Hungarian Open (table tennis)

The Hungarian Open is an annual table tennis tournament held in Hungary by the International Table Tennis Federation (ITTF). It is currently part of the ITTF World Tour.

Hungarian Open
Tournament information
TourITTF World Tour
Founded2010
LocationBudapest (since 2015)
VenueBudapest Olympic Hall (since 2018)
CategoryWorld Tour
Draw32S / 16D
Prize moneyUS$170,000 (2019)
Current champions (2020)
Men's singles Tomokazu Harimoto
Women's singles Mima Ito
Men's doubles Benedikt Duda
Patrick Franziska
Women's doubles Miu Hirano
Kasumi Ishikawa

History

The Hungarian Open was first included on the ITTF Pro Tour schedule in 2010.[1] It returned to the schedule in 2012 as part of the rebranded ITTF World Tour, and after not appearing in 2013 the tournament made its second return in 2014 as part of the new third-tier Challenge Series. In 2016, the tournament was promoted to the second-tier Major Series, and in August 2016 it was confirmed that the event would keep its place on the schedule as part of the revamped ITTF World Tour in 2017.[2]

Champions

2010–2018

Year Location Men's Singles Women's Singles Men's Doubles Women's Doubles Ref.
2010 Budaörs Jun Mizutani Tie Yana Kenta Matsudaira
Koki Niwa
Ai Fukuhara
Kasumi Ishikawa
[3]
2012 Budapest Ma Long Liu Shiwen Chen Qi
Ma Lin
Ding Ning
Liu Shiwen
[4]
2014 Szombathely Daniel Habesohn Liu Jia NOT HELD NOT HELD [5]
2015 Budapest Jiang Tianyi Misako Wakamiya Jeong Sang-eun
Lee Sang-su
Sofia Polcanova
Amelie Solja
[6]
2016 Budapest Chuang Chih-yuan Tie Yana Chuang Chih-yuan
Huang Sheng-sheng
Jeon Ji-hee
Yang Ha-eun
[7]
2017 Budapest Yan An Chen Xingtong Fang Bo
Zhou Yu
Chen Xingtong
Li Jiayi
[8]
2018 Budapest Fan Zhendong Wang Manyu Fan Zhendong
Yu Ziyang
Chen Xingtong
Sun Yingsha
[9]

2019–

Year Location Men's Singles Women's Singles Men's Doubles Women's Doubles Mixed Doubles Ref.
2019 Budapest Lin Gaoyuan Chen Meng Liang Jingkun
Xu Xin
Wang Manyu
Zhu Yuling
Xu Xin
Liu Shiwen
[10]
2020 Budapest Tomokazu Harimoto Mima Ito Benedikt Duda
Patrick Franziska
Miu Hirano
Kasumi Ishikawa
Wong Chun Ting
Doo Hoi Kem
[11]
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gollark: This probably does imply regular determinism.
gollark: Another is superdeterminism, which is sort of kind of where the particles "know" what properties of them will be measured in advance.
gollark: One resolution is nonlocal hidden variables, i.e. the particles have some faster-than-light-speed backchannel to communicate things.
gollark: Bell's theorem rules out "local hidden-variables" interpretations of quantum physics, meaning that quantum mechanics cannot, assuming some assumptions, be doing this by storing some extra secret metadata with particles.

See also

References

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