Simulated Use Performance of an Integrated Energy System for Thermal and Power Management with Micro-combined Heat and Power in Nano-grid Environments

被引:0
|
作者
Kingston, Tim [1 ]
Guada, Alejandro Baez [2 ]
机构
[1] R&D, Des Plaines, IL 60017 USA
[2] GTI Energy, Des Plaines, IL USA
来源
关键词
D O I
暂无
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Integrated energy systems (IESs) are an emerging approach to maximize efficiency and resilience for residential and commercial air conditioning and water heating loads using gas-fired, electrically-driven and/or renewable off-the-self components with distributed energy resources ( DER) and energy storage. IESs include a myriad of equipment combinations, such as furnaces, water heaters and air-source heat pumps (ASHPs), on-site power from micro combined heat and power (mCHP) and solar photovoltaics (PV), as well as electrical and thermal energy storage. When properly integrated and controlled, IESs can serve to balance energy grid supply and demand while exploiting multiple energy sources in ways that improve overall operating cost and efficiencies, minimize emission levels, and provide resilient systems in the built environment. This paper describes an IES developed for residential cold-climate low-load homes driven by customized controls developed by GTI Energy to manage thermal and power generation and storage of a mCHP in a nano-grid environment for space and water heating loads. The IES included an ASHP, hydronic air handler unit (AHU), buffer tank and gas-fired tankless water heater (TWH) powered by mCHP and PV reducing grid power demand. GTI Energy used its Virtual Test Home (VTH) test platform, which applies simulated-use loads to the IES in a dynamic interaction between building energy models and test rigs. The IES was evaluated with real-time weather and corresponding simulated loads using different nano-grid configurations during the heating and cooling seasons. The nano-grids were developed such that power and thermal outputs from the mCHP reduced operating cost and GHGs relative to traditional HVAC solutions. Daily performance results for the IES from the VTH evaluations are presented to demonstrate the pros and cons of each nano-grid configuration. This paper includes a modeled comparison of the IES operating cost and emissions levels relative to commercially available advanced all-electric and fuel-fired systems for residential space and water heating applications.
引用
收藏
页码:536 / 544
页数:9
相关论文
共 50 条
  • [31] Combined heat and power (CHP) and solar thermal energy consolidate in Crailsheim by means of a heat grid
    Meinhold, Wilhelm
    Euroheat and Power/Fernwarme International, 2021, 2021 (1-2): : 23 - 25
  • [32] Performance investigation of a SOFC-primed micro-combined hybrid cooling and power system in hot and humid regions
    Fong, K. F.
    Lee, C. K.
    ENERGY, 2019, 189
  • [33] POWER MANAGEMENT FOR PV-WIND AND HYBRID ENERGY STORAGE INTEGRATED MICRO GRID
    Abishek, M.
    Gokul, R.
    Karthiga, P.
    Lokesh, P.
    Banumathi, S.
    2023 9TH INTERNATIONAL CONFERENCE ON ELECTRICAL ENERGY SYSTEMS, ICEES, 2023, : 334 - 340
  • [34] Energy Management System and Enhancement of Power Quality with Grid Integrated Micro-grid using Adaptive Fuzzy Logic Controller
    HimaBindu, E.
    Naik, M. Gopichand
    INTERNATIONAL JOURNAL OF RENEWABLE ENERGY RESEARCH, 2023, 13 (01): : 144 - 154
  • [35] Dynamic modeling and flexible control of combined heat and power units integrated with thermal energy storage system
    Wang, Xiaoyu
    Dong, Lijiang
    Zhu, Qing
    Li, Yongji
    Han, Hongzhi
    Liang, Jiahao
    Duan, Bingde
    ENERGY REPORTS, 2023, 10 : 396 - 406
  • [36] Combined heat and power plant integrated with mobilized thermal energy storage (M-TES) system
    Wang W.
    Hu Y.
    Yan J.
    Nyström J.
    Dahlquist E.
    Frontiers of Energy and Power Engineering in China, 2010, 4 (4): : 469 - 474
  • [37] Optimal Configuration of Electric/Thermal Integrated Energy Storage for Combined Heat and Power Microgrid with Power to Gas
    Zhao D.
    Xia X.
    Tao R.
    Dianli Xitong Zidonghua/Automation of Electric Power Systems, 2019, 43 (17): : 46 - 54
  • [38] Developing operation of combined cooling, heat, and power system based on energy hub in a micro-energy grid: The application of energy storages
    Eshraghi, Amirhossein
    Salehi, Gholamreza
    Heibati, Seyedmohammadreza
    Lari, Kamran
    ENERGY & ENVIRONMENT, 2019, 30 (08) : 1356 - 1379
  • [39] Integrated dispatch for combined heat and power with thermal energy storage considering heat transfer delay
    Zhu, Mengshu
    Li, Jinghua
    ENERGY, 2022, 244
  • [40] Modeling and optimization of combined heat and power with power-to-gas and carbon capture system in integrated energy system
    Ma, Yiming
    Wang, Haixin
    Hong, Feng
    Yang, Junyou
    Chen, Zhe
    Cui, Haoqian
    Feng, Jiawei
    ENERGY, 2021, 236