1 |
An analytical method to evaluate the impact of vertical part of an earth-air heat exchanger on the whole system Gomat LJP, Motoula SME, M'Passi-Mabiala B Renewable Energy, 162, 1005, 2020 |
2 |
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 Wang D, Zhi YQ, Jia HJ, Hou K, Zhang SX, Du W, Wang XD, Fan MH Applied Energy, 240, 341, 2019 |
3 |
Use of encapsulated phase change materials in lightweight building walls for annual thermal regulation Sun XQ, Jovanovic J, Zhang Y, Fan SY, Chu YH, Mo YJ, Liao SG Energy, 180, 858, 2019 |
4 |
Influence of envelope, structural thermal mass and indoor content on the building heating energy flexibility Johra H, Heiselberg P, Le Dreau J Energy and Buildings, 183, 325, 2019 |
5 |
Estimating demand response potential under coupled thermal inertia of building and air-conditioning system Li WL, Yang L, Ji Y, Xu P Energy and Buildings, 182, 19, 2019 |
6 |
Thermal building control using active ventilated block integrating phase change material Laaouatni A, Martaj N, Bennacer R, Lachi M, El Omari M, El Ganaoui M Energy and Buildings, 187, 50, 2019 |
7 |
Integrated heat and power dispatch truly utilizing thermal inertia of district heating network for wind power integration Zheng JF, Zhou ZG, Zhao JN, Wang JD Applied Energy, 211, 865, 2018 |
8 |
Effects of the operation regulation modes of district heating system on an integrated heat and power dispatch system for wind power integration Zheng JF, Zhou ZG, Zhao JN, Wang JD Applied Energy, 230, 1126, 2018 |
9 |
A semi-analytical model for linear stability analysis of rectangular natural circulation loops Nadella S, Srivastava AK, Maheshwari NK Chemical Engineering Science, 192, 892, 2018 |
10 |
Improved thermal transient modeling with new 3-order numerical solution for a district heating network with consideration of the pipe wall's thermal inertia Wang H, Meng H Energy, 160, 171, 2018 |