典型天氣形勢(shì)與溪洛渡電站發(fā)電供求關(guān)系的影響
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中國(guó)長(zhǎng)江電力股份有限公司科研課題“受電區(qū)域氣象條件對(duì)用電負(fù)荷的影響研究”(241802002)和中國(guó)氣象局創(chuàng)新發(fā)展專項(xiàng)(CXFZ2021Z033)共同資助


Impact of Typical Weather Circulation Situation on Relationship Between Power Supply and Demand of Xiluodu Hydropower Station
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    摘要:

    本文利用2015—2017年溪洛渡電站逐日入庫(kù)及出庫(kù)流量、逐日電站出力資料、廣東逐日用電負(fù)荷數(shù)據(jù)及NCEP逐日再分析資料,針對(duì)溪洛渡右岸電站汛期棄水嚴(yán)重、枯期水量不足,電站發(fā)電與廣東用電需求存在矛盾的幾種生產(chǎn)情景,劃分為供不應(yīng)求型、供過(guò)于求型和非典型供過(guò)于求型3種類(lèi)型,選取典型個(gè)例分析不同類(lèi)型對(duì)應(yīng)的環(huán)流形勢(shì)和天氣成因,并提出今后溪洛渡電站調(diào)度的建議。結(jié)果表明:每年5、6月,廣東常受副熱帶高壓控制,用電需求較大,而宜賓以上流域大多受一致的偏西或西南暖濕氣流控制,冷空氣活動(dòng)較弱,不利于產(chǎn)生大范圍降水,使得溪洛渡電站發(fā)電能力與廣東用電需求多呈供不應(yīng)求型;7—9月,宜賓以上流域多受高原槽及切變線影響,有利于出現(xiàn)明顯降水,電站具備滿發(fā)能力,而華南一般有低渦切變或臺(tái)風(fēng)活動(dòng),有利于廣東出現(xiàn)降水,由于不受副高控制且出現(xiàn)降水,廣東用電需求降低,導(dǎo)致出現(xiàn)供過(guò)于求型;如廣東在副熱帶高壓控制之下,用電需求旺盛,但溪洛渡右岸具備滿發(fā)能力而出現(xiàn)棄水的情景,往往是因?yàn)槲髂系貐^(qū)降水總體較強(qiáng),其他水電站加大出力,而電網(wǎng)送出受限等多方面因素影響,導(dǎo)致電網(wǎng)對(duì)溪洛渡右岸的電能需求減少,即出現(xiàn)非典型供過(guò)于求型。在實(shí)際發(fā)電生產(chǎn)中可根據(jù)天氣環(huán)流形勢(shì)提前研判,更加有針對(duì)性地開(kāi)展水庫(kù)調(diào)度、優(yōu)化電站運(yùn)行,增加汛期水電電能的有效消納以及水能資源充分利用。

    Abstract:

    Based on the daily inbound and outbound flow and output data of Xiluodu Hydropower Station, the daily electricity load data of Guangdong, and the daily re-analysis data of NCEP from 2015 to 2017, this paper divides the production scenarios of Xiluodu Right Bank Hydropower Station into three types: short supply, oversupply and atypical oversupply. They are characterized by insufficient water in the dry season, severe water abandonment in flood season, and contradiction between power generation and power demand of Guangdong Province. Typical cases are selected to analyze the circulation situation and weather causes corresponding to different types, and suggestions for future dispatching of Xiluodu Hydropower Station are put forward. The results show that in May and June of each year, Guangdong is often controlled by subtropical high pressure, and the demand for electricity increases significantly. The drainage area above Yinbin is mainly located on the northwest side of the anticyclonic circulation and is controlled by a uniform westward or southwestern warm and humid air. There is no cold air activity, which is not conducive to large-scale precipitation. As a result, the power generation capacity of Xiluodu Hydropower Station is insufficient and the demand for electricity in Guangdong exceeds supply. The drainage area above Yinbin is mostly affected by plateau troughs and shear lines or cold air from the east from July to September, conducive to significant precipitation. During this period, the power station has full capacity. However, when Guangdong is affected by the typhoon system or is located on the north side of the subtropical high pressure, the power demand in Guangdong decreases, resulting in an over-supply type. If Guangdong is under the control of subtropical high voltage, the electricity demand is high. However, water abandonment on the right bank of Xiluodu happens frequently due to the increased output of other hydropower stations in the southwestern region and limited power transmission, which has led to a decreased demand for power from the power grid on the right bank of Xiluodu. This situation corresponds to atypical oversupply. In actual power generation productions, it is possible to study and judge in advance according to weather circulation situation and better carry out reservoir dispatching, optimize power station operation, and increase the effective consumption of hydroelectric power and full utilization of hydropower resources during flood periods.

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李艷,蔡薌寧,徐衛(wèi)立,范曉青,吳星燁,柳曉慶.典型天氣形勢(shì)與溪洛渡電站發(fā)電供求關(guān)系的影響[J].氣象科技,2022,50(3):420~427

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  • 收稿日期:2021-06-22
  • 定稿日期:2022-01-19
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  • 在線發(fā)布日期: 2022-06-30
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