人民黄河
人民黃河
인민황하
Yellow River
2014年
12期
58-61
,共4页
任文裕%魏定勇%杨良权%孙洪升
任文裕%魏定勇%楊良權%孫洪升
임문유%위정용%양량권%손홍승
地下水%水资源总量%可开采量%水源地
地下水%水資源總量%可開採量%水源地
지하수%수자원총량%가개채량%수원지
groundwater resources%total water resources%available exploitation%water source area
为了对内蒙古巴彦浩特水源地地下水资源状况进行评价,对水源地的地下水资源总量、可开采量及水质进行了计算和分析。结果表明:利用水均衡法计算得到巴彦浩特地下水总补给量为687.573万m3/a,总排泄量为728.673万m3/a,总补给量与总排泄量的差值为41.100万m3/a,占总排泄量的5.98%,计算结果与实际比较符合;采用开采系数法、抽水试验法、水位恢复法计算得出地下水可开采量分别为541.858万、596.758万、621.234万m3/a,选取最小值作为水源地可开采量;开采井的水混合后的水质分析表明,氯化物含量超标,供水过程中应对氯化物进行处理。
為瞭對內矇古巴彥浩特水源地地下水資源狀況進行評價,對水源地的地下水資源總量、可開採量及水質進行瞭計算和分析。結果錶明:利用水均衡法計算得到巴彥浩特地下水總補給量為687.573萬m3/a,總排洩量為728.673萬m3/a,總補給量與總排洩量的差值為41.100萬m3/a,佔總排洩量的5.98%,計算結果與實際比較符閤;採用開採繫數法、抽水試驗法、水位恢複法計算得齣地下水可開採量分彆為541.858萬、596.758萬、621.234萬m3/a,選取最小值作為水源地可開採量;開採井的水混閤後的水質分析錶明,氯化物含量超標,供水過程中應對氯化物進行處理。
위료대내몽고파언호특수원지지하수자원상황진행평개,대수원지적지하수자원총량、가개채량급수질진행료계산화분석。결과표명:이용수균형법계산득도파언호특지하수총보급량위687.573만m3/a,총배설량위728.673만m3/a,총보급량여총배설량적차치위41.100만m3/a,점총배설량적5.98%,계산결과여실제비교부합;채용개채계수법、추수시험법、수위회복법계산득출지하수가개채량분별위541.858만、596.758만、621.234만m3/a,선취최소치작위수원지가개채량;개채정적수혼합후적수질분석표명,록화물함량초표,공수과정중응대록화물진행처리。
In order to evaluate the groundwater resources of Bayanhaot water source area of Inner Mongolia,the total quantity,production and qual-ity of groundwater resources of water source area were calculated and analyzed. The results show that the Bayanhaot groundwater recharge is 6. 87573 million m3/a,total discharging is 7. 28673 million m3/a,the difference of total recharge and total discharging is 411,000 m3/a,accounting for 5. 98% of the total discharging and the calculation results are in good agreement with the actual;using mining coefficient method and pumping test method and the water level recovery method,it obtains that the available exploitation of groundwater is 5. 41858 million,5. 96758 million and 6. 21234 million m3/a respectively,selecting the minimum value as the available exploitation of water source area. The mixed mining wells of water after the water quality analysis shows that the chloride content is exceeded,it should treat the chloride during the process of water supply.