygen yield Y ≥55%, a chlorine utilization U ≥85%, and a relative water vapor concentration w=[H_(2)O]/([O_(2)]+[Cl_(2)])≤0.1.
机译:由于使用COIL设备的工业应用将需要使用氮气作为缓冲气体,因此已经开发并测试了使用氮气缓冲气体的2 kW级化学氧碘激光器(COIL)。增益长度为11.7 cm的激光由方管阵列喷射型单线态氧气发生器(SPJSOG)供电,并采用设计马赫数为2.5的喷嘴组。 SPJSOG相对于传统板式JSOG的优势在于,它对碱性过氧化氢(BHP)泵的要求更少,更重要的是,它具有更好的运行稳定性。不带冷阱和气液分离器的SPJSOG可以提供可靠的操作,使总气体流速高达450 mmol / s,液体驱动压力低至约0.7 atm甚至更低。喷嘴组是专门为使用氮气​​作为缓冲气体的COIL设计的。腔的马赫数设计为2.5,以便在腔中提供类似于具有氦缓冲气体和Mach 2喷嘴的传统COIL的气体速度和静态温度。对于氯流速为140 mmol / s的情况,获得2.6 kW的输出功率,对应于20.4%的化学效率。当氯流速降低到115mmol / s时,获得了22.7%的更高化学效率。测量表明,SPJSOG在正常运行期间可以提供单重态氧产率Y≥55%,氯利用率U≥85%,相对水蒸气浓度w = [H_(2)O] /([O_(2)] + [Cl_(2)])≤0.1。

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