安徽农业科学
安徽農業科學
안휘농업과학
JOURNAL OF ANHUI AGRICULTURAL SCIENCES
2009年
31期
15441-15442,15446
,共3页
刘臣辉%崔小丽%吴瑾%吕信红
劉臣輝%崔小麗%吳瑾%呂信紅
류신휘%최소려%오근%려신홍
生产潜力%潜力递减法%扬州市
生產潛力%潛力遞減法%颺州市
생산잠력%잠력체감법%양주시
Potential productivity%Potential degression method%Yangzhou City
对潜力递减法的基本参数逐个研究,给出各个参数的取值或者是具体的计算模型,计算扬州市粮食作物玉米、水稻和小麦的生产潜力.结果表明,光能利用率取3.51%,水稻、小麦、玉米的经济系数分别取0.50、0.40、0.35,在最差气候条件下生产潜力与平均状态分别相差4%、4%和2%,最佳气候条件下,分别比平均条件高3%、7%和2%,相差在较低的水平上,且产潜比都是在30%左右,验证了所选参数适合应用于计算扬州市粮食作物生产潜力的计算.扬州市粮食作物的生产潜力平均在20 751~21 709、26 239~27 954、15 857~17 611 kg/km~2,增产潜力大,温度和土地质量是主要的限制因子.
對潛力遞減法的基本參數逐箇研究,給齣各箇參數的取值或者是具體的計算模型,計算颺州市糧食作物玉米、水稻和小麥的生產潛力.結果錶明,光能利用率取3.51%,水稻、小麥、玉米的經濟繫數分彆取0.50、0.40、0.35,在最差氣候條件下生產潛力與平均狀態分彆相差4%、4%和2%,最佳氣候條件下,分彆比平均條件高3%、7%和2%,相差在較低的水平上,且產潛比都是在30%左右,驗證瞭所選參數適閤應用于計算颺州市糧食作物生產潛力的計算.颺州市糧食作物的生產潛力平均在20 751~21 709、26 239~27 954、15 857~17 611 kg/km~2,增產潛力大,溫度和土地質量是主要的限製因子.
대잠력체감법적기본삼수축개연구,급출각개삼수적취치혹자시구체적계산모형,계산양주시양식작물옥미、수도화소맥적생산잠력.결과표명,광능이용솔취3.51%,수도、소맥、옥미적경제계수분별취0.50、0.40、0.35,재최차기후조건하생산잠력여평균상태분별상차4%、4%화2%,최가기후조건하,분별비평균조건고3%、7%화2%,상차재교저적수평상,차산잠비도시재30%좌우,험증료소선삼수괄합응용우계산양주시양식작물생산잠력적계산.양주시양식작물적생산잠력평균재20 751~21 709、26 239~27 954、15 857~17 611 kg/km~2,증산잠력대,온도화토지질량시주요적한제인자.
Based on the study of potential modification method' s parameters, the values of various parameters or specific computing model were given. The potential productivity of com, rice and wheat in Yangzhou City was calculated. Taking light energy utilization rate as 3.51 % , economical coefficient of rice, wheat and com as 0.50, 0.40 and 0. 35 resp. , the productive potential was 4% , 4% and 2% lower than average level respectively under the worst weather conditions. Under the best climate conditions, the productive potential was 3% , 7% and 2% higher than average level. The difference was at a very low level and the actual production was 30% of potential production, so the selected parameters were suitable for calculating the production potential of food crops in Yangzhou City. The potential for the production of food crops were 20 751 -21 709, 26 239 -27 954, 15 857 -17 611 kg/km~2, potential output was large, temperature and soil quality were the major limiting factors.