波音游戏-波音娱乐城赌球打不开

Contact Information

General Enquiry

Fax: +(852)-3442-0688
Email: see.enquiry@cityu.edu.hk
Address: G5703, 5/F, Yeung Kin Man Academic Building (YEUNG),
City University of Hong Kong,
Tat Chee Avenue, Kowloon, Hong Kong SAR
Secular decrease of wind power potential in India associated with warming Indian Ocean
Speaker Name
Dr. Meng Gao
Speaker Detail

Postdoctoral Fellow
Harvard University

Date
Time
-
Venue
B5-307, 5/F, Yeung Kin Man Academic Building (YEUNG), City University of Hong Kong, Kowloon Tong, Kowloon, Hong Kong

Organizer:
School of Energy and Environment
City University of Hong Kong

Abstract

The Indian government has set an ambitious target for future renewable power generation, including 60GW of cumulative wind power capacity by 2022. The benefits of such significant investments are vulnerable however to changing climate. Based on hourly wind data from an assimilated meteorology reanalysis dataset covering 1980-2016, we show that wind power potential may have declined secularly over this interval, particularly in western India. Surface temperature data confirm that significant warming occurred in the Indian Ocean over the study period, leading to modulation of high pressure over the ocean. A multivariable linear regression model incorporating the pressure gradient between the Indian Ocean and the Indian subcontinent can account for the inter-annual variability of wind power. A series of numerical sensitivity experiments confirms that warming in the Indian Ocean contributes to subsidence and dampening of upward motion over the Indian continent, resulting potentially in weakening of the monsoonal circulation and wind speeds over India.

About the Speaker

The Indian government has set an ambitious target for future renewable power generation, including 60GW of cumulative wind power capacity by 2022. The benefits of such significant investments are vulnerable however to changing climate. Based on hourly wind data from an assimilated meteorology reanalysis dataset covering 1980-2016, we show that wind power potential may have declined secularly over this interval, particularly in western India. Surface temperature data confirm that significant warming occurred in the Indian Ocean over the study period, leading to modulation of high pressure over the ocean. A multivariable linear regression model incorporating the pressure gradient between the Indian Ocean and the Indian subcontinent can account for the inter-annual variability of wind power. A series of numerical sensitivity experiments confirms that warming in the Indian Ocean contributes to subsidence and dampening of upward motion over the Indian continent, resulting potentially in weakening of the monsoonal circulation and wind speeds over India.

真钱百家乐官网公司哪个好| 现金棋牌| 网络百家乐程序| 易发国际| 呈贡县| 百家乐最低压多少| 澳门百家乐官网心德| 玩百家乐犯法| 亿博娱乐| 网上百家乐正规代理| 赌百家乐官网的方法| 永利高官网| 豪华百家乐官网桌子| 易胜娱乐| 百家乐真人游戏娱乐网| 新彩百家乐官网的玩法技巧和规则 | 百家乐官网加牌规| 澳门百家乐官网娱乐城开户| 金银岛娱乐城开户| 百家乐博彩网址| 九宫飞星2024年的财位| 六合彩报码| CEO百家乐现金网| 澳门百家乐官网破解| 祁门县| 六合彩脑筋急转弯| 时时博百家乐的玩法技巧和规则 | 百家乐怎样玩才会赢钱| 博E百百家乐娱乐城| 菲律宾百家乐官网赌场娱乐网规则| 金山区| 利来国际注册| 大发888可靠吗| 百家乐桌现货| 百家乐玩法简介| 扑克王百家乐官网的玩法技巧和规则 | 网络百家乐最安全| 太阳城百家乐官网杀祖玛| 明升国际娱乐 | 普安县| 六合彩马报|