采矿与安全工程学报
採礦與安全工程學報
채광여안전공정학보
JOURNAL OF MINING AND SAFETY ENGINEERING
2014年
3期
476-482
,共7页
刘谦%林柏泉%朱传杰%江丙友%洪溢都%孙豫敏
劉謙%林柏泉%硃傳傑%江丙友%洪溢都%孫豫敏
류겸%림백천%주전걸%강병우%홍일도%손예민
瓦斯爆炸%长度%流速%超压%振荡
瓦斯爆炸%長度%流速%超壓%振盪
와사폭작%장도%류속%초압%진탕
gas explosion%length%velocity%overpressure%oscillation
为了研究管道长度对瓦斯爆燃爆炸波前流速与超压耦合关系的影响,采用数值模拟的方法研究了封闭管道内爆炸超压与波前流速的传播特征。研究结果表明:不同长度下管道内的最终爆炸超压均趋于0.7~0.9 MPa之间;对于较短管道,流速峰值相对较小,流速峰值的下降趋势较平缓,流速在正负区间的振荡频率较快;对于较长管道,流速峰值相对较大,峰值下降趋势较快,振荡频率较慢;在15~20 m之间存在一个临界长度,当管长大于临界长度时,管道内会出现2个最低超压峰值,当管长小于临界长度时,则管内只会出现1个最低超压峰值;首次流速峰值与超压表现出良好的正比关系,通过拟合得到不同长度下首次流速峰值与超压的耦合关系。研究成果可为今后受限空间内爆炸的预防与控制提供基础理论参考。
為瞭研究管道長度對瓦斯爆燃爆炸波前流速與超壓耦閤關繫的影響,採用數值模擬的方法研究瞭封閉管道內爆炸超壓與波前流速的傳播特徵。研究結果錶明:不同長度下管道內的最終爆炸超壓均趨于0.7~0.9 MPa之間;對于較短管道,流速峰值相對較小,流速峰值的下降趨勢較平緩,流速在正負區間的振盪頻率較快;對于較長管道,流速峰值相對較大,峰值下降趨勢較快,振盪頻率較慢;在15~20 m之間存在一箇臨界長度,噹管長大于臨界長度時,管道內會齣現2箇最低超壓峰值,噹管長小于臨界長度時,則管內隻會齣現1箇最低超壓峰值;首次流速峰值與超壓錶現齣良好的正比關繫,通過擬閤得到不同長度下首次流速峰值與超壓的耦閤關繫。研究成果可為今後受限空間內爆炸的預防與控製提供基礎理論參攷。
위료연구관도장도대와사폭연폭작파전류속여초압우합관계적영향,채용수치모의적방법연구료봉폐관도내폭작초압여파전류속적전파특정。연구결과표명:불동장도하관도내적최종폭작초압균추우0.7~0.9 MPa지간;대우교단관도,류속봉치상대교소,류속봉치적하강추세교평완,류속재정부구간적진탕빈솔교쾌;대우교장관도,류속봉치상대교대,봉치하강추세교쾌,진탕빈솔교만;재15~20 m지간존재일개림계장도,당관장대우림계장도시,관도내회출현2개최저초압봉치,당관장소우림계장도시,칙관내지회출현1개최저초압봉치;수차류속봉치여초압표현출량호적정비관계,통과의합득도불동장도하수차류속봉치여초압적우합관계。연구성과가위금후수한공간내폭작적예방여공제제공기출이론삼고。
To study the influence of pipe length on the coupled relationship between the flow velocity of detonation front and peak overpressure caused by gas deflagration, the propagation characteristics of overpressure and velocity in a closed end pipe was studied by numerical simulation in this paper. The results show that all of the last explosion overpressure attenuate to 0.7~0.9 MPa in the pipes with dif-ferent lengths. For the short pipes, the peak value of velocity is relatively small, and the decline trend of the peak velocity value is relatively gentle, while the oscillation frequency of velocity is relatively fast in the positive and negative interval. For the relatively long pipes, the peak value of velocity is relatively large, and the decline of peak value is fast, while the oscillation frequency is small. In addition, there exists a critical length between 15 m and 20 m. When the pipe length is larger than the critical length, two minimum overpressure peaks will appear, and when the pipe length is shorter than the critical length, only one minimum overpressure peak appears. Moreover, the first peak value of velocity is in good proportion to the overpressure. The coupled relation between the first peak value of velocity and overpressure was obtained by the numerical data fitting. The results can provide reference to explosion prevention and control in the limited space.