The Experts below are selected from a list of 171 Experts worldwide ranked by ideXlab platform

Chuanwen Zhao - One of the best experts on this subject based on the ideXlab platform.

  • conveying characteristics of pulverized coal in a top discharge Blow Tank System
    Chemical Engineering & Technology, 2013
    Co-Authors: Xiaoping Chen, Cai Liang, Daoyin Liu, J Y Cai, Chuanwen Zhao
    Abstract:

    Based on the experiments of pulverized coal pneumatic conveying using nitrogen as carrier, the influences of riser inlet height above the gas distribution plate, riser diameter, pulverized coal external moisture content, and supplemental gas flow rate on the conveying characteristics such as pulverized coal mass flow rate and solid-gas ratio were investigated in a laboratory-scale experimental setup of a top-discharge Blow Tank under atmospheric pressure. There exists an optimal riser inlet height for a given top-discharge Blow Tank. The supplemental gas is one of the critical factors affecting the conveying stability and continuity. A model for material mass flow rate prediction with errors ranging from –25 % to +15 % is presented.

  • Conveying Characteristics of Pulverized Coal in a Top‐Discharge Blow Tank System
    Chemical Engineering & Technology, 2013
    Co-Authors: Xiaoping Chen, Cai Liang, Daoyin Liu, J.‐y. Cai, Chuanwen Zhao
    Abstract:

    Based on the experiments of pulverized coal pneumatic conveying using nitrogen as carrier, the influences of riser inlet height above the gas distribution plate, riser diameter, pulverized coal external moisture content, and supplemental gas flow rate on the conveying characteristics such as pulverized coal mass flow rate and solid-gas ratio were investigated in a laboratory-scale experimental setup of a top-discharge Blow Tank under atmospheric pressure. There exists an optimal riser inlet height for a given top-discharge Blow Tank. The supplemental gas is one of the critical factors affecting the conveying stability and continuity. A model for material mass flow rate prediction with errors ranging from –25 % to +15 % is presented.

Xiaoping Chen - One of the best experts on this subject based on the ideXlab platform.

  • conveying characteristics of pulverized coal in a top discharge Blow Tank System
    Chemical Engineering & Technology, 2013
    Co-Authors: Xiaoping Chen, Cai Liang, Daoyin Liu, J Y Cai, Chuanwen Zhao
    Abstract:

    Based on the experiments of pulverized coal pneumatic conveying using nitrogen as carrier, the influences of riser inlet height above the gas distribution plate, riser diameter, pulverized coal external moisture content, and supplemental gas flow rate on the conveying characteristics such as pulverized coal mass flow rate and solid-gas ratio were investigated in a laboratory-scale experimental setup of a top-discharge Blow Tank under atmospheric pressure. There exists an optimal riser inlet height for a given top-discharge Blow Tank. The supplemental gas is one of the critical factors affecting the conveying stability and continuity. A model for material mass flow rate prediction with errors ranging from –25 % to +15 % is presented.

  • Conveying Characteristics of Pulverized Coal in a Top‐Discharge Blow Tank System
    Chemical Engineering & Technology, 2013
    Co-Authors: Xiaoping Chen, Cai Liang, Daoyin Liu, J.‐y. Cai, Chuanwen Zhao
    Abstract:

    Based on the experiments of pulverized coal pneumatic conveying using nitrogen as carrier, the influences of riser inlet height above the gas distribution plate, riser diameter, pulverized coal external moisture content, and supplemental gas flow rate on the conveying characteristics such as pulverized coal mass flow rate and solid-gas ratio were investigated in a laboratory-scale experimental setup of a top-discharge Blow Tank under atmospheric pressure. There exists an optimal riser inlet height for a given top-discharge Blow Tank. The supplemental gas is one of the critical factors affecting the conveying stability and continuity. A model for material mass flow rate prediction with errors ranging from –25 % to +15 % is presented.

  • Study on Pneumatic Conveying Characteristics of Top Discharge Blow Tank of Pulverized Coal
    Cleaner Combustion and Sustainable World, 2012
    Co-Authors: Xiaoping Chen, Cai Liang, Changsui Zhao
    Abstract:

    The effects of fluidizing gas flow rate, pressurizing gas flow rate and superficial gas velocity at the riser inlet on the pneumatic conveying characteristics such as pulverized coal mass flow rate, differential pressure, solid-gas ratio, and voidage were investigated in a top discharge Blow Tank pneumatic conveying System at atmospheric pressure. The results indicate that as the fluidizing gas flow rate increases, the pulverized coal mass flow rate, differential pressure and solid-gas ratio increase at first and then decline, respectively. As the pressurizing gas flow rate increases, the pulverized coal mass flow rate and differential pressure increase gradually, while the solid-gas ratio increases at first and then declines. As the superficial gas velocity at the riser inlet increases, the pulverized coal mass flow rate and differential pressure increase gradually, while the solid-gas ratio increases at first and then declines. The voidage of all the experiments is below 0.95, so the top discharge Blow Tank System can achieve dense phase conveying.

Cai Liang - One of the best experts on this subject based on the ideXlab platform.

  • conveying characteristics of pulverized coal in a top discharge Blow Tank System
    Chemical Engineering & Technology, 2013
    Co-Authors: Xiaoping Chen, Cai Liang, Daoyin Liu, J Y Cai, Chuanwen Zhao
    Abstract:

    Based on the experiments of pulverized coal pneumatic conveying using nitrogen as carrier, the influences of riser inlet height above the gas distribution plate, riser diameter, pulverized coal external moisture content, and supplemental gas flow rate on the conveying characteristics such as pulverized coal mass flow rate and solid-gas ratio were investigated in a laboratory-scale experimental setup of a top-discharge Blow Tank under atmospheric pressure. There exists an optimal riser inlet height for a given top-discharge Blow Tank. The supplemental gas is one of the critical factors affecting the conveying stability and continuity. A model for material mass flow rate prediction with errors ranging from –25 % to +15 % is presented.

  • Conveying Characteristics of Pulverized Coal in a Top‐Discharge Blow Tank System
    Chemical Engineering & Technology, 2013
    Co-Authors: Xiaoping Chen, Cai Liang, Daoyin Liu, J.‐y. Cai, Chuanwen Zhao
    Abstract:

    Based on the experiments of pulverized coal pneumatic conveying using nitrogen as carrier, the influences of riser inlet height above the gas distribution plate, riser diameter, pulverized coal external moisture content, and supplemental gas flow rate on the conveying characteristics such as pulverized coal mass flow rate and solid-gas ratio were investigated in a laboratory-scale experimental setup of a top-discharge Blow Tank under atmospheric pressure. There exists an optimal riser inlet height for a given top-discharge Blow Tank. The supplemental gas is one of the critical factors affecting the conveying stability and continuity. A model for material mass flow rate prediction with errors ranging from –25 % to +15 % is presented.

  • Study on Pneumatic Conveying Characteristics of Top Discharge Blow Tank of Pulverized Coal
    Cleaner Combustion and Sustainable World, 2012
    Co-Authors: Xiaoping Chen, Cai Liang, Changsui Zhao
    Abstract:

    The effects of fluidizing gas flow rate, pressurizing gas flow rate and superficial gas velocity at the riser inlet on the pneumatic conveying characteristics such as pulverized coal mass flow rate, differential pressure, solid-gas ratio, and voidage were investigated in a top discharge Blow Tank pneumatic conveying System at atmospheric pressure. The results indicate that as the fluidizing gas flow rate increases, the pulverized coal mass flow rate, differential pressure and solid-gas ratio increase at first and then decline, respectively. As the pressurizing gas flow rate increases, the pulverized coal mass flow rate and differential pressure increase gradually, while the solid-gas ratio increases at first and then declines. As the superficial gas velocity at the riser inlet increases, the pulverized coal mass flow rate and differential pressure increase gradually, while the solid-gas ratio increases at first and then declines. The voidage of all the experiments is below 0.95, so the top discharge Blow Tank System can achieve dense phase conveying.

Daoyin Liu - One of the best experts on this subject based on the ideXlab platform.

  • conveying characteristics of pulverized coal in a top discharge Blow Tank System
    Chemical Engineering & Technology, 2013
    Co-Authors: Xiaoping Chen, Cai Liang, Daoyin Liu, J Y Cai, Chuanwen Zhao
    Abstract:

    Based on the experiments of pulverized coal pneumatic conveying using nitrogen as carrier, the influences of riser inlet height above the gas distribution plate, riser diameter, pulverized coal external moisture content, and supplemental gas flow rate on the conveying characteristics such as pulverized coal mass flow rate and solid-gas ratio were investigated in a laboratory-scale experimental setup of a top-discharge Blow Tank under atmospheric pressure. There exists an optimal riser inlet height for a given top-discharge Blow Tank. The supplemental gas is one of the critical factors affecting the conveying stability and continuity. A model for material mass flow rate prediction with errors ranging from –25 % to +15 % is presented.

  • Conveying Characteristics of Pulverized Coal in a Top‐Discharge Blow Tank System
    Chemical Engineering & Technology, 2013
    Co-Authors: Xiaoping Chen, Cai Liang, Daoyin Liu, J.‐y. Cai, Chuanwen Zhao
    Abstract:

    Based on the experiments of pulverized coal pneumatic conveying using nitrogen as carrier, the influences of riser inlet height above the gas distribution plate, riser diameter, pulverized coal external moisture content, and supplemental gas flow rate on the conveying characteristics such as pulverized coal mass flow rate and solid-gas ratio were investigated in a laboratory-scale experimental setup of a top-discharge Blow Tank under atmospheric pressure. There exists an optimal riser inlet height for a given top-discharge Blow Tank. The supplemental gas is one of the critical factors affecting the conveying stability and continuity. A model for material mass flow rate prediction with errors ranging from –25 % to +15 % is presented.

J Y Cai - One of the best experts on this subject based on the ideXlab platform.

  • conveying characteristics of pulverized coal in a top discharge Blow Tank System
    Chemical Engineering & Technology, 2013
    Co-Authors: Xiaoping Chen, Cai Liang, Daoyin Liu, J Y Cai, Chuanwen Zhao
    Abstract:

    Based on the experiments of pulverized coal pneumatic conveying using nitrogen as carrier, the influences of riser inlet height above the gas distribution plate, riser diameter, pulverized coal external moisture content, and supplemental gas flow rate on the conveying characteristics such as pulverized coal mass flow rate and solid-gas ratio were investigated in a laboratory-scale experimental setup of a top-discharge Blow Tank under atmospheric pressure. There exists an optimal riser inlet height for a given top-discharge Blow Tank. The supplemental gas is one of the critical factors affecting the conveying stability and continuity. A model for material mass flow rate prediction with errors ranging from –25 % to +15 % is presented.