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A B/S architecture-based group thermal power generation enterprise carbon emission control method

A control method and carbon emission technology, applied in the direction of system integration technology, instruments, technology management, etc., can solve the problems of not meeting the requirements of data management, easy distortion of emission data transmission, low work efficiency, etc., and achieve fast and accurate information transmission Effect

Inactive Publication Date: 2016-12-14
HUADIAN ELECTRIC POWER SCI INST CO LTD
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Problems solved by technology

[0005] To sum up, the management of carbon emission data of large-scale coal-fired power generation enterprises is a brand-new task. If a large amount of carbon emission data is collected, counted and analyzed manually, it will inevitably bring a lot of repetitive and tedious labor and low work efficiency. Moreover, the emission data is easily distorted during transmission, which does not meet the requirements of modern enterprises for data management

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  • A B/S architecture-based group thermal power generation enterprise carbon emission control method
  • A B/S architecture-based group thermal power generation enterprise carbon emission control method

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Embodiment Construction

[0039] The present invention will be further described in detail below in conjunction with the accompanying drawings and examples. The following examples are explanations of the present invention and the present invention is not limited to the following examples.

[0040] see figure 1 , the system of the method of the present invention is mainly composed of a three-level organizational structure, including the group level, the regional level and the discharge level. Users involved in carbon emission data management include data reporting users, data staff users, data monitoring users and data application users. Different users complete the reporting, transmission, and processing of carbon emission data in the management system developed under the B / S structure. Statistics, analysis and applications. The data reporting user belongs to the emission layer, and is a third-level subsidiary of a group thermal power generation company. It completes the reporting of the company's car...

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Abstract

The invention relates to a B / S architecture-based group thermal power generation enterprise carbon emission control method which can effectively and accurately compute total carbon emission and emission intensity data of subordinate enterprises. Data submission users belong to an emission layer and are third-level subsidiary companies; the data report users complete carbon emission correlated infrastructure condition and carbon emission basic data filling work and submit checking materials for carbon emission correlated data. Data advice users belong to a group layer and are scientific research institutions; the data advice users are responsible for algorithm research and application, calculation parameter selection and guarantee of the accuracy and reasonability of calculation parameters; data supervision users belong to the group layer and are relevant data designated departments; the data supervision users are responsible for the checking of the authenticity and accuracy of data. Regional branch companies belong to a regional layer and are responsible for data management and statistics; carbon emission trading relevant departments belong to the group layer and perform statistical analysis on the carbon emission data of each subsidiary company and deeply mine carbon emission data to formulate carbon trading strategies of the group level and the regional branch company level.

Description

technical field [0001] The invention relates to a method for controlling carbon emission of a group thermal power generation enterprise based on a B / S structure. Background technique [0002] In recent years, with the continuous upgrading of the global industrialization process and the rapid population expansion, human production activities have had a significant impact on global climate change. Scientific research shows that during the nearly 100-year history of human activities, the global average annual temperature change trend has generally increased slowly, and the ocean ice volume has generally gradually decreased. In the face of various problems brought about by climate change, if effective actions are not taken to transform human production activities and development methods, the human living environment will face enormous challenges. At present, my country's total annual greenhouse gas emissions and growth rate rank first in the world, and the total per capita emis...

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Application Information

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IPC IPC(8): G06Q50/06
CPCG06Q50/06Y02E40/70Y02P90/84Y02P90/845Y04S10/50
Inventor 苏攀高惠华张才稳刘林波韩静吕文博肖申
Owner HUADIAN ELECTRIC POWER SCI INST CO LTD
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