2012Unpublished venueRequires access

Research on the Fuel Cost Allocation for Combined Heat and Power

Shenhua Hu, Xiangrong Ma

Open publisher page 1 citations

Abstract

Cogeneration, i.e. the combined heat and power production (CHP) at an energy conversion plant, has received significant attention particularly since the oil crises of the 70s, and cost accounting in CHP has a number of objectives among which fuel cost allocation is one of the most important. Several methods for fuel cost allocation have been in use for a number of years, "Quantity of Heat Method" (QHM) is the method in law (The 1997 Electricity Law) in China. Based on QHM, in this paper the actual condition of the Combined Heat and Power system (CHP) has been considered completely, the Auxiliary Power Consumption for cogeneration system (APC) is divided into four parts-APC for heat production only, APC for electricity generation by condensate steam only, APC for chemical water treatment and APC common to both heat and power production. By this way, a better way for fuel cost allocation between electricity and heat in three representative 200 MW N-C units in a certain Thermal Power Plant, and then the fuel costs for heat supply and power supply of these three units are calculated correctly.

About this research paper

What this paper is about

Cogeneration, i.e. the combined heat and power production (CHP) at an energy conversion plant, has received significant attention particularly since the oil crises of the 70s, and cost accounting in CHP has a number of objectives among which fuel cost allocation is one of the most important. Several methods for fuel cost allocation have been in use for a number of years, "Quantity of Heat Method" (QHM) is the method in law (The 1997 Electricity Law) in China. Based on QHM, in this paper the actual condition of the Combined Heat and Power system (CHP) has been considered completely, the Auxiliary Power Consumption for cogeneration system (APC) is divided into four parts-APC for heat production only, APC for electricity generation by condensate steam only, APC for chemical water treatment and APC common to both heat and power production. By this way, a better way for fuel cost allocation between electricity and heat in three representative 200 MW N-C units in a certain Thermal Power Plant, and then the fuel costs for heat supply and power supply of these three units are calculated correctly.

Why it matters

OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Cogeneration, i.e. the combined heat and power production (CHP) at an energy conversion plant, has received significant attention particularly since the oil crises of the 70s, and cost accounting in CHP has a number of objectives among which fuel cost allocation is one of the most important. Several methods for fuel cost allocation have been in use for a number of years, "Quantity of Heat Method" (QHM) is the method in law (The 1997 Electricity Law) in China. Based on QHM, in this paper the actual condition of the Combined Heat and Power system (CHP) has been considered completely, the Auxiliary Power Consumption for cogeneration system (APC) is divided into four parts-APC for heat production only, APC for electricity generation by condensate steam only, APC for chemical water treatment and APC common to both heat and power production. By this way, a better way for fuel cost allocation between electricity and heat in three representative 200 MW N-C units in a certain Thermal Power Plant, and then the fuel costs for heat supply and power supply of these three units are calculated correctly.

Key concepts: Cogeneration, Electricity generation, Electricity, Cost allocation, Environmental science, Waste management, Process engineering, Thermal power station

Related papers

Back to paper searchBrowse research topicsOriginal source
Research on the Fuel Cost Allocation for Combined Heat and Power — Research Paper | ScholarLens