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首頁» 過刊瀏覽» 2020» Vol.5» Issue(2) 290-298???? DOI : 10.3969/j.issn.2096-1693.2020.02.025
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基于 DEA 方法的中國油氣勘探開發(fā)行業(yè)技術進步貢獻率測算與分析
劉明明,,胡歡,王建良
中國石油大學(北京) 經(jīng)濟管理學院,,北京 102249
Calculation and analysis of the contribution rate of technological progress ? in China's oil & gas exploration and development industry based on the DEA method
LIU Mingming, HU Huan, WANG Jianliang
School of Economics and Management, China University of Petroleum-Beijing, Beijing 102249, China

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摘要? 作為國民經(jīng)濟的主導產(chǎn)業(yè)之一,,油氣行業(yè)對國民經(jīng)濟有著重要的推動作用。在影響油氣行業(yè)上游發(fā)展的 諸多因素中,,技術進步帶來的作用十分關鍵,。本文針對我國 15 個油氣生產(chǎn)省份,,基于技術進步與經(jīng)濟增長理 論,采用DEA方法,,從縱向和橫向上定量測算了這些省份 2003—2017 年間技術有效值,、全要素生產(chǎn)率和技術 進步貢獻率 3 個指標的變化情況,以科學解釋技術進步對我國油氣工業(yè)上游發(fā)展的具體效果,。計算結(jié)果表明,, 不同省份的技術有效值存在較大差異,廣東,、四川和青海省的技術有效值相對較高,,而甘肅、吉林和河南的技 術有效值較低,,導致這種差異的重要原因在于油氣資源狀況與技術水平,;我國油氣勘探開發(fā)行業(yè)全要素生產(chǎn)率 總體上呈現(xiàn)出了增長趨勢,2003—2017 年全要素生產(chǎn)率的平均增長率為 9.1%,,同期對油氣產(chǎn)出的平均貢獻率為 215.4%,,表明綜合技術進步確實對油氣上游產(chǎn)出產(chǎn)生了顯著的正貢獻;對全要素生產(chǎn)率分析發(fā)現(xiàn),,技術進步平 均增長率為 6.4%,,技術效率平均增長率為 14.9%,規(guī)模效率平均增長率為 8.8%,,純技術效率平均增長為 3.5%,, 表明規(guī)模效率顯著提升引起的技術效率提高是全要素生產(chǎn)率增長的主要原因,。在未來油氣資源勘探難度增大,、 資源豐度下降、資源劣質(zhì)化程度加深的背景下,,中國油氣行業(yè)上游勘探開發(fā)將更加依賴科技的持續(xù)進步,,需要 國家、行業(yè),、企業(yè) 3 個維度共同作用,,一方面重視規(guī)模效率對技術效率的影響,通過對新技術的推廣利用做大 技術的規(guī)模效應,,進而提高技術效率,;另一方面,加大對革命性技術的投入,,并加強對科技人員的培養(yǎng),,以不 斷涌現(xiàn)的技術成果解決油氣勘探開發(fā)行業(yè)遇到的一系列難題,促進油氣勘探開發(fā)行業(yè)的可持續(xù)發(fā)展,。
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關鍵詞 : 油氣工業(yè);DEA,;技術進步,;技術效率;規(guī)模效率,;貢獻率
Abstract
The oil and gas industry plays an important role in the national economy. Among the many factors affecting the development of the upstream oil and gas industry, the role of technological progress is critical. Based on the theory of technological progress and economic growth, this paper used the data envelopment analysis (DEA) method to quantitatively calculate the changes of three indicators from 2003 to 2017 in 15 oil and gas producing provinces in China These indicators are technical effective value, total factor productivity and contribution rate of technological progress, to explain the specific effects of technological progress on the development of China’s upstream oil and gas industry. The results show that the technical effective values of different provinces vary greatly. Guandong, Sichuan and Qinghai are relatively high, while Gansu, Jilin and Henan are relatively low, and the important reason for the difference lies in the oil and gas resources and technical level. The total factor productivity of China's oil and gas exploration and development industry shows an overall growth trend, with an average
growth rate of 9.1% from 2003 to 2017, and its overall contribution to output during the same period was 215%, indicating that comprehensive technological progress had indeed made a significant positive contribution to the upstream oil and gas output. Furthermore, the analysis of total factor productivity shows that the average growth rate of technological progress, technological efficiency, scale efficiency and pure technical efficiency are 6.4%, 14.9%, 8.8% and 3.5% respectively, which indicates that technical efficiency improvement caused by the significant increase of scale efficiency is the main reason for the growth of total factor productivity. Against the background of increasing difficulty in prospecting for oil and gas resources, decreasing resource abundance, and reducing resource quality, China's oil and gas industry upstream exploration and development will be more dependent on the continuous progress of science and technology. This needs the government, the industry and related enterprises to work together. On the one hand, to pay attention to the impact of scale efficiency on the technical efficiency, and try to enlarge the scale efficiency through promoting the use of technology to finally improve the technical efficiency. On the other hand,
the investment in revolutionary technologies should be increased to solve various problems in the oil and gas exploration and development industry with emerging technological achievements, so as to promote the sustainable development of the oil and gas exploration and development industry.

 

Key words: oil and gas industry; DEA; technological progress; technological efficiency; scale efficiency; contribution rate
收稿日期: 2020-06-30 ????
PACS: ? ?
基金資助:教育部人文社會科學研究青年基金(19YJCZH106),、國家自然科學基金項目(71874201,,71503264,71673297,71874202) 資助
通訊作者: [email protected]
引用本文: ??
LIU Mingming, HU Huan, WANG Jianliang. Calculation and analysis of the contribution rate of technological progress in China's oil & gas exploration and development industry based on the DEA method. Petroleum Science Bulletin, 2020, 02: 290-298.
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