水利学报
水利學報
수리학보
2014年
7期
867-874,882
,共9页
郭新蕾%杨开林%夏庆福%付辉
郭新蕾%楊開林%夏慶福%付輝
곽신뢰%양개림%하경복%부휘
P.K堰%泄流能力%溢洪道%洪水标准%升级改造
P.K堰%洩流能力%溢洪道%洪水標準%升級改造
P.K언%설류능력%일홍도%홍수표준%승급개조
Piano Key Weir%discharge capacity%spillway%flood standard%upgrade and rehabilitate
琴键堰(P.K堰)是目前水库大坝溢洪道升级改造新技术中出现的堰型,它能有效解决现有水库极端致灾因子条件下泄流能力急剧增加的问题。设计P.K堰首先要研究其泄流能力特性,它直接关系到PMF条件下最大水库水位或库容的确定。本文首先对最近两年发表的P.K堰泄流能力公式进行了对比,然后结合已有试验数据,通过量纲分析和多参数优化,给出了推荐公式,并利用该公式对P.K堰的泄流特性和超泄能力进行了研究。结果表明,当上游水头较小,一般H/P<0.2时,P.K堰流量系数较大,超泄比系数大于3,泄流量增量比较明显,随着上游水头的增大,堰的总宽度对泄量起主要作用,其泄量增大的优势也越来越弱,实用范围内的超泄比在1.2~3.5之间。本文给出公式的预测值跟已发表的试验值符合良好,平均误差在5%~8%,比Machiels公式误差更小,该公式可供P.K堰泄流能力评估和优化设计时参考。
琴鍵堰(P.K堰)是目前水庫大壩溢洪道升級改造新技術中齣現的堰型,它能有效解決現有水庫極耑緻災因子條件下洩流能力急劇增加的問題。設計P.K堰首先要研究其洩流能力特性,它直接關繫到PMF條件下最大水庫水位或庫容的確定。本文首先對最近兩年髮錶的P.K堰洩流能力公式進行瞭對比,然後結閤已有試驗數據,通過量綱分析和多參數優化,給齣瞭推薦公式,併利用該公式對P.K堰的洩流特性和超洩能力進行瞭研究。結果錶明,噹上遊水頭較小,一般H/P<0.2時,P.K堰流量繫數較大,超洩比繫數大于3,洩流量增量比較明顯,隨著上遊水頭的增大,堰的總寬度對洩量起主要作用,其洩量增大的優勢也越來越弱,實用範圍內的超洩比在1.2~3.5之間。本文給齣公式的預測值跟已髮錶的試驗值符閤良好,平均誤差在5%~8%,比Machiels公式誤差更小,該公式可供P.K堰洩流能力評估和優化設計時參攷。
금건언(P.K언)시목전수고대패일홍도승급개조신기술중출현적언형,타능유효해결현유수고겁단치재인자조건하설류능력급극증가적문제。설계P.K언수선요연구기설류능력특성,타직접관계도PMF조건하최대수고수위혹고용적학정。본문수선대최근량년발표적P.K언설류능력공식진행료대비,연후결합이유시험수거,통과량강분석화다삼수우화,급출료추천공식,병이용해공식대P.K언적설류특성화초설능력진행료연구。결과표명,당상유수두교소,일반H/P<0.2시,P.K언류량계수교대,초설비계수대우3,설류량증량비교명현,수착상유수두적증대,언적총관도대설량기주요작용,기설량증대적우세야월래월약,실용범위내적초설비재1.2~3.5지간。본문급출공식적예측치근이발표적시험치부합량호,평균오차재5%~8%,비Machiels공식오차경소,해공식가공P.K언설류능력평고화우화설계시삼고。
The concept of Piano Key Weir (PKW) is a new technique and trend used to rehabilitate nu-merous existing dams, which can increase the unit discharge at the unregulated spillway inlet for similar heads and widths. As it is a relatively novel structure, its hydraulic design remains problematic. The dis-charge capacity character is one of the most important hydraulic features which directly linked to the maxi-mum reservoir level during floods under PMF. The recently published equations relating to the head dis-charge ratio of PKW was summarized. Combining with the existing experimental data, the paper proposed a new formula based on the dimensional analysis and multi-parameter optimization,then the discharge capaci-ty and increase ratio of PKW was studied. The results show that the efficiency of PKW is particularly high for the small head ratio of H/P, for H/P<0.2, the increase ratio is bigger than 3 and then the total length plays the leading role when H/P increased. The practical extend of increase ratio is between 1.2 and 3.5. Also the predicted values agree well with the published experimental results with the average error less than 8%, which is smaller than the Machiels equation. The proposed head discharge relationship can be used for the design of PKW and helps to provide a reference.