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Abstract: Using thermal inertia in district heating systems (DHSs) to improve the dispatch flexibility and economy of integrated heat and electricity systems
Accordingly, it is possible to integrate additional wind power into an integrated heat and power dispatch (IHPD) system. In this study, a new IHPD model with the application of the IHM was built to promote wind power integration. In the IHPD model, to obtain the dynamic hydraulic and thermal conditions of the DHSs and ensure the
Abstract: This paper proposes a bi-level optimal integration scheme for buildings'' space heating loads in the integrated community energy system (ICES). The
The integrated solutions of passive building design measures and active measures were proposed as a solution for residential buildings in the HSCW zone [17]. Passive measures are available to minimize the energy consumption through natural means, and active measures aim to minimize the energy consumption of air-conditioning
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Heat.gov serves as the premier source of information regarding heat and health for the nation. This portal seeks to improve federal, state, and local information and capacity to reduce the health, economic, and infrastructural impacts of extreme heat. Heat.gov is the webportal for the National Integrated Heat Health Information System (NIHHIS).
Combined heat and electricity operation with variable mass flow rates promotes flexibility, economy, and sustainability through synergies between electric power systems (EPSs)
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integrated heating system is developed. TRNSYS transient simulation software was used to study the integrated heating system. Through the simulation analysis, the outlet temperature of PV/T
Robust scheduling of integrated electricity and heating system hedging heating network uncertainties IEEE Trans. Smart Grid, 11 ( 2 ) ( 2020 ), pp. 1543 - 1555,
Optimal scheduling strategy of district integrated heat and power system with wind power and multiple energy stations considering thermal inertia of buildings under different heating regulation modes Appl Energy, 240
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Nonlinear microresonators can convert light from chip-integrated sources into new wavelengths within the visible and near-infrared spectrum. For most applications, such as the interrogation of quantum systems with specific transition wavelengths, tuning the frequency of converted light is critical. Nonetheless, demonstrations of wavelength
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Single piece of equipment - A principal benefit to homeowners is their investment in just one piece of high efficiency equipment that serves two heating loads. The cost of this integrated system, including labor can be as low as $3,500 (PARR, Building America Case Study), but can be as high as $10,000 depending on complexity and contractor
As a climate-responsive building, the building integrated heat pipes (BIHP) can greatly reduce indoor thermal discomfort during the local heating season by utilizing the thermal diode characteristic and ultrahigh equivalent thermal conductivity of L-shaped flat gravity heat pipes. In this paper, parameter optimizations of the thermophysical
Most related items These are the items that most often cite the same works as this one and are cited by the same works as this one. Zheng, Jinfu & Zhou, Zhigang & Zhao, Jianing & Wang, Jinda, 2018. "Effects of the operation regulation modes of district heating system on an integrated heat and power dispatch system for wind power integration," Applied
Various layouts of integrated LHTES and HP systems have been studied for space heating. Yu et al. [8] presented an integrated heat pump and LHTES system and proposed a mathematical model including energy, environmental and economic analyses for four typical cities in China.The LHTES component was a bulk storage configuration in which
DOI: 10.1016/j.energy.2022.124189 Corpus ID: 248587580 Day-ahead scheduling strategy for integrated heating and power system with high wind power penetration and integrated demand response: A hybrid stochastic/interval approach With the promotion of the
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Abstract. Integrated electrical and heating networks (IEHNs) effectively improve energy utilization efficiency, reduce environmental pollution and realize sustainable development of energy. To realize the accurate, comprehensive and fast perception of the integrated electrical and heating networks, it is necessary to build a state estimation
Dynamic behaviors of heating systems are not well captured by the traditional steady-state models of integrated heat-electricity systems (IHESs). As
This paper constructs a heat current model of a district heating network including an EHCHTS unit and applies Ohm''s and Kirchhoff''s laws to deduce the corresponding heat transport matrix, which is further integrated with the admittance matrix network equation of power systems to construct a unified power flow model of the power
Using thermal inertia in district heating systems (DHSs) to improve the dispatch flexibility and economy of integrated heat and electricity systems (IHESs) is a research hotspot and difficulty. In most existing studies, the partial differential equations (PDEs) of thermal inertia are approximated by discrete-time models, making it difficult to accurately describe the
The integrated heat capacity refers to a time-averaged capacity that includes defrost. In other words, the point at which capacity and integrated heat capacity do not match, you expect the defrost cycle to come on intermittently. The further apart the two numbers are, the greater the frequency of defrost cycles. The table below shows an example