农业工程学报
農業工程學報
농업공정학보
2014年
20期
268-276
,共9页
陈丽%郝晋珉%艾东%朱传民%周宁%洪舒蔓
陳麗%郝晉珉%艾東%硃傳民%週寧%洪舒蔓
진려%학진민%애동%주전민%주저%홍서만
农业%区划%模型%耕地%耕地综合量能指数%耕地综合产能
農業%區劃%模型%耕地%耕地綜閤量能指數%耕地綜閤產能
농업%구화%모형%경지%경지종합량능지수%경지종합산능
agriculture%zoning%models%cultivated land%cultivated land yield and produce capacity index%cultivated land comprehensive productivity
研究粮食产量与耕地产能间的关系以及区域差异,对于挖掘区域增产潜力,提高耕地资源利用效率,实现区域均衡增产,保障粮食安全战略具有重要意义。该文在农业生态区划法估算土地生产潜力基础上,提出基于耕地质量新内涵的耕地质量修正的耕地产能核算方法。通过探讨耕地综合产能的概念体系,构建了反映粮食产量与耕地产能关系的耕地综合量能指数模型,模型由耕地综合量能指数、耕地质量产能指数和耕地数量产能指数构成。并以曲周县为例,对该模型进行了实证研究,曲周县耕地综合量能指数为0.16,耕地质量产能指数为0.31,耕地数量产能指数为0.99,耕地总体产出效率不高,粮食增产的潜力较大,耕地粮食生产平均开发程度也不高,但数量增加潜力较小。
研究糧食產量與耕地產能間的關繫以及區域差異,對于挖掘區域增產潛力,提高耕地資源利用效率,實現區域均衡增產,保障糧食安全戰略具有重要意義。該文在農業生態區劃法估算土地生產潛力基礎上,提齣基于耕地質量新內涵的耕地質量脩正的耕地產能覈算方法。通過探討耕地綜閤產能的概唸體繫,構建瞭反映糧食產量與耕地產能關繫的耕地綜閤量能指數模型,模型由耕地綜閤量能指數、耕地質量產能指數和耕地數量產能指數構成。併以麯週縣為例,對該模型進行瞭實證研究,麯週縣耕地綜閤量能指數為0.16,耕地質量產能指數為0.31,耕地數量產能指數為0.99,耕地總體產齣效率不高,糧食增產的潛力較大,耕地糧食生產平均開髮程度也不高,但數量增加潛力較小。
연구양식산량여경지산능간적관계이급구역차이,대우알굴구역증산잠력,제고경지자원이용효솔,실현구역균형증산,보장양식안전전략구유중요의의。해문재농업생태구화법고산토지생산잠력기출상,제출기우경지질량신내함적경지질량수정적경지산능핵산방법。통과탐토경지종합산능적개념체계,구건료반영양식산량여경지산능관계적경지종합량능지수모형,모형유경지종합량능지수、경지질양산능지수화경지수양산능지수구성。병이곡주현위례,대해모형진행료실증연구,곡주현경지종합량능지수위0.16,경지질양산능지수위0.31,경지수양산능지수위0.99,경지총체산출효솔불고,양식증산적잠력교대,경지양식생산평균개발정도야불고,단수량증가잠력교소。
Study on the relationships between grain production and cultivated land productivity and its regional difference is of great significance for food security. Besides, it is also important for finding regional potential yields of grain, improving the utilization efficiency of cultivated land resources and achieving the regional increase of grain yield. In this paper, on the basis of agro-ecological zoning (AEZ) model, a new method was proposed to calculate the cultivated land productivity under cultivated land quality modification. Furthermore, the modification of cultivated land quality was based on a new concept that the quality of cultivated land was not only affected by natural factors but also by artificial factors such as irrigation canals, greenhouse, nursery factory, mechanical facilities and its supporting service station. By discussing the conceptual system of cultivated land integrated productivity which took the potential quantity of cultivated land and the quality index of cultivated land into the consideration, we proposed that comprehensive productivity of cultivated land was the maximum sustainable production capacity for food under the certain economic and technological conditions, and it was strongly affected by the quality and quantity of cultivated land. Additionally, according to the concept, we built a model which can reveal the relationship between grain production and cultivated land productivity. This model was made up of comprehensive yield and productivity index of cultivated land (CLYPCI), cultivated land quality productivity index (CLQLPI), and cultivated land quantity productivity index (CLQNPI). The CLYPCI was used to measure the efficiency of cultivated land grain production and to reveal the relationship between actual output of grain and cultivated land productivity in a particular area. The CLQLPI was used to describe the average output efficiency of a regional cultivated land. The CLQNPI was used to measure the degree of exploitation and utilization of cultivated land in terms of quantity. This model was constructed based on the improved AEZ model, so it was only suitable for researching the relationship between grain production and cultivated land productivity at large or medium scales. At last, in this paper Quzhou county was used as a case study for model validation. The value of CLYPCI, CLQLPI and CLQNPI was 0.16, 0.31, 0.99, respectively in Quzhou. The results showed that the output efficiency and the average development level of cultivated land were not high in general. The potential of increased quantity of cultivated land was low, but the potential of increased yield of cultivated land was high. Compared with the cultivated land comprehensive productivity (CLCP), the CLYPCI value of different towns was reduced with CLCP which was sorted from the largest to smallest except Disituan town. The output of cultivated land was proportional to its productive capacity by comparing CLCP and CLYPCI of various towns. In addition, the value of CLQLPI and CLQNPI of different towns were very similar. The CLQLPI of 10 towns fluctuated around 0.31 which was the average value of CLQLPI of Quzhou. The CLQLPI in Yizhuang was the highest. The CLQNPI of 10 towns fluctuated around 0.99 and there were six towns whose CLQNPI value was 0.99. The CLQNPI of Yizhuang was also the highest. There was little chance to increase the quantity of cultivated land for Yizhuang.