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Featured researches published by Shen Yinghao.


SCIENTIA SINICA Physica, Mechanica & Astronomica | 2017

Imbibition characteristic of shale gas formation and water-block removal capability

Shen Yinghao; Ge Hongkui; Su Shuai; Liu Dunqing; Yang Zhihui; Liu Junrong

Large scale hydraulic fracturing is one key technology for shale gas development. Thousands of liquids are pumped into shale formation. However, fluids flow-back rate is surprisingly low for same cases, which is always lower than 30%. The production is not influenced too much by the low flow-back rate and some of these wells even have higher productivity. This phenomenon cannot be interpreted by conventional theory, in which gas will be blocked seriously by the water. It indicates that shale formation has water-block removal capability. Experiments are proposed around this fracturing imbibition issue including water imbibition and solution conductivity online test, nuclear magnetic resonance tests with water imbibition and pulse decay permeability tests with water imbibition. The interaction between water and shale and the dynamic effect are analyzed to make clear the relationship between water imbibition and water block removal. Fracturing fluids are imbibed into the formation matrix and complicated physical and chemical effects happen between fluids and shale. There are huge differences between different shales including the imbibition capacity, diffusion capacity and ion exchange capacity. The imbibition capacity, diffusion capacity and fracture induced capacity are the main factors affecting water block removal capability. Pressure enhancement, Liquid diffusion into deeper matrix and micro-fracture induced by water-rock reaction are treated as the main mechanisms of water block removal through the study. A water block removal potential valuation methodology is proposed taking account the initial water saturation, imbibition capacity, diffusion capacity, fracture induced capacity and clay chemistry effect. The water block removal potential can be evaluated by the water imbibition, nuclear magnetic resonance and plus-decay permeability tests. A grading evaluation of typical shale gas formation is proposed based on this method. The work is the pioneer study analyzing the water block removal mechanism and controlling facts, and it is valuable to make clear the shale gas productivity factors and put forward guidance to shale gas reservoir stimulation.


Archive | 2014

Portable spontaneous imbibition measuring device

Yang Liu; Ge Hongkui; Shen Yinghao; Li Caoxiong; Wang Xiaoqiong; Ren Kai; Chen Hao; Luan Guohua; Meng Mianmu


Archive | 2013

Method for measuring dynamic capillary pressure of core under conditions of reservoir temperature and pressure

He Shunli; Xie Quan; Jiao Chunyan; Gu Daihong; Ma Fubo; Luan Guohua; Shen Yinghao; Lu Zhikai; Zhang Zhang; Guo Xuejing


Journal of Petroleum Science and Engineering | 2011

A prediction model for a new deep-rod pumping system

Luan Guohua; He Shunli; Yang Zhi; Zhao Hai-yang; Hu Jing-hong; Xie Quan; Shen Yinghao


Archive | 2013

Gas lift method of combined ball plug for drainage and gas production of oil and gas well

Gu Daihong; Luan Guohua; He Shunli; Shen Yinghao; Xie Quan; Jiao Chunyan


Archive | 2016

Spontaneous infiltration absorption measurement method used for shale

Shen Yinghao; Ge Hongkui; Yang Zhihui; Su Shuai; Ren Kai; Li Caoxiong; Wang Guozhen; Feng Naichao; Fu Bing


Archive | 2014

Underground microwave-assisted rock breaking drilling tool

Mou Shanbo; Han Xiuling; Han Xiaoling; Shen Yinghao; Li Caoxiong; Yang Liu


SPE Annual Technical Conference and Exhibition | 2017

Quantification of Transportation of Deformable Gel Particles in Porous Media

Wang Jing; Zhang Hongling; Liu Huiqing; Zhao Wei; Liu Haomin; Yao Chuanjin; Zheng Jiapeng; Shen Yinghao


Archive | 2017

Fracturing fluid returns row crack analogue means

Zhang Yanjun; Ge Hongkui; Shen Yinghao; Chen Hao


Archive | 2017

Tight reservoir sweetness evaluation method and device

Shen Yinghao; Shi Peng; Zhu Zhaopeng; Wang Jianbo; Chen Hao; Zhang Yanjun

Collaboration


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Su Shuai

China University of Petroleum

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Yang Zhihui

China University of Petroleum

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Ge Hongkui

China Earthquake Administration

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Luan Guohua

China University of Petroleum

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He Shunli

China University of Petroleum

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Liu Dunqing

China University of Petroleum

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Liu Junrong

China University of Petroleum

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Xie Quan

China University of Petroleum

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Hu Jing-hong

China University of Petroleum

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Liu Haomin

China University of Petroleum

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