答疑:好心人们 帮个忙 为什么我这个宽度这个是灰色的 而且在参数化里调整了长度也-北京土建
问题专业:土建,
提问日期:2021-03-10 16:56:44
网友“达达”提问内容:
2021-03-10 16:58:44 补充
点开 确定了还是不行
业内专家“”回复:
设置好了要在右边点那个确定
问题专业:土建,
提问日期:2021-03-10 16:56:44
网友“达达”提问内容:
2021-03-10 16:58:44 补充
点开 确定了还是不行
业内专家“”回复:
设置好了要在右边点那个确定
问题专业:土建,
提问日期:2021-03-10 16:54:40
网友“恰噶”提问内容:
括号里面的-2是什么意思原味标注无法识别,也没办法手动输入,怎么解决,谢谢
业内专家“陌上花开‘’”回复:
在原位标注下部钢筋输入。要英文状态输入
问题专业:安装,
提问日期:2021-03-10 16:44:30
网友“安装造价6个月经验”提问内容:
业内专家“冰临城下”回复:
这是电井大样图,请问这个立管计算一根就可以,还是计算2根?
答:这个应该是在插座处分线,也就是竖向主线的立管是一根,该层的从开关到灯具的立管是一根
问题专业:土建,
提问日期:2021-03-10 16:42:52
网友“晓晓”提问内容:
墙柱的竖向钢筋搭接接头按每自然层一个计算,一个自然层是几米?是3.6米高吗?
业内专家“一杯红酒”回复:
设计图纸每个楼层的高度
问题专业:土建,钢筋算量GGJ2013,土建算量GCL2013,土建算量GTJ2018,
提问日期:2021-03-10 16:39:46
网友“张熙”提问内容:
业内专家“李工”回复:
每层对应的标高就是当前层的底标高,下一层的底标高是当前层的顶标高。比如1层底标高-0.12也是-1层的顶标高。构件强度就按图对应楼层分别设置。屋面的有就用,没有就不管他。
问题专业:土建,土建算量GTJ2018,
提问日期:2021-03-10 16:38:14
网友“小白”提问内容:
1、基础梁集中标注下部通长筋6C25,支座原位标注12C25,6/6,原位标注下排6根钢筋是不是通长筋,只是在上排加了6根C25,还是说下排这6根钢筋同样要计算?
2、右边原位标注C14-200(4)是指这跨的箍筋型号吗?
感谢老师解答!
业内专家“小野猫”回复:
1、基础梁集中标注下部通长筋6C25,支座原位标注12C25,6/6,原位标注下排6根钢筋是通长筋,只是在上排加了6根C25,
2、右边原位标注C14-200(4)是指这跨的箍筋型号
问题专业:土建,土建算量GTJ2018,
提问日期:2021-03-10 16:34:47
网友“造价初学者”提问内容:
业内专家“李工”回复:
看你自己 想手算就不画了 不想手算就画吧
问题专业:安装,
提问日期:2021-03-10 16:24:37
网友“E=mc²”提问内容:
业内专家“大家广联”回复:
水表井(或水表) 下面 闸阀
问题专业:土建,
提问日期:2021-03-10 16:19:31
网友“娶好多老婆呢啊哦”提问内容:
业内专家“蓝鲸”回复:
可以这样理解
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问题专业:安装,施工,计价软件GCCP5,
提问日期:2021-03-10 16:18:51
网友“房永龙”提问内容:
业内专家“蓝鲸”回复:
定额套用管道保温60mm以内子目,套两遍,因为规范规定管道的绝热保温厚度大于等于100mm以上是必须分层保温,分层厚度要相等
回答正确请采纳并点赞,因为每一个专家都是免费服务的。
ICS 29.240.10 D 13
Record No. J802—2008
Electric Power Industry Standard of the People's Republic of China
P DL / T 5096 — 2008
To Replace DL/T 5096 — 1999 and DL/T 5171 — 2002
Drilling Technical Regulations of Electrical Power Engineering
Issue Date: June 4, 2008 implementation Date: November 1, 2008
Issued by the National Development and Reform Commission of the People's Republic of China
1 Scope
These regulations deal with contents and technical principles of geological drilling, hydro-geological drilling, and geotechnical engineering construction drilling intended for electric power engineering.
They apply to the drilling activities and associated in-situ tests and downhole tests related to electric power engineering.
2 Normative References
The following normative documents contain provisions which, through reference in this text, constitute provisions of this standard.
For dated references, all their subsequent amendments (excluding errors corrected) or revised editions shall not apply. However, parties to agreements based on this standard are encouraged to investigate the possibility of applying the most recent editions of the normative documents indicated below. For undated references, their latest editions apply.
GB 6722—1992 Safety Regulations for Blasting
GB 9448—1999 Safety in Welding and Cutting
GB/T 16950—1997 Diamond Core Drilling Equipment Conventional System
GB 50021—2001 Code for Investigation of geotechnical Engineering
DL/T 5034—2006 Technical Code for the Hydro-geological Investigation of Electric Power Engineering
3 General
3.0.1 These regulations are formulated to adapt to the needs for exploration activities in electric power engineering, promote progressive development and improvement of drilling techniques used in electric power engineering, ensure project quality and work safety, and enhance economic benefits.
3.0.2 These regulations are developed based on conventional drilling equipment and machineries and common drilling technologies used for engineering exploration presently used in the electric power industry. The operation of various drilling equipment shall not only observe the regulations herein, but also be in strict accordance with the user manuals.
3.0.3 For new technologies, techniques, methods, and equipment not covered herein, technical regulations shall be developed individually based on actual conditions.
3.0.4 The operators of drilling equipment must be workers who have been well trained and passed the examinations in this regard.The workers who have neither been trained nor examined shall not operate alone, and must be accompanied by experienced workers when learning how to operate.
3.0.5 The drilling personnel must fulfill their duties, during which they shall concentrate on work without doing any other things irrelevant to it.
3.0.6 The drilling leader shall participate in the preparation of drilling section of Geotechnical Investigation Specifications and technical proposals of disciplines related to drilling. The drilling workers shall be familiar with the Geotechnical Investigation
Specifications, have a good understanding of the stratum conditions,borehole (well) structure, construction techniques, and sampling methods, and conduct the preparations and constructions in accordance with Geotechnical Investigation Specifications and technical proposals.
问题专业:安装,安装算量GQI,
提问日期:2021-03-10 16:17:29
网友“胡萝卜的糖”提问内容:
请问联想小新14-2019的电脑,下载gqi打不开,每次加载着就没了,有时候加载到百分之六十就没了,怎么办?急求解决办法!!!!
业内专家“”回复:
可以卸载掉重新下载
看一下是不是下载的版本和电脑是否匹配
问题专业:土建,园林,
提问日期:2021-03-10 16:16:43
网友“李林泽”提问内容:
业内专家“文竹”回复:
可以识别,按提示框一步步操作即可
问题专业:市政,
提问日期:2021-03-10 16:12:47
网友“13091317603”提问内容:
业内专家“文竹”回复:
一般情况垫层在底板下面,楼梯在底板上面,不用考虑扣减楼梯所占的体积。如果楼梯穿过底板(有开口)要扣
ICS 29.240 D 14
Record No. J801—2008
Electric Power Industry Standard of the People's Republic of China
P DL / T 5076 — 2008
To replace DL/T 5076 — 1997 and DL/T 5146 — 2001
Technical Code of Exploration and Surveying for 220kV and Lower Level Overhead Transmission Line
Issue Date: June 04, 2008 Implementation Date: November 01, 2008
Issued by the National Development and Reform Commission of the People's Republic of China
1 Scope
This code specifies the basic technical requirements for exploration 220 kV and 110kV overhead transmission lines engineering.This code is applicable to the geotechnical engineering, survey and engineering hydrological exploration of 220 kV and 110 kV overhead transmission lines that are newly built and modified. The exploration of overhead transmission lines engineering at a voltage level below 110 kV may refer to the relevant requirements of this code according to the actual conditions.
2 Normative References
The following normative documents contain provisions which,through reference in this text, constitute provisions of this standard.For dated references, subsequent amendments (excluding the contents of errata) to, or revisions of, any of these publications do not apply. However, parties to agreements based on this standard are encouraged to investigate the possibility of applying the most recent editions of the normative documents indicated below. For undated references, the latest edition of the normative documents apply.
GB/T 20257.2 Cartographic Symbols for National Fundamental Scale Maps—Part 2: Specifications for Cartographic Symbols 1:5000 &1:10 000 Topographic Maps
GB 50007 Code for Design of Building Foundation
GB 50011 Code for Seismic Design of Buildings
GB 50025 Code for Building Construction in Collapsible Loess Regions
GB 50324 Code for Engineering Geological Investigation of Frozen Ground
GB 50139 Navigation Standard of Inland Waterway
GB 50286 Code for Design of Levee Project
GBJ 112 Technical Code for Buildings in Expansive Soil Zones
DL/T 5001 Technical Code for Engineering Survey of Fossil-fueled Power Plant
DL/T 5092 Technical Code for Designing 110 kV-500 kV Overhead Transmission Line
DL/T 5156.1—5156.5 Electric Power Engineering Exploration Drawings
3 General Provisions
3.0.1 This code is developed to unify the technical standards for exploration of 220 kV and 110 kV overhead transmission lines for the purpose of ensuring technical progress, cost effectiveness, effective investment and high engineering quality.
3.0.2 In exploration of 220 kV and 110 kV overhead transmission lines, new technologies and methods capable of accelerating the project progress and improving the exploration quality shall be proactively promoted.
3.0.3 In addition to this code, the exploration of 220 kV and 110 kV overhead transmission lines shall further comply with related national and industrial standards currently in force.
3.0.4 The exploration of 220 kV and 110 kV overhead transmission lines shall keep pace with the design working stage. Generally, it is divided into three stages: feasibility study, preliminary design and construction drawings design.
问题专业:市政,
提问日期:2021-03-10 16:10:30
网友“cxd”提问内容:
老师,这个管座下面是否还需要套个砂石垫层呢?还是这样就行了
业内专家“可遇难求”回复:
不需要。
问题专业:土建算量GTJ2018,
提问日期:2021-03-10 16:09:47
网友“阿橙”提问内容:
业内专家“钢筋撑起半边天”回复:
三个标高的板LB2
问题专业:市政,
提问日期:2021-03-10 16:09:32
网友“cxd”提问内容:
老师,环刚度是不是只有塑料管有,混凝土没有环刚度对吧?
业内专家“将军峰”回复:
问题专业:安装,园林,
提问日期:2021-03-10 16:08:27
网友“谭程文”提问内容:
请问如何理解这句话,是否需要计算工程量,如何计算长度
业内专家“蓝鲸”回复:
这个的意思就是室外灯具需要做灯具外壳的接地,敷设的-25*4镀锌扁钢就是室外的接地母线,工程量按照延长米计算,定额套用室外接地母线安装子目
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问题专业:安装,结算,安装算量GQI,
提问日期:2021-03-10 16:07:35
网友“江雪花蕊”提问内容:
电气同个回路中有16的管、20的管,识别的时候默认都是16,怎样设置可以自动区分开。使用配管规格命令后,可以自动区分,但自动更改回路名称
业内专家“蓝鲸”回复:
那是你构件设置时,设置的有问题,自动识别没有确定好管子跟导线的根数
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